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Optimal sizing of power generation unit capacity in ICE-driven CCHP systems for various residential building sizes

机译:ICE驱动的CCHP系统中用于各种住宅建筑尺寸的发电单元容量的最佳尺寸

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Currently, CCHP systems are being used over a wide area as a key alternative for producing power, heat and refrigeration. Here, a sample residential building in Mashhad city (Iran) has been selected as a case study to investigate feasibility of employing CCHP systems to meet the energy demands for various buildings sizes. An optimization algorithm is developed to find the best operation point of the Power Generation Unit (PGU) at minimum energy cost. The algorithm optimizes the operation of the CCHP systems at first step. The results of the algorithm implementation for different PGU capacities and various buildings sizes, demonstrate the performance of the operationally optimized CCHP systems at second step. The results show that CCHP system has higher performance comparing to the separate production system considering different evaluation parameters. In small buildings, primary energy saving ratio is positive for PGU capacities between 1 kW and 15 kW, with a maximum amount of 17.24%. But in large buildings, it is positive for PGU capacities between 1 kW and 30 kW, with a maximum amount of 5.1%. The PGU with capacity of 350 kW in 30-units building by 51.18% has the highest amount of energy cost saving ratio. The CCHP system with 120 kW PGU capacity in 30-units building has the least simple payback ratio by 5.08 years. Considering each parameter individually, it is showed that there are some useful mathematical relationships between optimum PGU capacity and building size. Also it is found that there is an equation for best optimum PGU capacity, considering all of evaluation criteria simultaneously. (C) 2015 Elsevier Ltd. All rights reserved.
机译:当前,CCHP系统被广泛用于发电,供热和制冷的关键替代方案。在这里,我们选择了一个位于伊朗马什哈德市的样本住宅楼作为案例研究,以研究采用CCHP系统来满足各种建筑规模的能源需求的可行性。开发了一种优化算法,以最低的能源成本找到发电单元(PGU)的最佳运行点。该算法首先优化了CCHP系统的操作。针对不同的PGU容量和各种建筑物大小的算法实现结果,证明了第二步操作优化的CCHP系统的性能。结果表明,与考虑不同评估参数的独立生产系统相比,CCHP系统具有更高的性能。在小型建筑物中,PGU容量在1 kW和15 kW之间时,一次节能率为正,最大节能量为17.24%。但是在大型建筑物中,PGU容量在1 kW和30 kW之间是积极的,最大数量为5.1%。在30个单元的建筑中,容量为350 kW的PGU的节能量最高,为51.18%。在30个单元的建筑物中,具有120 kW PGU容量的CCHP系统的最简单回收期为5.08年。单独考虑每个参数,结果表明,最佳PGU容量和建筑物尺寸之间存在一些有用的数学关系。同时发现,同时考虑所有评估标准,有一个最佳PGU最佳容量的方程式。 (C)2015 Elsevier Ltd.保留所有权利。

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