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Thermodynamic Simulation on the Performance of Twin Screw Expander Applied in Geothermal Power Generation

机译:地热发电中双螺杆膨胀机性能的热力学模拟

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摘要

A three-dimensional (3D) geometry model of twin screw expander has been developed in this paper to measure and analyze geometric parameters such as groove volume, suction port area, and leakage area, which can be described as functions of rotation angle of male rotor. Taking the suction loss, leakage loss, and real gas effect into consideration, a thermodynamic model is developed using continuity and energy conservation equation. The developed model is verified by comparing predicted results of power output and internal efficiency with experimental data. Based on the model, the relationship between mass flow rate through inlet port and leakage path with rotation angle of male rotor as well as effects of the inlet parameter and operating parameter on the performance of the expander are analyzed.
机译:本文开发了双螺杆膨胀机的三维(3D)几何模型,用于测量和分析几何参数,例如凹槽体积,吸入口面积和泄漏面积,这些参数可以描述为外转子旋转角度的函数。考虑吸力损失,泄漏损失和实际气体影响,利用连续性和能量守恒方程建立了热力学模型。通过将功率输出和内部效率的预测结果与实验数据进行比较,可以验证所开发的模型。在此模型的基础上,分析了入口流量和泄漏路径质量流量与公转子旋转角度之间的关系,以及入口参数和运行参数对膨胀机性能的影响。

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