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New ways towards increased efficiency in the utilization of energy flows in buildings

机译:提高建筑物能源流量利用效率的新方法

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It is often claimed that energy is consumed; this is not only done in everyday conversation but also in scientific discussions associated with energy and environmental issues. This claim conflicts with the first law of thermodynamics stating that the total amount of energy is conserved, even though forms of energy may change from one to another. This is why we need to use the thermodynamic concept, exergy, to fully understand what is consumed. An optimization of the exergy flows in building, similar to other thermodynamic systems such as power stations, can help in identifying the potential of increased efficiency in energy utilization. This paper shows, through analyses and examples, that calculations based on the energy conservation and primary energy concept alone, are inadequate for gaining a full understanding of all important aspects of energy utilization processes.The high potential for a further increase in the efficiency of; for example, boilers, can not be quantified by energy analysis - the energy efficiency is close to 1; however, this potential can be showed by using exergy analysis. This research work is related to the international co-operation work in the IEA ECBCS Annex 37 "Low Exergy Systems for Heating and Cooling of Buildings".
机译:它通常声称能量消耗;这不仅在日常谈话中完成,而且在与能源和环境问题相关的科学讨论中。这一权利要求与热力学的第一定律相冲突,说明了能量总量的保守总量,即使能量形式可能从一个到另一个。这就是为什么我们需要使用热力学概念,声波,完全了解所消耗的内容。建筑物中的电力流动的优化,类似于其他热力学系统,如电站,可以帮助识别能量利用效率提高的潜力。本文通过分析和示例显示了基于节能和单独的初级能量概念的计算,不足以充分了解能量利用过程的所有重要方面。进一步提高效率的高潜力;例如,锅炉,不能通过能量分析量化 - 能效接近1;但是,可以通过使用deervent分析来显示这种潜力。这项研究工作与IEA ECBCS附件37中的国际合作工作有关。

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