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Three-Dimensional Numerical Modeling of the Temperature Distribution in a High Dam Reservoir on the Mekong River

机译:湄公河高坝水库温度分布的三维数值模拟

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Xiaowan Reservoir was created by the construction of Xiaowan Dam on Mekong River. This dam is the second highest arch dam in the world with 292 m tall and 902 m long. The reservoir is about 178km from upstream to the dam, and the surface area is around 189 km~2. The water depth near the dam is very deep, which normally varies from 200 to 270m seasonally. For such a deep reservoir, the vertical temperature distribution show a significant stratified structure. In this study, a three dimensional numerical model was developed for simulating the flow fields and temperature distribution in Xiaowan reservoir near the dam. The effects of buoyancy on the momentum equations and turbulence transport equations was considered. For turbulence closure, the buoyancy-extended version of k-e model was used. The model was first validated using a laboratory case of turbulent buoyant flow in a curved open channel, and then it was applied to simulate the flow and temperature in Xiaowan Reservoir. The numerical results were compared with field measurements, and the physical characteristics of flow pattern and temperature distribution in the reservoir were discussed.
机译:小湾水库是由湄公河小湾水坝建设而成的。该水坝是世界上第二高的拱坝,高292 m,长902 m。水库从上游到大坝约178 km,表面积约189 km〜2。大坝附近的水深很深,通常每个季节从200到270m不等。对于这样的深层储层,垂直温度分布显示出明显的分层结构。在这项研究中,建立了三维数值模型来模拟大坝附近小湾水库的流场和温度分布。考虑了浮力对动量方程和湍流输运方程的影响。对于湍流闭合,使用了k-e模型的浮力扩展版本。该模型首先在弯曲明渠中湍流浮力的实验室案例中进行了验证,然后将其用于模拟小湾水库的流量和温度。将数值结果与现场测量结果进行了比较,并讨论了油藏的流型和温度分布的物理特征。

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