MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
TIME ESTIMATION OF A BUILDING
 PROJECT ADVISORY
  Prof. Vivek Garg
  (Asst. Professor Civil Engg. dept.)
  PROJECT TEAM
     1. Avalanche Saini               (081111006)
     2. Abhishek Sharma           (081111010)
     3. Tathagat Barodh               (081111014)
     4. Pratik Vaishnav               (081111018)
     5. Siddharth Soni                (081111043)
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  Acknowledgement
  We, the students are very grateful to many people who helped
  and
  supported us during the project. Our deepest thanks to our
  guide
  Prof. Vivek Garg (Asst. Professor) in Structure Engineering ,
  Department of
  Civil Engineering, MANIT, Bhopal for his valuable help,
  guidance and
  suggestions during project studies.
  2012
  We would like to thank our honorable HOD Dr. Vishnu Prasad
  for his
  faith in us and last but not the least we would like to thank our
  Director of
  Institute Dr. Appu Kuttan.
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  CERTIFICATE
  This is to certify that the project entitled DESIGN AND TIME
  ESTIMATION OF A BUILDING submitted by afore mentioned
  students to the Department of Civil Engineering towards partial
  fulfillment of curriculum requirement for 7-8th semester is a
  bonafide record of the work carried out by them under my
  supervision. They have carried
  out this project with utmost sincerity and hard work.
                                               Prof. Vivek Garg
                                                            (project
  guide)
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
                                                                Prof.
  Vishnu Prasad
                                                          (HOD Civil
  Engg Department)
  PREFACE
  Time estimation is a process of calculating the approximate
  time required for the completion of the project given the dead
  line and start
  time of the project. Initially we focus on deadlines, cost comes
  next. The
  project database contains a lot of information, but at any given
  time, you
  only need a portion of it to get to information.
  This information can be interpreted in form of Gantt chart or
  programme evaluation review technique (PERT). The time
  estimation of the project helps scheduling the activity. The
  more accurate the time estimation more is the profit of
  company.
  In this project we are dealing with time estimation of a building.
  We have used the basis as duration = work/resource effort.
  Changing the resource effort we can change the duration of
  completion
  of activity.
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  The interdependency of activity plays a vital role in final
  output. Some
  activities are based on the relation start to finish, finish to
  finish, finish
  to start, start to start or overlapping dependency
  CONTENTS
     1. INTRODUCTION
     2. NEED FOR TIME ESTIMATE
     3. PROPOSED DESIGN
     4. OPERATIONAL PLAN
     5. STEPS FOR TIME ESTIMATION
        Excavation
         PCC work foundation
        RCC work foundation
        Plinth Beam
        Columns
        Slab beam and slab
        Finishing
         Flooring and tiling
        Wood work
        Steel work
        Services
     6. GANTT CHART
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
     7. SYNOPSIS
     8. WHAT WE HAVE LEARNT
  INTRODUCTION
  Accurate time estimation is a crucial skill in civil construction.
  Without it, you won't know how long your project will take to
  complete and the various steps adopted to complete it.
  In current scenario everyone wants to have a perfect
  construction with least investment and minimum time,
  therefore time estimation before starting any project is a must.
  By planning before hand we can know which activity will take
  how much time, we can also check the delays in the project.
  CPM (Critical Path Method) and PERT (Programme Evaluation
  Review Technique) are project management techniques, which
  have been created to plan, schedule and control complex
  projects.
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  2. CONSTRUCTION ACTIVITIES
      Excavation
      PCC work for foundation
      RCC work for foundation
          o ReinforcementTying
          o Shuttering
          o Concreting
      Plinth
          o Reinforcement Tying
          o Shuttering
          o Concreting
      Columns
          o Reinforcement Tying
          o Shuttering
          o Concreting
      Slab beam and slab
          o Reinforcement Tying
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
            o Shuttering
            o Concreting
        Finishing
            o Plastering
            o White washing
            o Painting
        Flooring and tiling
        Wood work
        Steel work
        Services
            o Road work
            o Sanitary installation
            o Water supply
           o   Drainage
           o   Aluminum work
           o   Water proofing
           o   Wiring
           o   Fitting and accessories
           o   SDB and main board
           o   Earthing
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  NEED FOR TIME ESTIMATION
  For any major project proper time estimation prior to the
  commencement of project is indispensible. It includes
  scheduling of works, allotment of time duration for various
  activities and marking of deadline.
