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Simplified Convective Heat Transfer in Vertical Airflow Regimes with Shading Device

机译:带有遮蔽装置的垂直气流状态下的简化对流传热

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摘要

The design of ventilated glass-glass facades in large buildings seems a promising technology to enhance energy efficient building design. In order to describe the optical and thermal heat transfer mechanism in glass-glass configurations with vertical airflow regimes radiation and conduction models have been developed and validated. The convective heat transfer can be calculated depending on air temperatures and air velocity. But obstructions in the vertical airflow regime (i.e. shading device) with reflective and absorptive properties demand the set-up of a new heat transfer balance. Radiative, conductive, and convective heat transfer coefficients for the heat transfer through glass-glass configuration with internal obstructions were developed. The simulation results were validated with measured data of air temperature regimes and different solar radiation in an existing ventilated double-skin facade. The comparison show very good agreement and give confidence in using the model for further energy analysis of this type of facade.
机译:大型建筑物中通风玻璃玻璃外墙的设计似乎是增强节能建筑设计的一项有前途的技术。为了描述具有垂直气流状态的玻璃-玻璃配置中的光学和热传递机理,已经开发并验证了辐射和传导模型。对流传热可以根据空气温度和空气速度来计算。但是具有反射和吸收特性的垂直气流状态(即遮光装置)中的障碍物要求建立新的传热平衡。通过具有内部障碍物的玻璃-玻璃结构的传热,建立了辐射,传导和对流的传热系数。仿真结果已通过现有通风双层皮肤外墙中的空气温度状况和不同的太阳辐射测量数据进行了验证。对比显示出很好的一致性,并为使用该模型进行此类立面的进一步能量分析提供了信心。

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