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ENERGETIC AND EXERGETIC ANALYSIS OF BUILDING COGENERATION SYSTEMS

机译:大建筑热电联产系统的精力充沛和前进分析

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This study deals with types of micro cogeneration (or micro combined heat and power, MCHP) systems and reviews energetic and exergetic analysis of MCHP systems, which are also called building cogeneration systems. These are classified as micro and macro cogeneration systems and figured within subgroups. Previously conducted studies on exergy and energy analyses of internal combustion engines (micro turbines), external combustion engines (Ericsson engines), fuel cells (solid oxide fuel cells) and thermophotovoltaic systems are treated in this paper. The main objectives of this study are to classify MCHP systems used in building cogeneration systems, to introduce types of MCHP systems and to better define micro cogeneration systems in the light of previously conducted studies. In this regard, energetic and exergetic efficiencies of various MCHP systems are graphically obtained. Under grouping presented MCHP systems, internal combustion engines based MCHP systems arc defined to be the best choice with energetic and exergetic efficiency values of 86.0% and 40.31 %, respectively. Micro gas turbines and Ericson engine based micro cogeneration systems are also obtained as valuable systems with the energetic values of 75.99% and 65.97% and exergetic values of 35.8% and 38.5%, respectively. However, in this building cogeneration group, energetic and exergetic efficiencies of the thermophotovoltaic systems have 65.0% and 15.0%, respectively. It may be concluded that system choice depends on the type of the system, energy flow of the system, system parts and developments, while building, system capacity, comfort and maintenance are the other factors to be considered.
机译:本研究涉及微热(或微综合热量和电力,MCHP)系统的类型,以及对MCHP系统的精力充沛和淬火分析,也称为建筑物热电联产系统。这些被归类为微型和宏热电系统并在亚组内进行图。以前进行了关于内燃机(微涡轮机),外燃机(爱立信发动机),燃料电池(固体氧化物燃料电池)和蒸发器系统的研究的研究。本研究的主要目标是分类用于建造热电联产系统的MCHP系统,以引入MCHP系统的类型,并根据先前进行的研究更好地定义微热系统。在这方面,以图形地获得各种MCHP系统的精力和举出的效率。在分组下,基于MCHP系统,基于MCHP系统的内燃机被定义为最佳选择,优势和前进的效率值分别为86.0%和40.31%。微型燃气轮机和埃切尔的发动机基微电偶系统也作为有价值的系统获得,其能量值分别为75.99%和65.97%和35.8%和38.5%的举行值。然而,在这种建筑物的热源组中,蒸发器系统的精力量和前进效率分别具有65.0%和15.0%。可以得出结论,系统选择取决于系统的类型,系统的能量流,系统零件和开发,而建设,系统容量,舒适性和维护是其他因素。

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