UFGS-23 21 23 (August 2017) Usace / Navfac / Afcec: Section 23 21 23
UFGS-23 21 23 (August 2017) Usace / Navfac / Afcec: Section 23 21 23
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SECTION 23 21 23
                                                                                           HYDRONIC PUMPS
                                                                                                08/17
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                                        NOTE: This guide specification covers the requirements for hydronic pumps
                                         primarily designed for chilled water, hot water and condenser water service
                                        in building HVAC systems.
                                        Adhere to UFC 1-300-02 Unified Facilities Guide Specifications (UFGS) Format Standard
                                         when editing this guide specification or preparing new project specification
                                        sections. Edit this guide specification for project specific requirements by adding, deleting,
                                        or revising text. For bracketed items, choose applicable item(s) or insert appropriate
                                         information.
                                        Remove information and requirements not required in respective project, whether or not
                                         brackets are present.
                                        Comments, suggestions and recommended changes for this guide specification are
                                         welcome and should be submitted as a Criteria Change Request (CCR).
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PART 1 GENERAL
1.1 REFERENCES
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                                        NOTE: This paragraph is used to list the publications cited in the text of the
                                        guide specification. The publications are referred to in the text by basic
                                         designation only and listed in this paragraph by organization, designation, date, and title.
                                        Use the Reference Wizard's Check Reference feature when you add a
                                         Reference Identifier (RID)
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             The publications listed below form part of this specification to the extent referenced. The publications are referred to within the text by the
             basic designation only.
ASTM A159 (1983; R 2020) Standard Specification for Automotive Gray Iron Castings
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1.2 SUBMITTALS
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                                         For Army projects, fill in the empty brackets following the "G" classification, with a
                                         code of up to three characters to indicate the approving authority. Codes for Army
                                        projects using the Resident Management System (RMS) are: "AE" for Architect-Engineer;
                                         "DO" for District Office (Engineering Division or other organization in the District
                                        Office); "AO" for Area Office; "RO" for Resident Office; and "PO" for Project Office.
                                        Codes following the "G" typically are not used for Navy and Air Force projects.
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             Government approval is required for submittals with a "G" or "S" classification. Submittals not having a "G" or "S" classification
             are for Contractor Quality Control approval. Submittals not having a "G" or "S" classification are for information only. When used, a code
              following the "G" classification identifies the office that will review the submittal for the Government. Submit the following in accordance with
              Section 01 33 00 SUBMITTAL PROCEDURES:
Instructions; G, [_____]
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Factory Tests
SD-07 Certificates
Manufacturer's Representative
Training; G, [_____]
             Provide the services of a manufacturer's representative experienced in the installation, adjustment, and operation of
             the specified equipment.
             The representative must supervise the installation, adjustment, testing of the equipment, and conduct training.
             Submit the names and qualifications of the manufacturer's representative and training engineers and written certification
             from the manufacturer that the representative and trainers are technically qualified.
             Provide material and equipment which are the standard products of a manufacturer regularly engaged in the
             manufacture of such products and that essentially duplicate equipment that has been in satisfactory HVAC operation
             at least 2 years prior to issuance of this solicitation.
             Support equipment with a service organization that is reasonably convenient to the job site. Pumps [and]
             [motors] of the same types must each be the product of one manufacturer.
             Where materials or equipment are specified to be an approved type, attach the seal or label of approval from
             a nationally recognized testing agency, adequately equipped and competent to perform such services. A
             written certificate from the testing agency must accompany the materials or equipment and be submitted
             stating that the items have been tested and that they conform to the applicable requirements of the specifications and
             to the standards listed herein. The certificate must indicate the methods of testing used by the testing agency. In lieu
             of a certificate from a testing agency, published catalog specification data, accompanied by the manufacturer's certified
             statement to the effect that the items are in accordance with the applicable requirements of the specifications and the
             referenced standards, will be considered and may be acceptable as evidence that the items conform with agency
             requirements.
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              Protect equipment, delivered and designated for storage, from the weather, humidity and temperature variations, dirt and dust,
             or other contaminants.
PART 2 PRODUCTS
             Hydronic pumps used for heating and air conditioning applications are defined by the type of impeller, number
             of impellers, type of casing, method of connection to the driver, and mounting position. Provide centrifugal
             water pumps of the types indicated and specified. Use an electric motor driving unit for each pump as
             indicated and specified.
              Select pumps at a point within the maximum efficiency for a given impeller casing combination. Deviations
              within 3 percent of maximum efficiency are permissible, provided the lesser efficiency is not less than the
              scheduled efficiency in the construction design documents.
             Pumps having impeller diameters larger or smaller than manufacturer's published maximum and minimum
             impeller diameters for a given impeller casing combination will be rejected. Pump performance data, as shown
             in performance curves, must be based on factory tests using precision instrumentation and exacting procedures as
             detailed in HI ANSI/HI 14.6.
