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Simulation and optimization of the performance in the air-conditioning season of a BCHP system in China

机译:中国BCHP系统空调季节性能的模拟和优化

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Building cooling, heating and power generation (BCHP) is expected to play an important role in the sustainable energy strategy for buildings. However, in many cases the performance of BCHP systems is not as good as predicted and thus perplexes designers and building owners. In this paper the performance of a typical BCHP system is investigated using thermodynamic and thermoeconomic analyses based on the simulation of off-design operation and the performance optimization of the system with the help of a great number of real operation data of the system and the master data supplied by manufacturers. Two optimization problems using exergetic efficiency and gross benefit of the whole BCHP system, respectively, as objective functions are developed in virtue of curve fitting. Computations result in various graphs, which as references are helpful for judging whether or not the system operation is correct. The graphs show that only with enough high load rates can the system operation yield positive benefits. The simulation tells that the fuel cost of BCHP in China accounts for 70-80% of its total cost and therefore is the most important factor in spreading BCHP in the country.
机译:建筑物的制冷,供暖和发电(BCHP)有望在建筑物的可持续能源战略中发挥重要作用。但是,在许多情况下,BCHP系统的性能不如预期的好,因此使设计师和建筑物所有者感到困惑。本文基于非设计运行的模拟和系统的性能优化,借助系统的大量实际运行数据和主数据,利用热力学和热经济分析方法研究了典型的BCHP系统的性能。厂商提供的数据。借助于曲线拟合,提出了分别以整个BCHP系统的有效效率和总收益为目标函数的两个优化问题。计算得出各种图形,这些图形可以作为参考,有助于判断系统操作是否正确。这些图表明,只有在足够高的负载率下,系统操作才能产生积极的好处。模拟表明,中国BCHP的燃料成本占其总成本的70-80%,因此是在全国推广BCHP的最重要因素。

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