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Numerical studies of thermal comfort for semi-transparent building integrated photovoltaic (BIPV)-vacuum glazing system

机译:半透明建筑集成光伏(BIPV)-真空玻璃窗的热舒适性数值研究

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Building integrated photovoltaic (BIPV)-vacuum system is promising for advanced window application due to its ability to reduce heat transfer, control over admitted solar heat and generates environmentally benign electricity. In this work, numerically thermal comfort for an unfurnished room comprising of BIPV-vacuum glazing was evaluated for the United Kingdom (UK) climate. Required parameters to determine thermal comfort, one-dimensional heat transfer model was developed and validated for BIPV-vacuum glazing and results were compared with BIPV-double-pane glazing system. PV cell temperature difference between these two different types of glazing was 24 degrees C. For the UK climate, BIPV-vacuum glazing offered 26% higher room temperature at clear sunny day compared to BIPV-double system. BIPV-vacuum glazing system provided soothing or comfortable thermal comfort during mid-day period for a clear sunny day at temperate climate. In a combined BIPV-vacuum glazing, it was also predicted that vacuum glass facing external ambient is suitable for the UK climate whilst vacuum glass facing internal room ambient is applicable for Indian climate.
机译:建筑集成光伏(BIPV)真空系统因其减少热传递,控制允许的太阳热量以及产生环境友好的电能而有望用于高级窗户。在这项工作中,评估了英国(UK)气候对包括BIPV真空玻璃窗的无家具房间的热舒适性的数值。确定热舒适性所需的参数,开发了一维传热模型,并针对BIPV-真空玻璃进行了验证,并将结果与​​BIPV-双窗格玻璃系统进行了比较。这两种不同类型的玻璃之间的PV电池温度差为24摄氏度。在英国气候下,BIPV-真空玻璃与BIPV-double系统相比,晴天晴天的室温高出26%。 BIPV真空玻璃系统在中午提供舒缓或舒适的热舒适感,在温和的气候下晴朗的晴天。在BIPV-真空组合玻璃中,还预测面向外部环境的真空玻璃适用于英国气候,而面向内部环境的真空玻璃适用于印度气候。

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