              Submit drawings containing complete wiring and piping schematic diagrams and any other details required to
              demonstrate that the system has been coordinated and will function properly as a unit. Show the proposed layout
              and anchorage of equipment and appurtenances, and equipment relationship to other parts of the work
              including clearances for maintenance and operation. Provide a complete listing of equipment, materials
              and miscellaneous components including mechanical seals, bearings, and couplings.
              Fully enclose or guard couplings, projecting set-screws, keys, and other rotating parts, that pose an entangling
              hazards..
2.2.1 Nameplates
             Securely affix a standard nameplate to pumps and motors in a conspicuous place showing the manufacturer's name,
             address, type or style, model, serial number, and catalog number. In addition, for each pump show the capacity
             in L/second gpm at rated speed in rpm and total head in mm feet
              of water. For each electric motor show at least the minimum information
             required by NEMA MG 1. Show such other information as the manufacturer may consider necessary to complete
             identification on the nameplate.
             Pumps must be listed and labeled by UL, and comply with UL 778 for pumps not using universal motors rated more
             than 250 volts such as circulating
             pumps.
             Submit proposed diagrams, instructions, and other sheets, prior to posting. Post approved wiring and
             control diagrams showing the complete layout of the entire system, including equipment, piping valves, and
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              control sequence, framed under glass or in approved laminated plastic, where directed. Provide condensed operating instructions explaining
              preventive maintenance procedures, methods of checking the system for normal safe operation, and procedures for safely starting and
              stopping the system, framed as specified above for the wiring and control diagrams, and posted beside the diagrams. Post the framed
              instructions before acceptance testing of the systems.
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                                        NOTE: Characteristics of each pump will normally be specified by a minimum of two points
                                        on the head-capacity curve. The blanks for liters per second gpm and total head in
                                        mm feet will be filled appropriately. If two or more pumps are to operate in parallel or
                                         in series, and a system head curve is shown, the appropriate brackets will be
                                         removed indicating pumps will match the system curve.
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              Construct hydronic water pumps in accordance with HI 1.1-1.2 and HI ANSI/HI 2.1-2.2. The pumps must be capable of
              discharging quantities at total discharge heads measured at the discharge flange, between the following limits:
              Operate pumps at optimum efficiencies to produce the most economical pumping system under the conditions encountered [and size to
              make optimal match with the system head curve as shown].[ Suction lift on Pump No. [_____] must not be more than [_____] mm
              feet.] Pumps must furnish not less than 150 percent of rated capacity at a total discharge head of not less than 65 percent of total rated
              head.[ The shutoff total head must not be greater than 120 percent of total rated head.]
              Operate pumps at specified system fluid temperatures without vapor binding and cavitation. Operate pumps to HI ANSI/HI 9.6.3
              standard for Preferred Operationg Region (POR).
              Provide electric motors as indicated for each pump and in compliance with Section [26 20 00 INTERIOR DISTRIBUTION SYSTEM]
              [_____].
              Submit manufacturer's descriptive data and technical literature, performance charts and curves for all impeller sizes for a given
              casing, catalog cuts, and installation instructions. Provide spare parts data for each different item of material and equipment specified, after
              approval of the detail drawings and not later than [_____] months prior to the date of beneficial occupancy. Includes a complete list of parts
              and supplies, with current unit prices and local source of supply with contact information.
              Submit catalog information, certified pumps curves, rated capacities, final impeller dimensions, and accessories provided for the product
              indicated. Indicate operating point of each pump on curves. Furnish pump curves for each pump and combination of pumps designed
              to operate in parallel. The pump curve must show as a minimum; bhp, flow, total dynamic head, efficiency, NPSH, impeller diameter and
              system curve
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               (individually and in combination for each pump operating in a parallel application). Select pumps operating in parallel operation to cross
              the system curve when operating individually.
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                                         NOTE: Enter the pump numbers shown on the drawings in the appropriate
                                         blanks. Delete inapplicable configurations.
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Provide centrifugal, [single-stage type,][ or ][multi-stage type,] designed for HVAC service in the following configurations:
Circulator [_____]
2.3.1 Circulator
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               Provide pumps with capacities as indicated of a horizontal, [in-line, three piece oil lubricated] [wet rotor] circulator type specifically
               designed for quiet operation. Suitable for 107 degrees C 225 degrees F
operation at [860][_____] kPa [125][_____] psig working pressure. The pump must be single stage with [flanged] [union] piping connections.
The pump internals must be capable of being serviced without disturbing piping connections.
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NOTE: Insert the following paragraph for three piece oil lubricated circulator pumps.
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           [ to. The three piece pump must be composed of three separable components a motor, bearing assembly, and [cast iron] [lead free bronze
                          certified in accordance with NSF 372 pump end (wet end). The motor shaft must be connected to the pump shaft via a
                          replaceable flexible coupler.]
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                                          NOTE: Insert the following paragraph for wet rotor circulators used for potable
                                           water service.
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           [b. Wet rotor circulator for potable water service must be lead content
                       certified in accordance with NSF 372.
