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Laboratory testing of solar combi system with compact long term PCM heat storage

机译:具有紧凑长期PCM蓄热的太阳能系统实验室检测

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To enable the transition from fossil fuels as a primary heat source for domestic hot water preparation and space heating solar thermal energy has great potential. The heat from the sun has the disadvantage that it is not always available when there is a demand. To solve this mismatch a thermal seasonal storage can be used to store excess heat from the summer to the winter when the demand is higher than the supply. Installing a long term thermal storage in a one family house it needs to be compact and sensible heat storages are not suitable. A latent heat storage with a phase change material (PCM) can provide a more compact way of storing heat. Sodium acetate trihydrate (SAT) is a good candidate material as it has a relatively high heat of fusion and in addition it has the ability to supercool to room temperature without solidifying. In this paper results from the test of a solar combi system with a latent heat storage with SAT is presented. The SAT heat storage modules were heated to 80 °C by the solar collectors 53 times in the test period from June to November 2015 and this enabled the modules to supercool. Supercooling was achieved for 39 days for a SAT module after which 11 kWh of heat were discharged.
机译:为了使得从化石燃料的过渡作为国内热水准备的主要热源和空间加热太阳能热能具有很大的潜力。来自太阳的热量具有缺点,即当需要时,它并不总是可用的。为了解决这种不匹配,当需求高于供应时,可以使用热季节性储存来将多余的热量从夏季储存到冬季。在一个家庭房屋中安装长期的热存储需要紧凑且明智的热存储器不合适。具有相变材料(PCM)的潜热存储器可以提供更紧凑的存储热量。醋酸钠三水合物(SAT)是一种良好的候选材料,因为它具有相对高的融合热,因此它能够过冷至室温而不凝固。在本文中,由于呈现了具有SAT的潜热存储器的太阳能组合系统的测试。 SAT储热模块在2015年6月至11月的测试期间由太阳能收集器加热至80°C,这使模块能够成为超级池。 SAT模块在39天内实现过冷却后,其中放电11千瓦时。

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