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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Assessment of Tesla Turbine Performance for Small Scale Rankine Combined Heat and Power Systems
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Assessment of Tesla Turbine Performance for Small Scale Rankine Combined Heat and Power Systems

机译:小规模兰金热电联产系统的Tesla涡轮性能评估

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For solar Rankine cycle combined heat and power systems for residential buildings and other small-scale applications (producing 1-10 kWe), a low manufacturing cost, robust, and durable expander is especially attractive. The Tesla-type turbine design has these desired features. This paper summarizes a theoretical exploration of the performance of a Tesla turbine as the expander in a small-scale Rankine cycle combined heat and power system. A one-dimensional idealized model of momentum transfer in the turbine rotor is presented, which can be used to predict the efficiency of the turbine for typical conditions in these systems. The model adopts a nondimensional formulation that identifies the dimensionless parameters that dictate performance features of the turbine. The model is shown to agree well with experimental performance data obtained in earlier tests of prototype Tesla turbine units. The model is used to explore the performance of this type of turbine for Rankine cycle applications using water as a working fluid. The model indicates that isentropic efficiencies above 0.75 can be achieved if the operating conditions are tailored in an optimal way. The scalability of the turbine design, and the impact of the theoretical model predictions on the development of solar combined heat and power systems are also discussed.
机译:对于住宅建筑和其他小规模应用(产生1-10 kWe)的太阳能朗肯循环热电联产系统而言,低制造成本,坚固耐用的膨胀机尤其吸引人。 Tesla型涡轮机设计具有这些所需的功能。本文总结了特斯拉涡轮机作为小型兰金循环热电联产系统中的膨胀机性能的理论探索。提出了涡轮转子中动量传递的一维理想化模型,该模型可用于预测这些系统中典型条件下的涡轮效率。该模型采用无量纲表示法,该无量纲表示法确定了指示涡轮性能特征的无量纲参数。该模型显示与特斯拉涡轮机组的早期测试中获得的实验性能数据非常吻合。该模型用于探索使用水作为工作流体的兰金循环应用中此类涡轮机的性能。该模型表明,如果以最佳方式调整运行条件,则可以实现高于0.75的等熵效率。还讨论了涡轮机设计的可扩展性,以及理论模型预测对太阳能热电联产系统发展的影响。

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