           ]
           2.3.1.1 Seal Assembly
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                                          NOTE: Retain this paragraph for wet rotor circulators used for potable water
                                           service.
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               Pump must be equipped with an internally flushed mechanical seal assembly. Seal assembly must have a brass housing, Buna
               bellows and seat gasket, stainless steel spring, and be of a carbon ceramic design with the carbon face rotating against a stationary
               ceramic face.
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NOTE: Include this paragraph for three piece oil lubricated circulators.
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               To ensure alignment, mount the motor to the bearing assembly via a bolted motor bracket assembly. Use a replaceable resilient
               rubber motor mount to assist in aligning the motor shaft with the pump shaft.
2.3.1.3 Engines
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               Motors must meet scheduled horsepower, speed, voltage, and enclosure design. Motors must be drip proof, maintenance free,
               premium efficiency and meet NEMA MG 1 specifications.
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                                          NOTE: Include the following paragraph for variable speed pumps with ECM
                                          motors.
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           [ Pump must be driven by an electrically commutated electrical motor (ECM) with permanent magnet rotor. The rotor magnets must be time
               stable, non-toxic ceramic magnets. Drive the electrically commuted electrical motor by a frequency converter with an integrated PFC
               filter.
           ]
           2.3.2 Small In-Line
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               The pump must have a solid steel shaft with a coupler between the pump and motor shafts. For non-stainless steel shafts, employ a non-
               ferrous shaft sleeve to completely cover the wetted area under the seal.
2.3.2.2 Bearing
2.3.2.4 Impeller
               Provide impeller of cast bronze or brass material. Impeller must be hydraulically and dynamically balanced to HI 9.6.4 balance grade
               G6.3, keyed to the shaft and secured by a locking capscrew or nut.
2.3.2.5 Volute
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Pump volute must be of cast iron. The connection style on cast iron pumps must be flanged.
              To ensure alignment, mount the motor to the bearing assembly via a bolted motor bracket assembly. Use a replaceable resilient
              rubber motor mount to assist in aligning the motor shaft with the pump shaft.
2.3.2.7 Engines
              NEMA MG 1; premium efficiency; non-overloading at any point on the pump curve; maintenance free with permanently lubricated bearings;
              and resilient mounted for smaller sizes, rigid mounted otherwise.
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                                         NOTE: Large In-Line pumps can deliver up to 158 L per second 2500 gpm and 38 m 125
                                          ft head at 1750 rpm. The use of large In-Line pumps is discouraged due to difficulty
                                          in providing routine servicing and repair. Large in-line pumps including motor
                                         can be more expensive than the preferred base-mounted, flexible coupled end
                                          suction pumps. In some cases floor space is limited so large in-line pumps may
                                         need to be used. Large In-Line pumps come in two basic configurations - split coupled
                                          and close coupled. Split coupled configuration allows mechanical seal maintenance
                                          without disturbing the pump or motor. However, split coupled pumps only allow
                                          the motor shaft to be oriented vertically with motor shaft down. Close coupled
                                         pumps may be mounted with the motor shaft vertical or horizontal but do not
                                          allow mechanical seal maintenance without disturbing the pump or motor.
                                          When mounted horizontally, it is critical that adequate support be provided to
                                         avoid strain on pump parts and piping.
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              Provide pumps with capacities as indicated; [split-coupled] [closed coupled], in-line, single stage, for installation in [vertical] [horizontal
              (where close coupled)] position, and. suitable for 107 degrees C 225 degrees F operation at [1204][_____] kPa [175][_____]
               psig
working pressure. The pump internals must be capable of being serviced without disturbing piping connections.
2.3.3.1 Casing
              Provide pump casing complying with ASTM A48/A48M Class 30 cast iron, suitable for [1204][_____] kPa [175][_____] psig working
              pressure with integral cast iron flanges drilled for ASME B16.1 [ANSI Class 125] [ANSI Class 250] flanges, with an integrally-cast support
              ring matching an Class 125 flange for pump support. The pump volute must include gauge tappings at suction and discharge nozzles along
              with vent and drain tappings at top and bottom.
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              Provide carbon or stainless steel pump shaft, guided by a carbon graphite lower throttle bushing. Carbon steel pump shaft must
              have a bronze shaft sleeve that completely covers the wetted area under the seal.
              Equip the pump with a mechanical seal assembly consisting of a carbon seal rotating ring, stainless steel spring, ceramic seat and flexible
              bellows and gasket. The liquid cavity must have a tapped flush line with manual valve to remove air from the seal chamber to allow fast
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                                         NOTE: Delete paragraph specifying spacer coupling below when close coupled
                                          pumps are used.
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              The axially split spacer coupling must be of high tensile aluminum, split to allow the servicing of the seal without disturbing the pump or
              motor. Pump coupler must be aligned by the manufacturer before shipment. The motor bracket must contain a carbon steel coupler guard
              conforming to 29 CFR 1910.219 standards for safety.
