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Simulation of Thermal Stratification and Salinity Using the Ce-Qual-W2 Model (Case Study: Mamloo Dam)

机译:使用Ce-Qual-W2模型模拟热分层和盐度(案例研究:Mamloo大坝)

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Due to the shortage of fresh water, the quality of stored water in reservoirs has become increasingly important. Thermal regime and salinity are factors that affect the quality of water reservoirs. These two parameters were studied in Mamloo Dam in Tehran province. This dam has recently started to be uses as a source of drinking water for Tehran and thus its water quality is of increased importance. In this regard, the hydrodynamic model for 2014 to 2015 was built and calibrated by the CE-QUAL-W2 model and the model was used to simulate the thermal regime and salinity up to 2020. Two main scenarios were studied in this period, the continuation of the current situation or a 2.5% increase in water requirements and 5% decrease in discharge. The results show that the reservoir will experience thermal stratification in the summer and vertical mixing in the winter. Dased on these results Mamloo reservoir is in branch of warm Monomictic lake. Also results showed that thermal stratification and ssalinity stratification dominates simultaneity. Besides this issue with 2.5% increase in water requirements and 5% decrease in discharge, duration of summer thermal stratification will decrease although intensity of thermal stratification will increase.
机译:由于淡水的缺乏,水库中储存水的质量变得越来越重要。热态和盐度是影响储水质量的因素。在德黑兰省的Mamloo大坝研究了这两个参数。该水坝最近开始被用作德黑兰的饮用水水源,因此其水质变得越来越重要。在这方面,通过CE-QUAL-W2模型建立并校准了2014年至2015年的水动力模型,并使用该模型模拟了直到2020年的热力状态和盐度。在此期间,研究了两种主要情景,即持续性或2.5%的需水量和5%的排放量减少。结果表明,储层在夏季将经历热分层,在冬季将经历垂直混合。基于这些结果,Mamloo水库位于温暖的Monomictic湖分支中。结果还表明,热分层和盐度分层主导了同时性。除了这个问题,需水量增加了2.5%,排放量减少了5%,夏季的热分层持续时间也会减少,尽管热分层的强度会增加。

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