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CHP sizing and domestic building energy cost optimization

机译:热电联产规模和住宅建筑能耗成本优化

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摘要

The number of CHP units installed in domestic buildings is increasing rapidly in recent years, due to the fact that CHP has the potential to increase energy efficiency, to improve energy controllability and to reduce energy costs and carbon emissions. However, installing CHP with inappropriate capacity may increase energy costs and reduce energy efficiency. This paper first uses electricity and heat loads as sizing criteria to find the best capacities of gas engine and fuel cell CHP with the help of the maximum rectangle method (MR). Subsequently, the genetic algorithm optimisation technique (GA) will be used to optimise the daily energy costs of the different cases. Then, heat and electricity loads are jointly considered for sizing different types of CHP and for optimizing the daily energy costs through the GA method. Finally, the optimization results show that the GA sizing method gives a higher average daily energy cost saving, which is 13% reduction.
机译:由于CHP具有提高能源效率,改善能源可控性以及降低能源成本和碳排放的潜力,因此近年来安装在民用建筑中的CHP装置的数量正在迅速增加。但是,以不适当的容量安装CHP可能会增加能源成本并降低能源效率。本文首先将电力和热负荷作为选型标准,借助最大矩形法(MR)找到燃气发动机和燃料电池CHP的最佳容量。随后,将使用遗传算法优化技术(GA)来优化不同情况下的每日能源成本。然后,联合考虑热负荷和电负荷以通过GA方法确定不同类型的CHP并优化每日能源成本。最后,优化结果表明,GA大小调整方法可以节省更高的平均每日能源成本,减少了13%。

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