Simulation of chain of tanks to augment water supply: a case study from Tamil Nadu

M. Abraham, K. Venugopal, R. Arunkumar, S. K. Pramada
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引用次数: 1

Abstract

The application of system dynamics techniques is gaining significance and is much needed for an effective management of the depleting water resources in a dynamically complex region and considers it as the feedback from the system. The present study deals with the application of a system dynamic approach to simulate a chain of four tanks in the Guduvanchery watershed, Tamil Nadu, India. Standard data-driven models cannot be effectively used due to a lack of quality data for ungauged basins. VENSIM was used for the system dynamic simulation to assess water availability for the sustainable management of water resources. Inflow into the four tanks, net losses in each tank, and crop water requirement were given as inputs into VENSIM. Along with different models, an extensive field survey was carried out to quantify each input component. Based on system dynamics simulation, only 28% of the total available water is used for irrigation and the rest is wasted due to evaporation, transition loss, and spill from the tanks. It was found that there was approximately 5.46 MCM of surface water available in the watershed, and it will be able to supply the domestic demand of the watershed of 0.672 MCM in addition to the irrigation requirement.
模拟水箱链以增加供水:泰米尔纳德邦的案例研究
系统动力学技术的应用对于有效管理动态复杂地区的水资源枯竭并将其视为系统的反馈是非常必要的。本研究涉及系统动态方法的应用,以模拟印度泰米尔纳德邦Guduvanchery流域的四个水箱链。由于缺乏未测量盆地的高质量数据,标准数据驱动模型无法有效使用。利用VENSIM进行系统动态模拟,评估水资源的可用水性,促进水资源的可持续管理。四个水箱的入水量、每个水箱的净损失量以及作物需水量作为输入输入VENSIM。除了不同的模型外,还进行了广泛的实地调查,以量化每个输入组件。根据系统动力学模拟,总可用水量中只有28%用于灌溉,其余的由于蒸发、过渡损失和水箱溢出而浪费。研究发现,流域可利用地表水约为5.46 MCM,除灌溉需水量外,可满足流域生活用水0.672 MCM。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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