Exergy analysis of radial inflow expansion turbines for power recovery

Yousef M. Abdel-Rahim
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引用次数: 9

Abstract

The paper presents an exergy analysis of the performance of a single-stage, radial-inflow expansion turbine. The analysis considers the effect of the design controlling parameters on the power output, and the first law and second law efficiencies of the turbine. The design parameters include: inlet temperature, wheel tip speed, exhaust Mach number and expansion pressure ratio. Limitations imposed by the second law of thermodynamics are presented and discussed, and the admissible ranges of variation of the controlling parameters are outlined and discussed. The analysis enables the process designer to quickly and realistically estimate the amount of power available from the exhaust gases of a process stream, the maximum effective pressure ratio and the temperature drop across the turbine and the exit Mach number.

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功率回收用径向入流膨胀轮机的火用分析
本文对单级径向流入膨胀式水轮机进行了火用分析。分析考虑了设计控制参数对输出功率的影响,以及水轮机的第一定律和第二定律效率。设计参数包括:进口温度、轮尖速度、排气马赫数和膨胀压力比。提出并讨论了热力学第二定律的局限性,概述并讨论了控制参数的允许变化范围。该分析使工艺设计人员能够快速、真实地估计工艺流废气的可用功率、最大有效压力比、涡轮机的温度降和出口马赫数。
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Editorial Volume contents Exergy analysis of radial inflow expansion turbines for power recovery A mixed cycle for converting heat to mechanical work The exergy carry-over index for a utility system
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