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Numerical and experimental investigation of a cross-flow water turbine

机译:横流水轮机的数值与实验研究

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A numerical and experimental study was carried out for validation of a previously proposed design criterion for a cross-flow turbine and a new semi-empirical formula linking inlet velocity to inlet pressure. An experimental test stand was designed to conduct a series of experiments and to measure the efficiency of the turbine designed based on the proposed criterion. The experimental efficiency was compared to that from numerical simulations performed using a RANS model with a shear stress transport (SST) turbulence closure. The proposed semi-empirical velocity formula was also validated against the numerical solutions for cross-flow turbines with different geometries and boundary conditions. The results confirmed the previous hydrodynamic analysis and thus can be employed in the design of the cross-flow turbines as well as for reducing the number of simulations needed to optimize the turbine geometry.
机译:进行了数值和实验研究,以验证先前提出的横流式涡轮机设计标准以及将入口速度与入口压力联系起来的新的半经验公式。设计了一个试验性试验台,以进行一系列试验并测量根据建议标准设计的涡轮机的效率。将实验效率与使用RANS模型和剪切应力传输(SST)湍流闭合的数值模拟进行了比较。还针对具有不同几何形状和边界条件的横流式涡轮机的数值解,验证了所提出的半经验速度公式。结果证实了先前的流体力学分析,因此可用于横流式涡轮机的设计中,并可用于减少优化涡轮机几何形状所需的模拟次数。

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