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首页> 外文期刊>Solar Energy >Water-to-water heat pump integration in a solar seasonal storage system for space heating and domestic hot water production of a single-family house in a cold climate
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Water-to-water heat pump integration in a solar seasonal storage system for space heating and domestic hot water production of a single-family house in a cold climate

机译:太空季节性储存系统的水 - 水热泵集成,包括寒冷气候的空间加热和家庭热水生产

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摘要

Solar systems can supply space heating and domestic hot water to houses covering a large part of the demand by using solar energy. The use of long-term (seasonal) storage systems is fundamental to reach high levels of solar fraction for the application of these systems in cold climates. Building-scale systems are an attractive solution despite a higher specific installation cost of the tank, because they require less space and have smaller distribution networks which helps reduce thermal losses and costs. However, small-scale systems have restraints on reaching high levels of solar fraction.The integration of a heat pump unit in the system can be strategic to increase the performance level of the system and to enhance the use of solar energy. This study examines the integration of a modulating water-to water heat pump in a solar system equipped with a seasonal storage. The heat pump uses the water of the seasonal tank as the heat source, exploiting the residual heat stored in the tank at the end of the heating season. The system performance is assessed through a number of energy simulations using TRNSYS. A similar solar system without the heat pump is used as a reference system to compare the results and assess the impact of the heat pump integration. The results show that the solar fraction can be increased by approximately five percentage points by including a heat pump.
机译:太阳能系统可以通过使用太阳能向覆盖大部分需求的房屋提供空间加热和家用热水。长期(季节性)储存系统的使用是基本的,以达到高水平的太阳能分数,以便在寒冷气候中应用这些系统。尽管坦克的具体安装成本更高,但是建筑规模系统是一种吸引力的解决方案,因为它们需要更少的空间并具有较小的分配网络,有助于降低热损耗和成本。然而,小规模系统对达到高水平的太阳能分数限制。系统中的热泵单元的集成可以是增加系统性能水平的战略性,并增强太阳能的使用。本研究探讨了在配备季节储存的太阳能系统中的调制水 - 水热泵的集成。热泵使用季节性罐的水作为热源,利用在加热季结束时储存在罐中的残留热量。系统性能通过使用TRNSYS的许多能量模拟来评估。没有热泵的类似太阳系用作参考系统,以比较结果并评估热泵集成的影响。结果表明,通过包括热泵,可以增加太阳能分量大约五个百分点。

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