首页> 外文会议>ASME international conference on energy sustainability >THE EFFECT OF ATHERMOTROPIC MATERIAL ON THE OPTICAL EFFICIENCY AND STAGNATION TEMPERATURE OF A POLYMER FLAT PLATE SOLAR COLLECTOR
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THE EFFECT OF ATHERMOTROPIC MATERIAL ON THE OPTICAL EFFICIENCY AND STAGNATION TEMPERATURE OF A POLYMER FLAT PLATE SOLAR COLLECTOR

机译:吸热材料对聚合物平板太阳能集热器的光学效率和停滞温度的影响

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Solar hot water and space heating systems constructed of commodity polymers have the potential to significantly reduce the initial cost of solar thermal systems. However, a polymer absorber must be prevented from exceeding its maximum service temperature during stagnation. Here we consider the addition of a thermotropic material to the surface of the absorber. The thermotropic layer provides passive overheat protection by switching from high transmittance during normal operation to high reflectance if the temperature of the absorber becomes too high. In this paper, a one dimensional model of a glazed, flat-plate collector with a polymer absorber and thermotropic material is used to determine the effects of the optical properties of a thermotropic material on optical efficiency and stagnation temperature of the collector. A key result is identification of the reflectance in the translucent state required to provide overheat protection for potential polymer absorber materials. For example, the reflectance of a thermotropic material in the translucent state should be greater than or equal to 51% for a polypropylene absorber which has a maximum service temperature of 115 °C.
机译:由商品聚合物构成的太阳能热水和空间供暖系统具有显着降低太阳能热系统的初始成本的潜力。但是,必须防止聚合物吸收剂在停滞期间超过其最高使用温度。在这里,我们考虑向吸收器的表面添加热致材料。如果吸收器的温度变得太高,则热致变层通过从正常运行期间的高透射率切换到高反射率来提供被动的过热保护。在本文中,使用具有聚合物吸收剂和热致性材料的玻璃平板收集器的一维模型来确定热致性材料的光学性质对收集器的光学效率和停滞温度的影响。关键结果是识别为潜在的聚合物吸收剂材料提供过热保护所需的半透明状态的反射率。例如,对于最高使用温度为115°C的聚丙烯吸收剂,半透明状态的热致材料的反射率应大于或等于51%。

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