  Broadly speaking, time estimation comprises:
      Scheduling of rates
      Activity time
      Event tie
      CPM and PERT analysis
      Representation by Gantt chart.
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  PROPOSED DESIGN (Plan)
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  OPERATIONAL PLAN
  We have taken into account many factors, including task
  dependencies,
  constraints, and interruptions, such as holidays or vacation
  days. Most
  importantly we have scheduled each task using the formula.
  Duration = Work/Resource effort, where:
    1. Duration is the actual amount of time that passes before
       the task is      done.
    2. Work is the effort required over a period of time to do the
       task.
    3. Resource effort is the amount of effort resources are
       assigned to the task and their allocation.
  For example, if:
  Three painters work two days on a task, with an effort of 8
  hours per day, the work for each resource is 16 hours: (2 days *
  8 hours).
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
     1. The total effort of the resources is 24 hours per day: (3
        painters * 8 hours).
     2. The total work for the task is 48 hours: (2 days * 8 hours *
        3 painters).
     3. The duration is 2 days: 48 hours / (3 painters * 8 hours).
  So naturally if we increase resource effort then duration will
  decrease.
  PROJECT DEADLINE
  WE HAVE ASSUMED THE PROJECT DEADLINE TO BE OF 5
  MONTHS.
  EXCAVATION
  It comprises of digging of trenches, holes, foundations,
  extracting
  material from the ground by digging.
  Machines used:
          a. 2 JCB Digger
          b. 6 dumpers
   Efficiency of digger:
  8 m3 digging and loading per hour.
  Excavation per day:
  64 m3 per day.
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  TOTAL TIME FOR EXCAVATION=10.96 DAYS.
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  RCC WORK FOUNDATION
  It includes laying of reinforcement, centering and shuttering of
  plain
  area and laying of M-25.
        Steps involved:
          1) Laying reinforcement
          2) Centering and shuttering
          3) Laying of M-25
     1) Laying of reinforcement.
      Labours used
         a) 4 Blacksmith
         b) 4 Beldar
      Efficiency of work
         Can bend and lay 400kg/day.
      Time for reinforcement of footing
         The time for reinforcement of footing is 10.58days.
     2) Centering and Shuttering.
      Labours used:
         a) 8 Beldar
         b) 8 Carpenter.
      Efficiency of work
         4.8M2/Day per Beldar, Carpenter.
     Time for shuttering of footing.
          The time required for shuttering of footing is 11.28
  days .
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
     3) Laying M-25
      Machinery and setup
          a) Batching Plants
          b) Mixers
          c) Concrete Pumps
          d) Dumpers
          e) Concrete Placers
      Efficiency
         45m3/hr.
      Time required for concreting of footing
            The time required is 1 day.
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  PEDESTAL AND PLINTH BEAM
  Steps involved:
    1) Steel work
    2) Shuttering
    3) M-25
     1) Laying of reinforcement.
      Labours used
          a) 8 Blacksmith
          b) 8 Beldar
      Efficiency of work
         Can bend and lay 800kg/day.
      Time for reinforcement of footing
         The time for reinforcement of footing is 5.6 days.
     2) Centering and Shuttering.
      Labours used:
         a) 16 Beldar
         b)16 Carpenter.
      Efficiency of work
         19.2m2/day.
     Time for shuttering of footing.
         The time required for shuttering of footing is 12.18
  days .
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
     3) Laying M-25
      Machinery and setup
     a) Batching Plants
     b) Mixers
     c) Concrete Pumps
     d) Dumpers
     e) Concrete Placers
      Efficiency
         45 m3/hr.
      Time requirement for concreting of plinth beam
         The time required is 1 day.
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  COLUMNS
  Steps involved:
    1) Steel work
    2) Shuttering
    3) M-25
     1) Laying of reinforcement.
      Labours used
         a) 10 Blacksmith
         b) 10 Beldar
      Efficiency of work
         Can bend and lay 1000kg/day.
      Time for reinforcement of footing
         The time for reinforcement of footing is 9.1 days.