2.3.3.5 Impeller
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                                         NOTE: Bronze impellers should not be used for pumping temperatures in excess of 120
                                         degrees C
                                          250 degrees F. Consult manufacturer for temperatures exceeding 120
                                          degrees C 250 degrees F.
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              Hydraulically and dynamically balance the impeller to HI 9.6.4 balance grade G6.3, closed, single suction, manufactured from cast bronze, keyed
              to the shaft and secured by a locking capscrew.
2.3.3.6 Engine
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                                         NOTE: Motor enclosure will usually be open drip proof where motor is located in dry, clean,
                                         well ventilated indoor area. Use totally enclosed fan cooled motor enclosure for outdoor
                                         service.
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              Electric motors must meet NEMA MG 1 and the horsepower, speed, voltage, indicated. Motor enclosure must be open drip proof[, totally enclosed
              fan cooled], with heavy duty grease lubricated ball bearings completely adequate for the maximum load for which the motor is designed. Motor
               must be non-overloading at any point on the pump curve and premium efficiency. Provide motor efficiencies as shown in the ICC IgCC
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shown in NEMA MG 1.
Include one-piece combination motor bracket and volute coverplate in the assembly to ensure concentric alignment of the motor to the pump casing.
              Provide pumps with capacities as indicated; base mounted, separately-coupled, end suction designed with volute
              housing mounted to the frame to allow for pump service without relocating the motor or disturbing piping connections. Bearings and seals must be
              serviceable without disturbing piping. Pump must be factory hydrostatically tested in accordance with Hydraulic Institute standards and
              thoroughly cleaned.
2.3.4.1 Casing
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                                         NOTE: Cast iron casings should not be used for pumping temperatures in excess of 120
                                         degrees C
                                          250 degrees F. Consult manufacturer for temperatures exceeding 120
                                          degrees C 250 degrees F.
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              Provide radially split pump casing ASTM A48/A48M Class 30 cast iron suitable for [1204][1720][_____] kPa [175][250][_____] psig working
              pressure with integral cast iron flanges drilled for ASME B16.1 [ANSI Class 125] [ANSI Class 250] flanges, with an integrally-cast pedestal
              support foot. The pump volute must include gauge tappings at suction and discharge nozzles along with vent and drain tappings at top and
              bottom.
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                                         NOTE: Carbon steel shaft should not be used for pumping temperatures in excess of 120
                                         degrees C
                                          250 degrees F. Consult manufacturer for temperatures exceeding 120
                                          degrees C 250 degrees F.
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              Carbon steel pump shaft with a replaceable [bronze][stainless steel] shaft sleeve completely covering the wetted area of the shaft under the
              seal.
2.3.4.3 Bearing
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             Incorporate maintenance free, permanently lubricated and sealed bearings in the pump bearing frame. [Releasable ball
             bearing type with provision for purging or flushing through the bearing surface and greased while running
             after start-up.]
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                                        NOTE: When fluid used to internally flush seals exceeds 107 degrees C
                                        225 degrees F, provide a heat exchanger to decrease the temperature
                                        of the seal flushing water to 107 degrees C 225 degrees F
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             Equip with an integrally flushed mechanical seal assembly or a positive pressure external seal flushing line. Provide a
             mechanical seal with ceramic seal seat and carbon seal ring. Seal assembly must be rated up to 107 degrees C
             225 degrees F.
2.3.4.5 Baseplate
             Baseplate must be of steel construction fully enclosed at sides and ends with welded cross members and fully open
             grouting area for field grouting. Minimum base plate stiffness must conform to HI 1.3 for horizontal baseplate
             design standards.
2.3.4.6 Coupler
             Provide a flexible-type coupler between the pump and motor, capable of absorbing torsional vibration and variable
             speed operation between the pump and motor. The coupler must allow replacement with no need to move the hubs.
             Coupler must have natural rubber or neoprene type element materials with a maximum misalignment capability of 4
             degrees angular and
               3 mm 0.125 inches parallel. Provide donut shaped elastomer element with preassembled flanges mechanically
             clamped to reinforced element and preassembled spacer center assembly. Secure flexible donut shaped element of
             coupler in place with radial clamp ring screws. Couplers must be rated for required maximum rpm, amperage
             horsepower and torque.
             The coupler must be shielded by a coupler guard securely fastened to the base. Provide coupler guard in compliance
             with current national safety standards including 29 CFR 1910.219 and NEMA Z535.4. Guards cannot have gaps
             greater than 6 mm 0.250 inches, must be safety orange in color, and have a NEMA Z535.4 compliant warning label.
2.3.4.7 Impeller
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              Hydraulically and dynamically balance to HI 9.6.4 balance grade G6.3, closed, overhung, single suction, manufactured from cast bronze,
              key to shaft and secured by a locking capscrew.
2.3.4.8 Engine
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                                        NOTE: Motor enclosure will usually be open drip proof where motor is located in dry,
                                        clean, well ventilated indoor area. Use totally enclosed fan cooled motor enclosure for
                                        outdoor service.
