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Evaluating in situ thermal transmittance of green buildings masonries—A case study

机译:评估绿色建筑的现场传热 砌体—案例研究

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摘要

The determination of the thermal properties of a building envelope is fundamental for the correct design of energy efficient constructions. Opaque walls can be easily modeled as parallel and homogeneous layers, being characterized by a monodimensional thermal flux which allows to evaluate the thermal transmittance with analytical models. These procedures are well established and they lead to reliable results; however, it is important to verify the actual performance with in situ thermal transmittance measurements. This analysis is more important when the wall performance is high, being closely linked to economic assessments.The paper presents the results of a measurement campaign of in situ thermal transmittance, performed in some buildings in the Umbria Region (Italy), designed implementing bio-architecture solutions. The analyzed walls were previously monitored with thermographic surveys in order to assess the correct application of the sensors. Results of the investigation show that in situ thermal transmittance measurements and theoretical calculated U-value are not in perfect agreement. The mismatch becomes important for monolithic structures such as walls made of thermal blocks without insulating layers
机译:确定建筑物围护结构的热性能是正确设计节能建筑的基础。不透明的墙可以轻松地建模为平行且均质的层,其特征在于一维热通量,该通量允许使用分析模型评估热透射率。这些程序已经很好地建立,并且可以产生可靠的结果。但是,重要的是要通过现场热透射率测量来验证实际性能。当墙体性能高时,与经济评估密切相关,这一分析就显得尤为重要。本文介绍了在翁布里亚地区(意大利)的一些建筑物中进行的现场传热测量活动的结果,该活动旨在实现生物体系结构解决方案。之前已通过热像仪测量对所分析的壁进行监控,以评估传感器的正确应用。研究结果表明,原位传热测量与理论计算的U值并不完全一致。对于整体结构,例如由不带绝缘层的热块制成的墙体,失配变得很重要

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