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Thermoeconomic Analysis of Micro Gas Turbine Design in the Range 25-500 kW_e

机译:微型燃气轮机设计在25-500 kW_e范围内的热经济分析

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The main aim of this paper is the thermoeconomic analysis of micro gas turbines in the range 25-500 kWe.This thermoeconomic analysis is based on the Thermoeconomic Functional Analysis (TFA) approach developed by the Authors over the last twenty years and is strongly related to the need for minimizing of the specific capital cost which is still considered high, and for optimizing MGT size to match customers' needs.The investigation has been carried out using WTEMP code (Web-based ThermoEconomic Modular Program), developed by the Thermochemical Power Group of the University of Genoa [1][2][3]. The thermoeconomic analysis was performed on the basis of the thermodynamic, geometric and capital cost parameters of the main MGT devices (i.e. recuperator effectiveness, turbine inlet temperature, compressor pressure ratio, etc.) and on the economic scenario (fuel costs, cost of electricity, etc.).The subjects of the analysis were the existing Regenerative MGT (R-MGT) cycles [4] [5] and new Inter-cooled Regenerative (ICR-MGT) cycles; for the sake of simplicity in this study, the economic value of heat in the case with CHP configuration was not considered.
机译:本文的主要目的是对25-500 kWe范围内的微型燃气轮机进行热经济分析。 该热经济分析基于作者在过去二十年中开发的热经济功能分析(TFA)方法,并且与最小化仍被认为较高的特定资本成本以及优化MGT大小以匹配的需求密切相关。客户的需求。 使用热那亚大学热化学动力组开发的WTEMP代码(基于Web的ThermoEconomic模块化程序)进行了研究[1] [2] [3]。根据主要MGT设备的热力学,几何和资本成本参数(即换热器效率,涡轮入口温度,压缩机压力比等)和经济情景(燃料成本,电费)进行热经济分析, 等等。)。 分析的对象是现有的蓄热式MGT(R-MGT)循环[4] [5]和新的中冷式蓄热式(ICR-MGT)循环;为了简化本研究,在CHP配置情况下,未考虑热量的经济价值。

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