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              Electric Motors must meet NEMA MG 1 and be the wattage horsepower, speed, and voltage indicated. Motor enclosure must be
              open drip proof [totally enclosed fan cooled]. Motor must have heavy duty grease lubricated ball bearings completely adequate for the
               maximum load for which the motor is designed. Motor must be non-overloading at any point on the pump curve and premium
              efficiency. Provide motor efficiencies as shown in the ICC IgCC standard. [Totally enclosed fan cooled motor efficiencies must comply
              with NEMA MG 1.]
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                                        NOTE: Use of base-mounted, close coupled, end suction pumps is discouraged. This
                                         type of pump takes up less floor space than base-mounted, flexible coupled, end suction
                                         pumps and should only be considered when floor space is extremely limited.
                                         Close coupled pumps do not have a pump shaft and pump bearing assembly. Motor
                                         bearings must be able to handle both motor rotating element and impeller forces. This
                                         requires a special motor with bearings designed to handle additional impeller loads and
                                         shaft that extends into the volute. This type of pump can be about the same cost as the
                                        preferred base-mounted, flexible coupled, end suction pump.
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              Provide pumps with capacities as indicated. Pump must be base mounted, close coupled, single stage, end suction design capable of being
              serviced without disturbing piping connections.
2.3.5.1 Casing
              Provide pump volume of Class 30 cast iron suitable for [1204][_____] kPa
               [175][_____] psig working pressure. Includes vent, drain and gauge tapping.
              Seal off the liquid cavity at the motor shaft by an internally flushed mechanical seal or a positive pressure external seal flushing line with
              ceramic seal seat and carbon seal ring, suitable for continuous operation at 107 degrees C 225 degrees F. A replaceable shaft sleeve of
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bronze alloy must completely cover the wetted area under the seal.
2.3.5.3 Impeller
              Provide cast bronze or 304 stainless steel impeller, enclosed type, hydraulically and dynamically balanced to HI 9.6.4 balance grade
              G6.3, keyed to shaft and secured by a locking capscrew.
2.3.5.4 Engine
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                                         NOTE: Motor enclosure will usually be open drip proof where motor is located in dry,
                                         clean, well ventilated indoor area. Use totally enclosed fan cooled motor enclosure for
                                         outdoor service.
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              Electric Motors must comply with NEMA MG 1 and be the wattage horsepower, and voltage indicated. Motor enclosure must be [open drip
              proof] [totally enclosed fan cooled]. provide with heavy duty grease lubricated ball bearings completely adequate for the maximum
               load for which the motor and pump impeller is designed. Motor must be non-overloading at any point on the pump curve
              and premium efficiency.
              Provide motor efficiencies as shown in the ICC IgCC standard. Totally enclosed fan cooled motor efficiencies must be as shown in NEMA
              MG 1.
2.3.6 Base-Mounted, Flexible Coupled, Double Suction[,] [Horizontally Split][ and ][Vertically Split]
              Provide pumps with capacities as indicated; base mounted, flexible coupled, double-suction, [horizontal] [and] [vertical] split case
              design, single stage centrifugal pump. Construction must be cast iron - bronze fitted, equipped with mechanical seals. Bearings
              and seals must be serviceable without disturbing piping or engine. Factory hydrostatically test the pump in accordance with Hydraulic Institute
              standards and thoroughly clean.
2.3.6.1 Casing
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                                         NOTE: Cast iron casings should not be used for pumping temperatures in excess of
                                         120 degrees C
                                          250 degrees F. Consult manufacturer for temperatures exceeding 120
                                          degrees C 250 degrees F.
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              Provide ASTM A48/A48M Class 30 or ASTM A159 cast iron pump casing, suitable for [1204][_____] kPa [175][_____] psig working
              pressure, with integral cast iron flanges drilled for ASME B16.1 [ANSI Class 125] [ANSI Class 250] flanges. Supply the pump volute with
              plugged vent, drain, and gauge tappings.
2.3.6.2 Bearings
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              Incorporate maintenance free, permanently lubricated and sealed bearings with an L10 life of 60,000 hours minimum in the pump bearing frame.
              [
              Incorporate regreasable ball bearing type pump bearing frame with provision for purging or flushing through the bearing surface
              and greased while running after start-up.]
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                                        NOTE: When fluid used to internally flush seals exceeds 107 degrees C 225 degrees F,
                                        provide a heat exchanger to decrease the temperature of the seal flushing water to
                                        107 degrees C 225 degrees F
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              Seal off liquid cavity by an internally-flushed seal assembly. Seal assembly must have a brass housing, Buna bellows and seat gasket,
              stainless steel spring, and be of a carbon face rotating against a stationary silicon carbide seat. Provide replaceable mechanical
              seals without disturbing the upper casing half and system piping. Seals must be suitable for continuous operation at 107 degrees C
              225 degrees F.
Arrange to ensure that seal leakage cannot enter the bearing housings.