     2) Centering and Shuttering.
      Labours used:
         a) 20 Beldar
         b)20 Carpenter.
      Efficiency of work
         4.8m2/day per Beldar per Carpenter.
     Time for shuttering of footing.
         The time required for shuttering of footing is 12.41
  days .
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
     3) Laying M-25
      Machinery and setup
     a) Batching Plants
     b) Mixers
     c) Concrete Pumps
     d) Dumpers
     e) Concrete Placers
      Efficiency
         45 m3/hr.
      Time required for concreting of column
         the time required is 1 day.
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  SLABS
  Steps involved:
    1) Steel work
    2) Shuttering
    3) M-25
     1) Laying of reinforcement.
      Labours used
         a) 16 Blacksmith
         b) 16 Beldar
      Efficiency of work
         Can bend and lay 1600 kg/day.
      Time for reinforcement of footing
         The time for reinforcement of footing is 2.85 days.
     2) Centering and Shuttering.
      Labours used:
         a) 16 Beldar
         b)16 Carpenter.
      Efficiency of work
         2.4 m2/day per belder per carpenter.
      Time for shuttering of footing
           The time required for shuttering of footing is 12.28days .
     3) Laying M-25
      Machinery and setup
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
     f) Batching Plants
     g) Mixers
     h) Concrete Pumps
     i) Dumpers
     j) Concrete Placers
      Efficiency
         45 m3/hr.
      Total time required for concreting of slab
         Time required is 1 day.
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  BRICK WORK
  Erection of walls:
     Types of wall:
                 200mm thick.
     Labours used:
          a. 3.5 mason.
          b. 6.5 mazdoor
          c. 0.75 bishti.
      Efficiency of work
             4.1 m3/day.
      Time required for total brick work
         Time required is 29.55 days.
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  WHITE WASHING
  Whitewash, or calcimine, kalsomine, or calsomine is a
  very low cost type of paint made from slaked lime
  (calcium hydroxide)
  and chalk (whiting). Various other additives have also
  been used. It is usually applied to exteriors - however
  it is traditionally used internally in food preparation
  areas - particularly rural dairies - for its mildly anti-
  bacterial properties.
      Labours used:
         a. 2 whitewasher
         b. 2 mazdoor.
      Efficiency:
               120 m2/day.
      Time required for white washing is 7.65 days.
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  PAINTING
  Painting involves coating the walls with distemper or
  acrylic paint over the whitewash layer. It is intended
  for aesthetic and hygienic purpose.
      Labours used:
       a. 12 painters
       b. 8 mazdoor.
      Efficiency:
           40 m2/day.
      Total time required for painting is 14.3 days.
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  FLOORING/TILING
  This involves laying of the tiles on the floor slab for its
  finishing and aesthetical importance.
      Labour used:
            3 tile layer
      Efficiency
          18 m2/day.
      Total time required for tiling is 15.3 days.
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  WOOD WORK (doors and windows)
  Wood work includes installation of doors and
  windows, sill and lintel frames, ventilators ,etc.
      Labour used:
          a. 4 carpenters.
          b. 2 beldar.
      Efficiency
            2.06m2/day.
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
      Time required for wood work is 25.86 days.
  SANITARY INSTALLATIONS
  This work includes installing water closets, wash
  basins, other bathroom utilities in toilet and
  bathrooms.
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  WIRING AND ELECTRICAL FITTINGS
  This includes laying of the various electrical
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  networks within the building and installation of SDB,
  main board and discrete
  sockets.
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  WATER SUPPLY
  Proper water supply connections are a prerequisite for
  any building construction. this work includes laying of
  water supply network so as to meet various needs of
  future inhabitants.
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  DRAINAGE
  Sewerage works, waste water outlets, manholes,
  underground drains comes under this category.
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  WATER PROOFING
  This is done to prevent seepage of underground
  waters from seeping into the structure due to the pore
  water pressure. This construction is done at plinth
  level.
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MAJOR PROJECT: DESIGN AND TIME ESTIMATION OF A BUILDING
  REFERENCES
      IS 456:2000 for limit state design of various rcc
         components.
      IS 1786:1985 for calculating mass per unit
         length of various steel bars used.     
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