首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy >Influence of prime mover size and operational strategy on the performance of combined cooling, heating, and power systems under different cost structures
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Influence of prime mover size and operational strategy on the performance of combined cooling, heating, and power systems under different cost structures

机译:在不同成本结构下,原动机的尺寸和操作策略对冷却,加热和动力系统组合性能的影响

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Combined cooling, heating, and power (CCHP) systems use waste heat from on-site electricity generation to meet the thermal demand of the facility, which includes cooling, heating, and hot water. When compared with traditional set-ups of grid-generated electricity and an on-site boiler for heat, CCHP systems are capable of improving fuel utilization and lowering emissions. One of the critical components affecting the performance of CCHP systems is the prime mover. The objective of this investigation is to study the effect of the prime mover size and operational strategy on the energy, economical, and environmental performance of CCHP systems under different pricing structures. Three different sizes for the prime mover, a natural gas engine, are simulated under different operational strategies such as: following the electric demand of the facility, following the thermal demand of the facility, and following a constant load. The results obtained for the CCHP system will be compared with a reference building operating under conventional technologies to determine the advantages or disadvantages of the CCHP system's operation. In addition, a simple optimization of the system's operation determines the best engine load for each hour during the simulation that minimizes cost, primary energy consumption (PEC), or carbon dioxide emissions (CDEs). For this study, three locations in different climate zones that have different electricity rate structures were chosen: one with a constant flat rate; one that uses seasonal rates; and one that incorporates block charges. Historical monthly natural gas rates were also used. Since most authors perform cost analyses using a fixed constant rate for both electricity and natural gas, a comparison is made between the cost results from using the actual cost data to those that use an average fixed rate. In general, among the three engine sizes that were simulated, the smallest engine yielded the lowest costs and lowest PEC; but, no such trend was found with regard to the CDE. The results also showed that the performance of the evaluated CCHP system can be improved by optimizing the system based on cost or primary energy.
机译:组合的冷却,加热和动力(CCHP)系统使用现场发电产生的废热来满足设施的热需求,包括冷却,加热和热水。与传统的电网发电设备和现场供热锅炉相比,CCHP系统能够提高燃料利用率并降低排放。原动力是影响CCHP系统性能的关键因素之一。这项调查的目的是研究在不同定价结构下原动机规模和运营策略对CCHP系统的能源,经济和环境绩效的影响。在不同的操作策略下模拟了原动机(天然气发动机)的三种不同尺寸,例如:遵循设施的电力需求,遵循设施的热需求以及遵循恒定负载。将CCHP系统获得的结果与在常规技术下运行的参考建筑物进行比较,以确定CCHP系统运行的优点或缺点。此外,系统运行的简单优化可以确定模拟过程中每小时的最佳发动机负载,从而最大程度地降低成本,一次能源消耗(PEC)或二氧化碳排放量(CDE)。在本研究中,选择了在不同气候带中具有不同电费结构的三个位置:一个具有恒定的固定费率;一种使用季节性汇率;还有一个包含大笔费用的还使用了历史每月天然气费率。由于大多数作者对电力和天然气使用固定的固定费率进行成本分析,因此需要对使用实际成本数据的成本结果与使用平均固定费率的成本结果进行比较。通常,在模拟的三种发动机尺寸中,最小的发动机成本最低,PEC最低;但是,在CDE中未发现这种趋势。结果还表明,通过基于成本或一次能源优化系统,可以提高所评估CCHP系统的性能。

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