2.3.6.4 Coupler
              Provide a flexible-type coupler between the pump and motor capable of absorbing torsional vibration and variable speed operation. The
              coupler must allow replacement with no need to move the hubs. Coupler must have natural rubber or neoprene type element materials with a
              maximum misalignment capability of 4 degrees angular and 3 mm 0.125 inches
              parallel. Provide donut shaped elastomer element and with preassembled flanges mechanically clamped to reinforced element and
              preassembled spacer center assembly. Secure flexible donut shaped element of coupler in place with radial clamp ring screws.
              Couplers must be rated for required maximum rpm, wattage horsepower and torque. Shield the coupler by a coupler guard securely fastened to
              the base. Coupler guard must comply with current national safety standards including 29 CFR 1910.219, and NEMA Z535.4. Provide
              guards with gaps no greater than 6 mm 0.250 inches, of safety orange in color, and have a NEMA Z535.4 compliant warning label.
Provide baseplate of steel construction fully enclosed at sides and ends with welded cross members and fully open grouting area for field
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grouting. Minimum base plate stiffness must conform to HI 1.3 for horizontal baseplate design standards.
2.3.6.6 Impeller
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                                         NOTE: Cast bronze impellers should not be used for pumping temperatures in excess
                                          of 120 degrees C 250 degrees F. Consult manufacturer for temperatures exceeding 120
                                         degrees C 250 degrees F.
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              Bronze or brass enclosed double suction type, both hydraulically and dynamically balanced to HI 9.6.4 grade G6.3, keyed to shaft and
              fixed in an axial position. Hub must have sufficient metal thickness to allow machining for installation of impeller rings.
2.3.6.7 Engine
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                                         NOTE: Motor enclosure will usually be open drip proof where motor is located in dry,
                                         clean, well ventilated indoor area. Use totally enclosed fan cooled motor enclosure for
                                         outdoor service.
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              Provide pump shaft of solid 416 stainless steel shaft or solid carbon steel shaft with replaceable bronze or 304 stainless steel shaft sleeve
              covering wetted area of shaft.
Provide pumps with capacities as indicated. Pump must be vertical lineshaft turbine manufactured for lubrication of the line-shaft
              bearings by the water being pumped. Design and manufacture the pumping unit in accordance with HI ANSI/HI 2.1-2.2 standards AWWA
              E103.
              Flange type construct the intermediate bowls, discharge cases and suction bowls from ASTM A48/A48M Class 30 close grain cast
              iron. They must be free of defects and accurately machined and fitted to ASME B4.2
              ASME B4.1 close tolerances. Epoxy enamel coat the intermediate bowls waterways for maximum efficiency. Thread all threaded discharge
              cases for water lubricated column assembly. All assembly bolting must be stainless steel. Provide intermediate bowl bearings.
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              Construct the bowl shaft from ASTM A582/A582M type 416 stainless steel, precision ground and polished with surface finish better than 40
              RMS.
2.3.7.3 Lineshaft
              Vertical pump lineshaft must be opened and constructed from ASTM A582/A582M
                type 416 stainless steel. Straighten lineshaft sections to 0.13 mm per 300 mm 0.0005inch/foot total runout. Lineshaft sections must not
              exceed
              3 m 10 feet in length and must be coupled with threaded stainless steel couplings. Design the diameter of the lineshaft and coupling in
              accordance with AWWA E103.
2.3.7.4 Impeller
              Provide impellers of ASTM B584 silicon bronze or stainless steel, the enclosed type. They must be free from defects, machined, and
              balanced to HI 9.6.4 balance grade G6.3 for optimal efficiency and performance.
              Securely fasten to the bowl shaft with stainless steel taper lock collets. The impellers must be adjustable by means of a top shaft
              adjusting nut or adjustable solid shaft coupling.
              Construct the discharge head, sized for pump capacity, of ASTM A48/A48M
              Class 30 high grade ductile iron or fabricated steel of the high profile type with an integral motor base which allows the head shaft to be coupled
              to the top shaft above the stuffing box. A separate motor stand is not acceptable. The discharge head must have an ASME B16.1
              (for cast iron) or Class 150 (for steel) discharge flange supplied with dual 6 mm
1/4 inch NPT ports at the top. Thread the head to accept the column pipe.
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                                         Abrasives are commonly found in condenser water open loop systems, where this
                                          type of pump is used, that cause premature mechanical seal failure.
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              Provide stuffing box of cast or ductile iron, ASTM A536 class 65, and containing a minimum of five rings of packing; with an available
              fitting for pressure relief. The packing follower gland must be stainless steel and secured in place by stainless steel studs and nuts. The packing
               box bearing must be bronze. Provide a water slinger to operate on the top shaft, above the packing gland.
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              Provide column pipe of ASTM A53/A53M grade B steel pipe not less than Schedule 30. Machine the column ends with threads and faced
              parallel to the threads to ensure proper alignment. Connect the pipe with threaded sleeve type ductile iron couplings or flanges that will accept
              20 mm 3/4 inch stainless steel or bonze bearing retainers. Lineshaft bearings must be fluted rubber retained in a centering spider retainer.
