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Thermoeconomic analysis of co-firing combined cooling, heating, and power system based on energy level

机译:基于能级的混合制冷,供热和电力系统联合燃烧的热经济学分析

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摘要

In this work, exergy and exergoeconomic cost analyses are applied to biomass and natural gas co-firing in a combined cooling, heating, and power (CCHP) system, based on the structural theory of thermoeconomics. The thermoeconomic model for the investigated co-firing CCHP system is defined to quantify the productive relationships among the various components. The unit exergy/exergoeconomic cost of all flows in the productive structure are calculated by solving the characteristic equations and exergy/exergoeconomic cost equations together with the auxiliary cost allocation equations. A comparative analysis between the previous auxiliary cost allocation method and the method based on energy level is presented. Moreover, the production performance of components under summer and winter conditions are evaluated based on the exergy cost analysis. The results show that, compared with the previous method, the exergoeconomic costs of electricity with higher energy level increase 21.10 and 22.90 USD/MWh under summer and winter conditions, respectively, while the costs of other products with lower energy level decrease. Furthermore, a sensitivity analysis is presented to analyze the variation of the unit exergoeconomic cost of products with fuel prices and some non-energy factors. In conclusion, the structural theory of thermoeconomics integrated with auxiliary cost allocation equations based on the energy level can provide reasonable and accurate results for multi-product energy systems.
机译:在这项工作中,基于热经济学的结构理论,在综合制冷,供暖和发电(CCHP)系统中,将能值和能效成本分析应用于生物质和天然气的共烧。定义了用于研究的共燃CCHP系统的热经济模型,以量化各个组件之间的生产关系。通过求解特征方程,能动/经济能动成本方程以及辅助成本分配方程,计算生产结构中所有流的单位能动/能动经济成本。对比了以前的辅助成本分配方法和基于能级的方法。此外,基于火用成本分析,评估了夏季和冬季条件下组件的生产性能。结果表明,与以前的方法相比,在夏季和冬季条件下,能源水平较高的电力的能效经济成本分别提高了21.10美元/ MWh和22.90美元/兆瓦时,而其他能源水平较低的产品的成本却降低了。此外,提出了敏感性分析,以分析产品的单位能效经济成本随燃料价格和一些非能源因素的变化。总之,将热经济学的结构理论与基于能量水平的辅助成本分配方程相结合,可以为多产品能源系统提供合理,准确的结果。

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