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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Energetic and financial evaluation of a solar assisted heat pump heating system with other usual heating systems in Athens
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Energetic and financial evaluation of a solar assisted heat pump heating system with other usual heating systems in Athens

机译:在雅典对太阳能辅助热泵供暖系统和其他常规供暖系统的能源和财务评估

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This study is a manifold energetic and financial comparison of various heating systems. The examined building is a well-insulated building of 100 m(2) area located in Athens (Greece) and three different heating systems are investigated in order to determine the most suitable technology. The basic idea of this study is to compare a solar driven heat pump space heating system with an air source heat pump heating system and a fan coil heating system driven by solar collectors with an auxiliary electrical heater. Feeding a heat pump with hot water increases the Coefficient of Performance (C.O.P.) because the heat source temperature is higher compared to the case of air source heat pump. The energetic simulation tool of the analysis is the commercial software TRNSYS which simulates the behavior of complex transient systems. Many combinations of collecting area and storage tank volumes are presented because these are the main parameters which influence on a solar heating system performance. A simple sensitivity analysis proved that 25 m(2) flat plate collectors (FPC) coupled with a storage tank of 1 m(3) are able to feed the heat pump while 40 m(2) of solar collectors coupled with a 1.25 m(3) storage tank lead to solar coverage over 70%. Every system is designed carefully in order to maintain the thermal comfort conditions in high standards. The last part of this analysis is the financial evaluation of the examined technologies in terms of total cost which combines the investment and the operation cost. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究是对各种供暖系统进行的多种能源和财务比较。被检查的建筑物是一个隔热良好的建筑物,位于雅典(希腊),面积为100 m(2),并研究了三种不同的供暖系统,以确定最适合的技术。这项研究的基本思想是将太阳能驱动的热泵空间加热系统与空气源热泵加热系统以及由太阳能收集器和辅助电加热器驱动的风机盘管加热系统进行比较。向热泵中注入热水可提高性能系数(C.O.P.),因为热源温度比空气源热泵高。分析的强大仿真工具是商用软件TRNSYS,它可以仿真复杂瞬态系统的行为。提出了收集面积和储罐容积的许多组合,因为这些是影响太阳能加热系统性能的主要参数。简单的灵敏度分析证明,与1 m(3)的储罐耦合的25 m(2)平板集热器(FPC)能够为热泵供热,而与1.25 m(2)的太阳能集热器耦合的40 m(2) 3)储罐导致太阳能覆盖率超过70%。每个系统都经过精心设计,以保持高标准的热舒适性。该分析的最后一部分是根据总成本(包括投资和运营成本)对所检查技术进行财务评估。 (C)2016 Elsevier Ltd.保留所有权利。

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