The maximum opening must not be more than 75 percent of the maximum opening of the water passage through the bowl or impeller.
2.3.7.10 Engine
              Electric motor must meet NEMA MG 1 and be the size and voltage indicated. Provide [1800RPM] [_____] motor with NEMA
              Class B or Class F insulation. The motor must have a vertical hollow (or solid) shaft motor with space heaters and a non-reverse ratchet (or self-
              release coupling) to prevent reverse rotation. The motor must have an angular contact thrust bearing to meet the designed pump's
              hydraulic thrust load plus the weight of the rotating parts under operating conditions.
              Provide high efficiency motor with a weather protected WP-1 enclosure, [230/460] [_____] volt, [3] [1] phase, 60HZ, and a [1.15] [_____]
               service factor. Motor must be non-overloading at any point on the pump curve and premium efficiency. Provide motor with
              efficiencies in compliance with NEMA MG 1.
              Provide pumps with capacities as indicated. Cooling Coil Condensate Pump Unit must be a packaged unit including a corrosion-resistant
              pump, plastic tank with cover, and automatic controls. Include [factory] [field] installed check valve and a 1800 mm 72 inch minimum, electrical
              power cord with plug for 120V/1PH/60HZ electrical service.
2.3.8.1 Engine
              Electric motor must comply with NEMA MG 1 and be the size, voltage and enclosure indicated. Provide heavy duty grease lubricated ball
              bearings completely adequate for the maximum load for which the motor is designed.
              Provide electrical motor driven equipment specified herein complete with motors, motor starters, and controls. Provide electrical equipment and
              wiring in accordance with Section 26 20 00 INTERIOR DISTRIBUTION SYSTEM. Electrical characteristics must be as indicated. Provide
              motor
              starters complete with properly sized thermal overload protection in each phase and other appliances necessary for the motor control
              specified. Each motor must be of sufficient capacity to drive the equipment at the specified capacity without exceeding the nameplate
              rating of the motor when operating at proper electrical system voltage and frequency. Manual or automatic control and protective or
              signal devices required for the operation herein specified and any control wiring required for controls and devices but not indicated
              must be provided under this section of the specifications.
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              Drive each electric motor-driven pump by a continuous-duty electric motor with enclosure type for specific service as defined in
              paragraph HYDRONIC PUMPS. Engine must have a [1.5] [_____] service factor.
               Integral size motors must be the premium efficiency type in accordance with NEMA MG 1. Pump electric motor efficiencies must meet or
              exceed the requirements of the ICC IgCC standard. Motor bearings must provide smooth operations under the conditions encountered for
              the life of the motor. Provide adequate thrust bearing in the motor to carry the weight of all rotating parts plus the hydraulic thrust and be
              capable of withstanding upthrust imposed during pump starting[ and under variable pumping head conditions specified]. Motors must be
              rated [_____] volts, [_____] phase, 60 Hz and such rating must be stamped on the nameplate.
               [Manually controlled pumps must have START-STOP pushbutton in cover.][Automatically controlled pumps must have
              three-position "MANUAL-OFF-AUTOMATIC" selector switch in cover.] Provide additional controls or protective devices as
               indicated. [Install a pump low-water cutoff [in the well][on the suction pipe] and must shut the pump off when the water level in the well
              reaches the level shown.]
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NOTE: If any of the motors have a variable speed control, then include this paragraph.
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              The variable speed motor controllers must meet the requirements of UFGS 26 29 23 ADJUSTABLE SPEED DRIVE SYSTEMS UNDER 600
              VOLTS.
2.6.1 Attachments
              Furnish all necessary bolts, nuts, washers, bolt sleeves, and other types of attachments with the equipment for the installation of the
              equipment. Bolts conform to the requirements of ASTM A307 and hexagonal nuts of the same quality as the bolts used. Threads
              must be clean-cut and conform to ASME B1.1. Bolts, nuts, and washers specified to be galvanized or not otherwise indicated or specified, must
              be zinc coated after being threaded, by the hot-dip process conforming to [
              ASTM A123/A123M][ASTM A153/A153M] as appropriate. Bolts, nuts, and washers specified or indicated to be stainless steel must
              be Type 316.
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             Provide equipment driven by open shafts, belts, chains, or gears with all-metal guards enclosing the drive mechanism.
             Secure guards in position with steel braces or straps that allow easy removal for servicing the equipment.
             Coupler guards must comply with current national safety standards including 29 CFR 1910.219 and NEMA
             Z535.4.
              Provide guards with gaps no greater than 6 mm 0.250 inches, safety orange in color, and have a NEMA Z535.4
              compliant warning label.
2.6.3 Tools
             Furnish a complete set of all special tools which may be necessary for the adjustment, operation, maintenance, and
             disassembly of all equipment. Special tools are considered to be those tools which because of their
             limited use are not normally available, but which are necessary for the particular equipment. Special tools must be high-
             grade, smooth, forged, alloy, tool steel. Furnish one pressure grease gun for each type of grease required. Deliver all
             tools at the same time as the equipment to which they pertain. Properly store and safeguard such tools until completion
             of the work, at which time deliver them to the Contracting Officer.
