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Enhanced Heat Transfer on Thermo Active Cooling Wall

机译:热主动冷却壁上增强的热传递

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In the article a study of the cooling potential of thermo activated wall in an office building with enhanced convective heat transfer is presented Heat transfer on a vertical cooled wall is enhanced by a longitude jet of supply fresh air from diffuser mounted parallel on the top of the wall Such a system is compared to an adequate system with natural convection heat transfer from the cooled surface. Empirical models in the form of multicriterial polynoms for local and average convective heat transfer coefficients determination were developed for natural and enhanced convection using CFD techniques. Empirical models were used in the TRNSYS simulation tool for analyzing cooling potential increasing in the case of enhanced heat transfer on a cooled wall surface in a typical office. Results show a significant increase of the cooling load, a decrease of energy consumption for cooling of the office and better adaptive thermal comfort if heat transfer is enhanced with longitude jet of fresh supply air.
机译:在这篇文章中,研究了对流传热得到增强的办公大楼中的热活化墙的冷却潜力,该研究通过平行安装在顶楼顶部的扩散器的新鲜空气经纬线射流增强了垂直冷却墙的传热。壁这样的系统与具有从冷却表面自然对流传热的适当系统相比。使用CFD技术开发了用于确定对流换热系数和平均对流传热系数的多准则多项式形式的经验模型。 TRNSYS仿真工具中使用了经验模型来分析在典型办公室中在冷却壁表面传热增强的情况下冷却潜能的增加。结果显示,如果通过新鲜空气的经久喷射增强热传递,则制冷负荷将显着增加,办公室制冷所需的能耗减少,并且适应性更佳。

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