Pan Gulf Technologies Engineering Services

Water Supply Design

Get to know more about the project below

Project Brief:

The Water Supply Design Project in Al Kamil, Saudi Arabia, was developed to cater to a population of 11,293 at the ultimate stage. The project involved the design and implementation of a comprehensive distribution system and pumping main, ensuring efficient and reliable water supply to meet current and future demands. With a focus on sustainability and performance, the system was engineered to optimize water flow, pressure management, and long-term operational efficiency, contributing to the region’s infrastructure development.

Inputs:

The project design was developed based on key inputs from the client, ensuring accuracy and alignment with site conditions. These inputs included a topography and utility survey, providing critical elevation and infrastructure data for precise planning. Additionally, the client provided source details, maps, contour data, and DWG files, which facilitated the design of an optimized water distribution network. Existing utility details were incorporated to prevent clashes and ensure seamless integration with the current infrastructure. Ground investigation details played a vital role in assessing soil conditions for pipeline stability and structural integrity. The data was shared in multiple formats, including PDF and DWG files, allowing for efficient analysis and integration into the design process.

Scope of Work:

The scope of work for the Water Supply Design Project in Al Kamil, Saudi Arabia, included the modeling and design of the distribution system and pumping main using WaterGEMS, ensuring an optimized and efficient water supply network. Advanced hydraulic analyses, including steady-state and Extended Period Simulation (EPS) analysis, were conducted to assess system performance under varying demand conditions. Tank volume calculations were performed using WaterGEMS to determine adequate storage capacity. Additionally, a GIS-based output map was generated for precise spatial representation of the network. The project also incorporated water quality analysis, focusing on chlorine levels and water age, to ensure safe and high-quality water distribution. Furthermore, L-section profiles were developed, providing a detailed longitudinal view of the pipelines for accurate planning and execution. These design outputs ensured a robust, data-driven approach to achieving an efficient and sustainable water supply system.

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