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Thermal analysis of flat evacuated glass enclosure for building integrated solar applications

机译:用于建筑集成太阳能应用的平面真空玻璃外壳的热分析

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摘要

In this work a flat evacuated glass enclosure is designed and fabricated and its thermal performance characterized for solar thermal applications. To investigate the effect of the thermal insulation provided by the high vacuum pressure in the enclosure, the heat transmission of the enclosure is determined under both atmospheric and vacuum pressures. The flat evacuated enclosure consists of two glass panes hermetically sealed around their periphery to a stainless steel spacer creating a cavity between the glass panes 15mm wide. An array of stainless steel support spacers are set between the glass panes to prevent the panes from collapsing under the influence of atmospheric pressure. A simple solar absorber is integrated into the enclosure and a novel co-centric port is designed for thermal fluid transfer through the edge spacer to the absorber. The assembly is tested under a solar simulator, and using infrared thermography techniques and thermocouples attached to the enclosure its thermal response is analysed. Results show that the greatest heat loss occurs near the support spacers on the glass surface, and near the inlet and outlet ports at the edge spacer.
机译:在这项工作中,设计并制造了平面真空玻璃外壳,其热性能表征了太阳能热应用。为了研究由外壳中的高真空压力提供的隔热效果,在大气压和真空压力下都确定了外壳的热传递。扁平的抽空外壳由两块玻璃板组成,两块玻璃板围绕其外围与不锈钢垫片密封在一起,从而在15mm宽的玻璃板之间形成空腔。在玻璃板之间设置了一系列不锈钢支撑垫片,以防止玻璃板在大气压的作用下塌陷。外壳中集成了一个简单的太阳能吸收器,新颖的同心端口设计用于将热流体通过边缘垫片传递到吸收器。该组件在太阳能模拟器上进行了测试,并使用红外热成像技术和连接到外壳的热电偶对其热响应进行了分析。结果表明,最大的热损失发生在玻璃表面的支撑垫片附近以及边缘垫片的入口和出口附近。

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