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Numerical Modeling of Nonuniform Flow in Settling Basins

机译:沉降池非均匀流动的数值模拟

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The settling basins for hydropower plants are designed to remove suspended sediments from the waterflow. The inlet geometry of the settling basin may cause formation of recirculation zones and high turbulence, which may lead to diminished trap efficiency, and as a consequence, turbine erosion. Most analytic approaches for calculating the trap efficiency of settling basins are based on the assumption of a uniform flow; hence, simplified one-dimensional equations are used to determine the velocity distribution and the turbulence characteristics of the flow. However, the velocity field in settling basins is often unevenly distributed, and the simplified equations are not always applicable. This study describes a new method for improving the assessment of settling basin performance. The idea is to extract values for the velocity distribution and the turbulence characteristics along the settling basins from computational fluid dynamic (CFD) models. The extracted CFD values are then used as input parameters to the standard analytical approaches for calculation of settling basin trap efficiency. This promising method is tested on a case study of a physical model of the settling basin for the Lower Manang Marsyangdi Hydropower Project in Nepal. The CFD calculations turn out to provide additional information to the sedimentation calculations in settling basins, and are useful for the assessment of different design alternatives at an early stage. DOI: http://dx.doi.org/10.3126/hn.v14i0.11251 HYDRO Nepal Journal Journal of Water, Energy and Environment Volume: 14, 2014, January Page: 27-35
机译:水力发电厂的沉降池设计用于去除水流中的悬浮沉积物。沉降池的入口几何形状可能导致形成回流区和高湍流,这可能导致捕集效率降低,并因此导致涡轮机腐蚀。计算沉降池疏水阀效率的大多数分析方法都是基于均匀流的假设。因此,简化的一维方程可用于确定流的速度分布和湍流特性。但是,沉降池中的速度场通常分布不均匀,简化的方程式并不总是适用。这项研究描述了一种改进沉降池性能评估的新方法。该想法是从计算流体动力学(CFD)模型中提取沿沉降池的速度分布和湍流特性值。然后,将提取的CFD值用作标准分析方法的输入参数,以计算沉降池陷阱效率。在尼泊尔下马南马尔桑迪迪水电项目的沉降池物理模型的案例研究中测试了这种有前途的方法。结果证明,CFD计算可为沉降池的沉降计算提供更多信息,并且有助于早期评估不同的设计方案。 DOI:http://dx.doi.org/10.3126/hn.v14i0.11251 HYDRO Nepal Journal水,能源与环境学报卷:2014年1月,第1页:27-35

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