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Outdoor Performance of Fluidic Glass-Glass Laminate Windows for Building Integration

机译:用于建筑集成的流体玻璃玻璃层压板的户外性能

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摘要

Fluidic windows enable the implementation of liquids in building envelopes. Such liquids may act as a heat reservoir and exchange medium or provide additional functionality to the building skin. Here, outdoor operations of double-glazed windows which include a transparent capillary panel as one of the glazings are reported. The capillary devices were used as heat exchangers by which water circulates across the window surface. A mobile demonstration facility is built, which uses 1.6 m(2) of active window surface for thermal input to a test room of 9 m(3). Outdoor operations are conducted over multiple weeks in winter and summer seasons to demonstrate hydronic heating and cooling, respectively, by varying the inlet temperature and the flow rate of the circulating liquid. For heating operations at an outdoor air temperature of -5 degrees C, an overall heat transfer coefficient of 22 W m(-2) K-1 is demonstrated. Using the same system for cooling with southeast facade orientation at an average solar irradiance of 800 W m(-2) enables significant reduction of peak and average room temperature. In comparison to conventional heating, ventilation and air-conditioning technology, a significant reduction of the applied temperature gradient and air circulation rates is achieved.
机译:流体窗口使得在建筑信封中实现液体。这种液体可以用作热贮存器和交换介质,或者为建筑物皮肤提供额外的功能。这里,报告了包括透明毛细管作为其中一个玻璃窗的双层玻璃窗的户外操作。毛细管装置用作热交换器,水通过该热交换器循环穿过窗口表面。构建了移动演示设施,它使用1.6米(2)个有源窗口表面,用于热输入到9米(3)的测试室。通过改变入口温度和循环液体的流速,冬季和夏季在冬季和夏季多周进行户外操作,以展示水力加热和冷却。对于在-5℃的室外空气温度下的加热操作,对22W m(-2)k-1的总传热系数进行说明。使用相同的系统在800W m(-2)的平均太阳能辐照度下与东南部面向辐射的冷却能够显着降低峰值和平均室温。与传统的加热,通风和空调技术相比,实现了施加的温度梯度和空气循环速率的显着降低。

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