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Exergo-environmental cost optimization of a combined cooling, heating and power system using the emergy concept and equivalent emissions as ecological boundary

机译:使用能源概念和等效排放作为生态边界的综合冷却,加热和电力系统的Exergo-环境成本优化

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摘要

District energy systems, in particular combined cooling, heating and power (CCHP) systems, can provide cost-effective energy products, reduce fossil fuel consumption and emissions. A gas-fired CCHP system is considered here employing an internal combustion engine, whose exhaust gas is split between an organic Rankine cycle unit and absorption heat pump. A simulation model of the system is constructed and validated. An emergy based exergo-environmental cost method is proposed here to optimize the exhaust gas allocation ratio based on specific working conditions considering the equivalent emissions of the whole life-cycle chain from an ecological view. The emergy consumption in each process stage is evaluated accompanied with a sensitivity analysis. The results show that the minimize specific system cost is 310050 seJ/J when 63% of the exhaust gas flows to the ORC-unit. The ICE and AHP are responsible for 98% of the emergy consumption, dominated by the operation of the system. The sensitivity analysis shows that heating is the most sensitive of all products against key parameter variations, while electricity is the least. Increasing the service period and the operating hours, the economic performance could be improved, while the transformity of emission enlarges the cost. (c) 2021 Elsevier Ltd. All rights reserved.
机译:地区能源系统,特别是组合冷却,加热和电源(CCHP)系统,可提供具有成本效益的能源产品,减少化石燃料消耗和排放。这里考虑一种燃气CCHP系统,采用内燃机,其废气在有机朗肯循环单元和吸收热泵之间分开。构建和验证系统的模拟模型。在此提出了一种基于EEREGO-环境成本方法,以优化基于从生态学视图中的整个生命周期链的等同排放的特定工作条件来优化废气分配比。伴随着灵敏度分析,评估每个过程阶段的可透视消耗。结果表明,当63%的废气流到兽人单元时,最小化特定的系统成本是310050 SEJ / J.冰和AHP负责& 98%的可知消耗,由系统的运行主导。敏感性分析表明,加热是对关键参数变化的所有产品最敏感的,而电力最少。增加服务期间和运营时间,可以提高经济表现,而排放的转变扩大了成本。 (c)2021 elestvier有限公司保留所有权利。

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