Flood Modelling in Muar Using HEC-RAS
Flood Modelling in Muar Using HEC-RAS
1 (2023) 299-308
                              © Universiti Tun Hussein Onn Malaysia Publisher’s Office
                                                RTCEBE
                       Homepage: http://publisher.uthm.edu.my/periodicals/index.php/rtcebe
                                                 e-ISSN :2773-5184
                  DOI: https://doi.org/10.30880/rtcebe.2023.04.01.031
                  Received 06 January 2022; Accepted 15 January 2023; Available online 01 May 2023
                  Abstract: Muar town has experienced seasonal floods for the last five years. This
                  incident has caused damages to most public property and government property such
                  as houses, buildings, roads, and many others. The behavior of floods, the impact on
                  the local population, and the effectiveness of man-made drainage systems in the city
                  of Muar and the production of flood models are the major objectives of the study. The
                  study is conducted to upgrade the existed man-made drainage system in Muar town
                  based on the modeling that will be done with the hydrology software that is
                  Hydrologic Engineering Centre’s River Analysis System HEC-RAS. The study is
                  conducted by a collection of the data in the study area before performing HEC-RAS
                  simulation and hydraulic analysis. Terrain data, geometric data, cross-section data,
                  and flow data will be conducted one by one in the HEC-RAS before simulate the
                  existing conditions. The study discovered increasing rainfall trends, which are one of
                  the most important factors in flooding from year to year. As a result, the current
                  drainage system will be ineffective in the future. The flood modelling is a tool to
                  predict the flood event for existing and future conditions of the drainage. The analysis
                  of the drainage will be done in order to avoid factors that contributing to the flooding.
1.   Introduction
    Natural hazards, as one of the elements of global Eco dynamics, that is caused by natural processes
that are unrelated to human existence. Weather patterns such as (tornadoes, storms, floods, and
hurricanes), changes in the Earth's crust such as (earthquakes, volcanoes, and landslides), and climatic
conditions can all cause natural disasters (such as droughts, bush fires, cold snaps, etc.). When humans
are exposed to natural hazards, natural risks arise [1]. Natural disasters have been described by humans
since the dawn of civilization on Earth, such as Noah's flood in The Holy Quran. Flood disasters,
*Corresponding author: adib@uthm.edu.my
2023 UTHM Publisher. All rights reserved.
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Syed Zakaria and Mohammad Razi, Recent Trends in Civil Engineering and Built Environment Vol. 4 No. 1 (2023) p. 299-308
whether caused by natural or man-made forces, make up roughly a third of all natural disasters in terms
of number and economic losses, as well as more than half of all deaths worldwide [2]. Flood disasters
remain the dominant cause of death in Asia's poor and highly populated regions. Population growth,
land use force, climate change, and insurance industry response are all global factors that can affect
potential flooding. As fast-developing Asian countries face population growth pressures and demand
for more floodplain development, flood management is expected to continue for the sake.
     This study comes up with a better solution to avoid factors that contributing to the flood occurring
in Kg Sabak Awur, Muar. Kg Sabak Awur is known as a lowland area that is flood easily occurred,
especially in the monsoon changes. Flash floods are also a common occurrence on the study site [3].
The main purpose of the study is to upgrade man-made drainage systems by using the modelling that
has been done with channel modifications. This is critical to prevent the urban floods from getting worse
year after year. This could occur if urban drainage systems are managed and upgraded to a better system
that can clearly control an excessive amount of filtration during monsoon changes. Aside from that, to
avoid natural disasters such as floods, which are destroying Muar's property. Floods have destroyed
property in the past, and the worst-case scenario is a loss of life. The flood can be prevented by
upgrading the drainage system by developing the flood modelling using HEC-RAS, and the flood
behavior pattern and the risk can be determined.
2. Literature Review
Kampung Sabak Awor is one of the areas that experiences flooding almost every year in the Muar town,
particularly in low-lying areas. Furthermore, two hours of heavy rain can result in flash floods in several
areas of Muar town, including Kampung Sabak Awor, Muar. Some homes were inundated in 0.3 metre
deep waters, according to the Muar District Disaster Management Committee [3]. This occurs as man-
made irrigation systems cannot hold vast volumes of water because of annual monsoon changes. This
situation can be seen as a example at the 300 meter long Sungai Abong’s road that is related to the
concrete drain is only 300 millimetres in size and it is cannot hold a high volume of water. Besides,
floods inundated some areas with water in Muar town because of the poor effluent system, due to the
blocked drainage and sewers [6].
