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Flow and heat transfer characteristics of natural convection in vertical air channels of double-skin solar facades

机译:双皮肤太阳能外墙垂直空气通道自然对流的流动和传热特性

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Design and construction of internal ventilated air layers have become a popular way to improve the thermal performance of exterior envelopes in modern buildings. These air layers provide multiple benefits to the building envelopes, including improving the thermal insulation property, as well as achieving the effects of fresh air preheating, space heating, natural ventilation, passive cooling, etc. Obviously, the flow and heat transfer condition of the solar driven natural convection in these air layers can significantly influence the performances of these envelopes. This study numerically investigates the flow and heat transfer process, as well as the influence factors of the temperature and velocity fields, the induced air flowrate and the temperature increase in these air layer structures. The results demonstrate that the flow transition, velocity promotion and temperature increase mainly occur in the near-wall regions. For vertical air layers with the height of 2-4 m, the width of 0.1-0.8 m, and the input heat flux of 100-400 W/m(2), the air flowrate varies between 0.042 kg/s and 0.255 kg/s, and the range of the temperature rise is 0.66-14.70 degrees C. For air layers intending to improve ventilation capacity, the channel width should not be bigger than 0.6 m, while for those with the purpose of supplying warm air, the width should be lower than 0.2 m.
机译:内通风空气层的设计和施工已成为提高现代建筑内外信封的热性能的流行方式。这些空间为建筑信封提供多种益处,包括改善保温性能,以及实现新鲜空气预热,空间加热,自然通风,被动冷却等的影响。显然,流量和传热条件在这些空间中的太阳驱动自然对流可以显着影响这些信封的性能。该研究在数值上研究了流动和传热过程,以及温度和速度场的影响因素,诱导的空气流量和这些空气层结构中的温度增加。结果表明,流动过渡,速度促销和温度增加主要发生在近壁区域。对于高度为2-4米的垂直空气层,宽度为0.1-0.8米,以及100-400 w / m(2)的输入热通量,空气流量在0.042kg / s和0.255kg / S,温度升高的范围为0.66-14.70℃。对于打算提高通风能力的空气层,通道宽度不应大于0.6米,而对于那些目的提供暖空气的人,宽度应该是低于0.2米。

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