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Design and simulated performance of a solar-thermal system employing seasonal storage for providing the majority of space heating and domestic hot water heating needs to a single-family house in a cold climate

机译:采用季节性存储的太阳能热系统的设计和模拟性能,可为寒冷气候中的单户住宅提供大部分空间供暖和生活热水供暖需求

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摘要

The majority of the space and domestic hot water heating needs of houses in cold climates can be supplied by solar energy, but only if long-term (seasonal) storage is employed to enable solar energy collected during the summer and autumn to be used during winter. Most seasonal storage applications to date have been for community-scale systems, although there have been a few experimental and simulation studies of building-scale applications, which offer reduced losses from transmission networks due to the proximity between building-mounted solar collectors and the seasonal store. A simulation-based study has been performed to design a building-scale solar thermal system with seasonal storage for a research house with a heated floor area of approximately 150 m(2). Parametric simulations revealed that a solar fraction exceeding 90% could be achieved for many combinations of solar collector area and seasonal store volume. A solar collector gross area of 41.6 m(2) and a seasonal store volume of 36 m(3) were chosen for this installation, which is expected to achieve a solar fraction in the range of 87-98%.
机译:寒冷气候下房屋的大部分空间和生活热水供暖需求都可以由太阳能提供,但前提是必须采用长期(季节性)存储以使夏季和秋季收集的太阳能可以在冬季使用。迄今为止,大多数季节性存储应用都是针对社区规模的系统的,尽管对建筑规模的应用进行了一些实验和模拟研究,但由于建筑物内太阳能收集器和季节性太阳能电池之间的距离较近,因此减少了传输网络的损耗。商店。已经进行了基于模拟的研究,以设计一个供季节性使用的建筑规模的太阳能供热系统,该研究用房的加热地板面积约为150 m(2)。参数模拟显示,对于太阳能收集器面积和季节性存储量的许多组合,可以达到90%以上的太阳能分数。为此安装选择了41.6 m(2)的太阳能集热器总面积和36 m(3)的季节性存储量,这有望实现87-98%的太阳能比例。

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