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Computational investigation of partial admission effects on the flow field of a tesla turbine for ORC applications

机译:对兽人应用的特斯拉汽轮机流场的偏入效应的计算研究

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摘要

Over recent years, the Tesla turbine gained a renewed interest from the scientific community, as its simple structure guarantees low cost and reliability. These are key aspects of the success of an expander suitable for small-distributed energy systems. The reference case for the computational analysis was selected from the available data of an experimental campaign conducted with R1233zd(E) as the working fluid. The analysed turbine has an efficiency of 29% and a power output of 0.57 kW. The fluid dynamics inside the stator, the stator-rotor gap and the rotor was assessed by means of a 3-D computational model. The comprehensive evaluation of the three regions is of paramount importance to determine the machine flow field and the related performance, as they are significantly affected by the interactions amongst the internal components. The effects of the discrete admission to the rotor are relevant in terms of flow field distortion, while the effects on the performance parameters (power and efficiency) are of minor importance. The performance results of the 3-D computational fluid dynamics are in line with those of the analytical 2-D code, which assumes the uniform admission to the rotor. Finally, after that the detailed analysis of the selected test case was conducted, several simulations with different thermodynamic conditions were carried out and compared to the results of the 2-D analytical code and the experiments.
机译:近年来,特斯拉涡轮机获得了科学界的重新兴趣,因为其简单的结构保证了低成本和可靠性。这些是适用于小分布式能量系统的扩展器成功的关键方面。从用R1233ZD(e)作为工作流体的实验活动的可用数据中选择计算分析的参考案例。分析的涡轮机的效率为29%,功率输出为0.57千瓦。通过三维计算模型评估定子内部的流体动力学,定子转子间隙和转子。三个区域的综合评价对于确定机器流场和相关性能至关重要,因为它们受到内部组件之间的相互作用的显着影响。离散读入转子的效果在流场失真方面是相关的,而对性能参数(功率和效率)的影响具有较小的重要性。 3-D计算流体动力学的性能结果与分析2-D码的性能结果符合,这假设对转子的均匀入场。最后,在进行所选择的测试箱的详细分析之后,进行了几种具有不同热力学条件的模拟,并与2-D分析代码和实验的结果进行了比较。

著录项

  • 来源
    《Energy》 |2020年第1期|118687.1-118687.13|共13页
  • 作者单位

    Department of Industrial Engineering Universita Degli Studi di Firenze Viale Morgagni 40-44 50134 Florence Italy;

    Department of Industrial Engineering Universita Degli Studi di Firenze Viale Morgagni 40-44 50134 Florence Italy;

    Department of Industrial Engineering Universita Degli Studi di Firenze Viale Morgagni 40-44 50134 Florence Italy;

    Department of Industrial Engineering Universita Degli Studi di Firenze Viale Morgagni 40-44 50134 Florence Italy;

    Department of Industrial Engineering Universita Degli Studi di Firenze Viale Morgagni 40-44 50134 Florence Italy;

    Institute of Thermal Technology Silesian University of Technology Konarskiego 22 Gliwice Poland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tesla turbine; Fluid dynamics; ORC; CFD; Partial admission;

    机译:特斯拉涡轮机;流体动力学;orc;CFD;部分录取;

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