2.7 FINISHES
             All motors, pump casings, and similar parts of equipment must be thoroughly cleaned, primed, and given
             two finish coats of paint at the factory in accordance with the recommendations of the manufacturer. Give ferrous
             surfaces not to be painted a shop coat of grease or other suitable rust-resistant coating.
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                                        NOTE: Factory Tests for specific pumps shipped to construction site are
                                        not normally required unless the pumps are used for a critical application
                                        where precise performance is required. Manufacturers'
                                        performance data is based on factory tests using precision
                                        instrumentation and exacting procedures as detailed in Hydraulic
                                        Institute Standard ANSI/HI 1.6 Centrifugal Pump Tests for
                                        each typical pump model. Delete the following paragraph unless
                                        required.
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              Pumps must be tested by the manufacturer or a nationally recognized testing agency in compliance with HI 1.3.
              Submit certified test results.
]PART 3 EXECUTION
3.1 EXAMINATION
             After becoming familiar with all details of the work, verify all dimensions in the field and advise the
             Contracting Officer of any discrepancy before performing the work.
3.2 INSTALLATION
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             Install each pump and motor in accordance with the written instructions of the manufacturer[ and under the direct
             supervision of the manufacturer's representative]. Provide access space around the device for
             servicing no less than the minimum recommended by the manufacturer.
              to. Place two sets of shims or wedges for each foundation bolt. Lower
                     baseplate onto foundation bolts and level baseplate both lengthwise and across by adding or removing shims or
                     mount wedges. A maximum difference of 3 mm 0.125 inches lengthwise and 1.5 mm 0.059 inches
across is allowable.
              c. Support the connecting piping to ensure that there are no piping loads at the pump flange connections and
                    connecting piping is not forced into position. [Use concrete for equipment foundations as specified in Section
                    03 30 00 CAST-IN-PLACE CONCRETE. Provide concrete foundations that are integral with and of the same
                    class as that of the building floor unless otherwise indicated. Use concrete having a compressive
                    strength of at least 17 MPa 2,500 psi in foundations that are entirely separated from the surrounding floor.
                        Install a premolded filler strip between the foundation and floor slab as shown. Furnish foundation bolts, as
                        required, for proper positioning during the placement of the concrete.]
             After installation of the pumping units and appliances, including coupling guard, is complete, carry out operating
             tests to ensure that
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              the pumping installation operates properly.[ Make arrangements to have the manufacturer's representatives present when field equipment
              tests are done.] Give each pumping unit a running field test in the presence of the Contracting Officer for a minimum of 2 hours. Operate
              each pumping unit at its rated capacity or such other point on its head-capacity curve selected by the Contracting Officer. Provide an accurate
              and acceptable method of measuring the discharge flow. Tests must assure that the units and appurtenances have been installed
              correctly, that there is no objectionable heating, vibration, or noise from any parts, and that all manual and automatic
              controls function properly. If any deficiencies are revealed during any tests, correct such deficiencies and reconduct the tests.
              Submit test reports in booklet form showing all field tests performed to adjust each component and all field tests performed to prove compliance with
              the specified performance criteria, upon completion and testing of the installed system. Each test report must indicate the final position of controls.
              Factory painted items requiring touching up in the field must be thoroughly cleaned of all foreign material, and primed and
              topcoated with the manufacturer's standard factory finish.
              Paint exposed ferrous surfaces with two coats of enamel paint conforming to SSPC Paint 21. Solvent clean factory primed surfaces before
              painting. Surfaces that have not been factory primed must be prepared and primed with one coat of SSPC Paint 25 or in
              accordance with the enamel paint manufacturer's recommendations.
              Submit one complete set at the time the tests procedure is submitted; remaining sets before the contract is completed. Permanently bind
              each in a hard cover. Inscribe the following identification on the covers: the words "OPERATING AND MAINTENANCE INSTRUCTIONS,"
              name and location of the building, name of the Contractor, and contract number. Place flysheets before instructions covering each subject.
              Use 216 by 279 mm
8-1/2 by 11 inches paper for instruction sheets, with large sheets of drawings folded in.
              d. Operating and maintenance instructions for each piece of equipment, including task list for routine maintenance, routine inspections,
                       intermediate inspections, and annual inspections; lubrication
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and. Manufacturer's bulletins, cuts, and descriptive data; and parts list and recommended spare parts.
3.5.2 Training
             Upon completion of the work, and at a time designated by the Contracting Officer, provide the services of one or
             more competent engineers for a training period of not less than [_____] hours to instruct a representative of
             the Government in the contents of the operation and maintenance manuals for the equipment
             furnished under these specifications. These field instructions must cover all the items contained in the bound
             instructions. Submit the training course curriculum and training instructions 14 days prior to
             the start of training.
-- End of Section --
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