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Exergetic, exergoeconomic and exergoenvironmental analysis of intercooled gas turbine engine

机译:中冷燃气涡轮发动机的能效,能效经济和能效环境分析

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摘要

Exergetic and exergoeconomic and exergoenvironmental analyses have been performed for an advanced aero-derivative intercooled gas turbine engine. The proposed system was modelled using the IPSEpro software package and validated using manufacturer’s published data. The exergoeconomic model evaluates the cost-effectiveness of the gas turbine engine based on the Specific Exergy Costing [SPECO] method. The CO2 emissions per KWh were estimated using a generic combustor model, HEPHAESTUS, developed at Cranfield University. It is well known that the exergetic analysis can determine the magnitudes, locations and types of losses within an energy system. The effect of load and ambient temperature variations on gas turbine performance were investigated for two different configurations. The first system, Case-I, was a simple gas turbine (SCGT) engine, and the second, Case-II, an intercooling gas turbine (ICGT) system. The latter enhances gas turbine efficiency but, at the same time, has an adverse effect on the combustion chamber due to reduced compressed air temperature. It was confirmed that full load and low ambient temperature are preferable due to the low waste exergy. The unit exergy cost rate for both SCGT and ICGT have been calculated as 8.59 and 8.32 US$/GJ respectively. The exergoenvironmental results show the ICGT achieved lower emission levels and is more environmentally friendly than the SCGT.
机译:已经对先进的空气导数中冷燃气涡轮发动机进行了充分的,能经济的和能环境的分析。拟议的系统使用IPSEpro软件包进行了建模,并使用制造商发布的数据进行了验证。用能经济学模型根据比能用成本法(SPECO)评估燃气轮机的成本效益。每千瓦时的二氧化碳排放量是使用克兰菲尔德大学开发的通用燃烧器模型HEPHAESTUS估算的。众所周知,高能分析可以确定能源系统内损失的大小,位置和类型。对于两种不同的配置,研究了负载和环境温度变化对燃气轮机性能的影响。第一个系统Case-I是简单的燃气涡轮(SCGT)发动机,第二个系统Case-II是中冷式燃气涡轮(ICGT)系统。后者提高了燃气轮机的效率,但同时由于压缩空气温度降低,对燃烧室产生不利影响。证实了由于低的废本能,优选全负荷和低环境温度。 SCGT和ICGT的单位火用成本率分别计算为8.59 US $ / GJ。环保实验结果表明,与SCGT相比,ICGT的排放水平更低,对环境更友好。

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