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Thermal performance assessment and improvement of a solar domestic hot water tank with PCM in the mantle

机译:地幔中带有PCM的太阳能家用热水箱的热性能评估和改进

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To develop an appropriate solar DHW (Domestic Hot Water) tank for residential dwellings and put it into the European solar thermal market for promotion, thermal performance tests of PCM (Phase Change Material) hot water storage tanks of both a prototype and an improved version with a water volume of 148 1 and 35 kg PCM in the mantle has been carried out. The tank was designed to provide DHW for residential dwellings through a combination of solar and auxiliary heating, concurrently using PCM on the basis of cheap SAT (Sodium Acetate Trihydrate) as a thermal battery to shave off peak auxiliary power or to work under power outage. Heat transfer matching properties of the bottom and the top spirals separately for solar charge and auxiliary charge of the prototype DHW tank were ascertained in terms of heat exchanger capacity rate (HXCR) and the rule of thumb of boiler powers, respectively. Moreover, heat content of the PCM was estimated via a series of test cycles in order to infer its capacity and stability. It was found that there were some technical problems for the prototype tank module, such as mismatching property of the heat exchanger spirals, heat mixing phenomena during hot water draw-off. Thus, an improved tank was manufactured based on the test results of the prototype. Further tests indicated that the matching property of the top heat exchanger spiral was ameliorated for auxiliary charge and the heat mixing between hot water supply pipe and water tank was restrained during discharge, except that the length of the bottom spiral should be further reduced. Regarding the PCM in the mantle, it was inferred that the PCM heat content was somewhat lower than that of ideally working SAT. The PCM tended to perform stably under 16 test cycles with more than 3-month consecutive tests, implying no phase segregation occurred as that would degraded its performance. (C) 2018 Elsevier B.V. All rights reserved.
机译:为了开发适用于住宅的太阳能DHW(家用热水)水箱并将其投入欧洲太阳能热市场进行推广,对PCM(相变材料)热水储水箱的原型和改进版本进行了热性能测试,包括地幔中的水量为148 1和35 kg PCM。该水箱旨在通过结合太阳能和辅助加热为住宅提供DHW,同时在廉价的SAT(醋酸钠三水合物)的基础上使用PCM作为热电池,以消除峰值辅助功率或在断电情况下工作。分别根据热交换器的容积率(HXCR)和锅炉功率的经验法则确定了原型DHW储罐的底部螺旋和顶部螺旋分别用于太阳能和辅助充气的传热匹配特性。此外,通过一系列测试循环估算了PCM的热量,以推断其容量和稳定性。发现原型水箱模块存在一些技术问题,例如热交换器螺旋管的不匹配特性,热水排出期间的热混合现象。因此,基于原型的测试结果制造了一种改进的坦克。进一步的测试表明,顶部换热器螺旋管的辅助配气性能得到改善,排出时抑制了热水供应管与水箱之间的热混合,只是底部螺旋管的长度进一步减小了。关于地幔中的PCM,可以推断出PCM的热量比理想运行的SAT的热量要低一些。 PCM倾向于在16个测试周期内以及超过3个月的连续测试中稳定运行,这表明没有发生相分离,因为这会降低其性能。 (C)2018 Elsevier B.V.保留所有权利。

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