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Investigation of separate or integrated provision of solar cooling and heating for use in typical low-rise residential building in subtropical Hong Kong

机译:为亚热带香港的典型低层住宅建筑提供单独或集成的太阳能制冷和供热研究

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In this study, the technical effectiveness of solar cooling and heating was investigated for typical low-rise residential building in the subtropical Hong Kong. Since water heating was required for domestic hot water supply rather than space heating, a separate or an integrated provision of solar cooling and heating could be considered. In the separate provision, cooling was handled by an independent solar absorption air-conditioning system, while water heating was offered by a packaged solar thermal collector already equipped with a storage tank. In the integrated provision, all the solar collectors and a centralized hot water storage tank were collectively applied for both driving the absorption chiller and generating domestic hot water. Through year-round dynamic simulation, it was found that the integrated provision could have annual primary energy saving of 13.5% against the separate provision. The effectiveness of the integrated provision was further verified through two energy-saving scenarios, with energy reduction by 17.7% and 18.0% correspondingly as compared to the separate provision. Under the synergistic effect of centralized thermal harness and storage, the integrated solar cooling and heating is more appropriate for typical low-rise residential application in Hong Kong. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在这项研究中,研究了亚热带香港典型的低层住宅建筑的太阳能制冷和供热技术效率。由于家用热水需要供热水,而不是空间供暖,因此可以考虑单独或综合提供太阳能制冷和供暖。在单独的规定中,冷却由独立的太阳能吸收式空调系统处理,而热水由已装有储水箱的成套太阳能集热器提供。在集成配置中,所有太阳能收集器和一个集中式热水储罐都共同应用于驱动吸收式制冷机和产生生活热水。通过全年的动态模拟,发现与单独的规定相比,综合的规定每年可节省13.5%的一次能源。通过两种节能方案进一步验证了整合规定的有效性,与单独规定相比,节能量分别降低了17.7%和18.0%。在集中热线束和存储的协同效应下,集成的太阳能制冷和供暖系统更适合香港典型的低层住宅应用。 (C)2014 Elsevier Ltd.保留所有权利。

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