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Characterizing Water as Gap Fill for Double Glazing Units

机译:将水表征为双层玻璃单元的间隙填充

摘要

The use of sunlight has always been a major goal in the design and operation of commercial buildings to minimize electrical consumption of artificial lighting systems. Glazing systems designed to allow optimal visible light transmission also allow significant unwanted direct solar heat gain caused by infrared light. Conversely, glazing systems that are designed to reflect unwanted direct solar heat gain significantly reduce the transmittance of visible light through windows. The goal of this research was to characterize the performance of water as gap-fill for double-glazing units in eliminating the compromises that exist in current glazing systems with respect to light and heat transmittance. An in situ test approach and computer simulations were conducted to measure the performance of water-filled glazing units against air-filled glazing units. The thermal transmittance and solar heat gain coefficient values obtained from both the field experiments and computer simulations, glazing units with air-fill proved better than the glazing units with non-flowing water-fill. However, the high convective coefficient and the high thermal mass of the water can be used to its advantage when it is allowed to flow at peak temperatures, thus, maintaining lower temperature swings indoor. This can lead to a reduction of about 50-70% direct solar heat and still maintain high visibility.
机译:在商业建筑的设计和操作中,使用阳光一直是减少人造照明系统的电力消耗的主要目标。设计成允许最佳可见光透射的玻璃系统,还可以显着增加由红外光引起的不必要的直接太阳热量。相反,旨在反射不想要的直接太阳热能的玻璃系统显着降低了可见光通过窗户的透射率。这项研究的目的是表征水作为双层玻璃单元的间隙填充物的性能,以消除现有玻璃系统在光和热传递方面存在的妥协。进行了现场测试方法和计算机模拟,以测量注水玻璃窗单元相对于注气玻璃窗单元的性能。通过现场实验和计算机模拟获得的热透射率和太阳热增益系数值证明,带充气的玻璃窗单元比不带流动的玻璃水窗单元更好。然而,当水在峰值温度下流动时,水的高对流系数和高热质量可以发挥其优势,从而在室内保持较低的温度波动。这可以减少约50-70%的直接太阳热,并且仍然保持较高的能见度。

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    Adu Bright;

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