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Influence of the facades convective heat transfer coefficients on the thermal energy demand for an urban street canyon building

机译:外墙对流传热系数对城市街道峡谷大厦热能需求的影响

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In an urban micro-climate environment, the convective heat transfer coefficient (CHTC) on the facades influences simulated building's energy demand and exterior wall surfaces temperatures. In this paper, it is analyzed how the CHTC values on the facades of a building located in an urban canyon influence the facades temperatures and how important is the choice of an accurate CHTC correlation on the space cooling and heating energy demand. CHTC correlations found in literature are based on some specific micro-climate parameters such as local wind speed, district construction density, temperature differences between facades and canyon air and wind direction. An accurate choice of the right correlation for the simulated urban environment is important to better represent the exterior walls heat removal due to outside wind climate. The effects of the use of different CHTC correlations have been evaluated by means of TRNSYS 17.0 simulation program. The study is performed for a building sited an urban street canyon with the aspect ratio H/W=l and located in a Mediterranean climate, in Rome. The comparison performed between the results of the numerical simulations shows that some correlations lead to an underestimation of the space heating demand around 9.7% and to an overestimation of the space cooling demand around 17.5%.
机译:在城市微气候环境中,对流传热系数(CHTC)在外墙上影响模拟建筑的能源需求和外墙表面温度。本文分析了位于城市峡谷的建筑物的外墙上的CHTC值如何影响外墙温度,以及如何选择对空间冷却和加热能量需求的准确CHTC相关性。文献中发现的CHTC相关性基于一些特定的微气候参数,如局部风速,地区建筑密度,外墙和峡谷空气和风向之间的温差。准确选择模拟城市环境的正确相关性对于更好地代表由于外部风气氛而言更好地代表外墙散热。通过TRNSYS 17.0仿真程序评估了使用不同CHTC相关的效果。这项研究是为一个建筑物占地面街道峡谷的建筑,具有宽高比H / W = L,位于罗马的地中海气候中。数值模拟结果之间进行的比较表明,一些相关性导致空间加热需求的低估约为9.7%并高估到空间冷却需求约为17.5%。

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