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Optimal thickness determination of insulating air layers in building envelopes

机译:建筑信封中绝缘空间的最佳厚度测定

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In building envelopes,using enclosed air layer becomes a popular way of thermal insulation,since the air has a much lower conductivity coefficient,and is much cheaper than other building materials.The motivation of this research is to investigate the coupled convective and radiative heat transfer in the air layer of building envelopes,in order to find the optimal geometrical parameters of the insulating air layers.Based on CFD technology,a Ra number judgment basis is summarized for flow pattern judge in insulation air layers,and the coupled convective and radiative heat transfer characteristics across the air layer is analyzed.The results indicated that a larger layer height results in a weaker convective heat transfer;;when the thickness is below 20mm,an increasing thickness leads to a considerable decrease in the heat transfer;;but when thickness exceeds 20mm,the heat transfer is slightly influenced by the thickness.The optimal thickness of the insulation air layer is 20-30mm depending on the climate condition.
机译:在构建信封,使用封闭的空气层成为热绝缘的一种流行的方式,由于空气具有低得多的传导系数,并且比其它建筑便宜得多本研究的铺料动机是调查耦合对流和辐射热传递在建设信封,以便找到该绝缘空气的最佳几何参数的空气层layers.Based上CFD技术中,Ra数判断依据是总结了流动模式判断在绝缘空气层,和联接的对流和辐射热穿过空气层的传输特性进行了分析。结果表明,在较弱的对流热传递较大的层的高度的结果;;当厚度20mm以下,厚度增加导致在热传递的显着降低;;但是当厚度超过20毫米,位于传热稍微通过绝缘空气层的成形件的最佳厚度的影响是20-30mm的dependi纳克的气候条件。

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