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The evaluation of numerical methods for determining the efficiency of Tesla turbine operation

机译:测定特斯拉汽轮机操作效率的数值方法的评价

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The Tesla turbine operation is based on the use of tangential stresses arising from the fluid viscosity and turbulence and from the phenomenon of the fluid adhesion to the surface it flows past. The paper presents a description and testing of the Tesla turbine model, pointing to the impact of the applied turbulence models on the prediction of the Tesla turbine operating conditions. Non-stationary simulations are performed using the Ansys CFX 18 commercial code. The following turbulence models are analysed: the RNG k-epsilon, the k- SST and the SST-SAS in two variants of time and space discretization. The flow field structures and the flow unsteadiness occurring in the gaps between the rotor discs are described. The distribution of power unit arising on the discs is determined and the predictions as to the power generated by the turbine coming from numerical analysis and preliminary experimental investigations are compared. A comparison of efficiency estimation is made using different methods.
机译:特斯拉涡轮机操作基于使用从流体粘度和湍流产生的切向应力以及流体粘附到其流过去的表面的现象。本文介绍了特斯拉涡轮机模型的描述和测试,指向所应用的湍流模型对特斯拉涡轮操作条件的预测的影响。使用ANSYS CFX 18商业代码执行非静止模拟。分析了以下湍流模型:RNG K-EPSILON,K-SST和SST-SAS在两个时间和空间离散化的两个变体中。描述了在转子盘之间的间隙中发生的流场结构和流动不稳定性。确定了在盘上产生的功率单元的分布,并确定了由来自数值分析和初步实验研究的涡轮机产生的功率的预测。使用不同方法进行效率估计的比较。

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