         The Hydrologic Engineering Centre (HEC) of the US Army Engineering Corps initiated flood
hazard mapping in 1988 in the United States [4]. Flow over or exceed the natural riverbanks is defined
as a high flow river [4]. Results of flooding Overflowing channels or unusual high tides streams from
excessive rain on the land or coastal area waves. Some of the main factors determining the
characteristics of flows are characteristics of precipitation events, flood depth, flow speed and the
rainfall event duration. Intensive precipitation and other factors such as the melting of snow, the
inadequate drainage, water-saturated ground or unusually high tides or waves are the cause of most
floods. Flooding is the most damaging phenomenon for the social and economic effects of people [4].
There are a variety of flood types. River flows, blazing flows, coastal floods, urban floods and ice jams
are the most common types.
        The mapping of the river flood is the process by comparing the river water levels to the surface
elevation to identify flood levels and flood depth. The process requires an insight into fluid dynamics,
topographical relations, and the modeler's sound assessments [5]. The flood hazard maps may contain
depth of water, extent of flooding, flow speeds and duration of flooding. This is a fundamental and
important indicator for the development and regulation on the floodplain land use. The study mainly
aims to produce flood risk map for the national insurance programmed (NFIP) because private insurance
companies are reluctant to provide insurance policies as a consequence of disastrous losses [4].
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3.   Methodology
    The main purpose of this study are to prevent the urban floods occur with advancement of
technology that made it feasible to do even though such disasters cannot be prevented. Since years ago,
floods are the one of the common natural disasters that causing significant economic and property
destruction as well as the loss of human life. The advances in technology such as Hydrologic
Engineering Centre - River Analysis System (HEC-RAS) can make it possible to identify flood
susceptible areas, prospective inundation depths, and areal extents which may then be utilized to build
flood risk maps for specific places. The risk maps that have been created can be used to identify vital
zones, send out early warnings to individuals in the event of a potential incident, and assist in making
administrative choices in the event of an emergency [7]. Figure 1 shown is the flowchart of the studies.
Identifying problem
Site surveying
Data collection
Perform HEC-RAS
         Reach                     Bridge Culvert Data                  Geometric Data                   Flow Data and Boundary
                                                                                                               condition
Report presentation
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3.2 Geometry
         The geometry as reach and the cross-section of the drainage in Kg Sabak Awur, Muar was
created with the help of Google hybrid and based on the data collection. Figure 3 shows are the reach
and cross-section of drainage in the study area. The length of the reach is 500 meters and have 50 meters
between each cross section. The selection of the reach is based on the frequent flood occurred of the
area. The bridge culvert data was also created using the HEC-RAS software, which involved two
circular culverts and four rectangular culverts. The geometry of the channel also shown in the figure 4
as the one of the cross section in the study area reach.
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determination is based on the general use for the drainage system for the normal depth. While the
downstream profile is critical depth for the entire profile.
                                         Table 1: 5 years and 100 years discharge
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can be obtained in the future. Figure 9 and figure 10 shown are the 5 years flood event and 100 years
flood events that are obtained from the HEC-RAS analysis at Kg Sabak Awor, Muar.
5.   Conclusion
         The Hydrologic Engineering Centre's River Analysis System, also known as HEC-RAS, is one
of the best software programs for developing flood modelling wherever we want, regardless of how big
or small the stream is or how many discharges, culverts, and other features, it has. This is demonstrated
by the creation of well-constructed flood modelling at Kg Sabak Awur in Muar. We can see a clear
comparison of the flood that will occur in a 5-year flood event versus a 100-year flood event in the
study area as a result of the findings. Not just that, but we can also foresee how effective the existing
drainage system will be in the future. This was an excellent way to meet the study's objectives.
Furthermore, using the HEC-RAS software, we can assess flood behavior patterns and their risk to a
community as an early warning system prior to flooding.
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Syed Zakaria and Mohammad Razi, Recent Trends in Civil Engineering and Built Environment Vol. 4 No. 1 (2023) p. 299-308
The study's findings revealed that rainfall trends have an effect on flood behavior patterns. More
flooding will occur if rainfall trends continue to increase, particularly in low-lying areas. As a result of
this result, a flood event in 100 years will be worse than a flood event in 5 years, or even in the current
year.
          The channel modification can be used in real-world situations based on what has been done in
the HEC-RAS software to prevent flooding from becoming even worse, especially in lowland areas.
The drainage system should be upgraded to ensure that it can accommodate a well of water in the future,
as this is the most important factor for flooding.
Acknowledgement
    This research was made possible by the supports from the family, supervisor, and friends. Author
also would like to millions thanks for Faculty of Civil Engineering and Built Environment, University
Tun Hussein Onn Malaysia for its support.
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