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Hygrothermal modelling of masonry blocks filled with thermal insulation

机译:填充隔热材料的砌块的湿热模拟

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摘要

Ceramic brick as building material has been used for thousands of years. Nowadays, the energy performance of new products has to meet rigorous requirements; therefore, in the design of new ceramic masonry blocks, building physical simulations are essential. The aim of this research is to evaluate existing masonry block shapes filled with different thermal insulation using conjugated heat and moisture transport finite element simulations with material properties measured in laboratory. The research compared four different internal structures: trapezoidal, triangular, rectangular, and with mixed shaped gaps according to existing masonry blocks. In the gaps, different thermal insulations were considered, such as mineral wool, expanded perlite and polyurethane foam. The research demonstrated that the perlite as filling material does not have a great effect on thermal conductivity comparing to unfilled blocks; however, polyurethane foam with an optimal internal structure can improve the thermal performance. Manufacturing inaccuracies in the materials’ hygrothermal properties influences their performance, since a little difference in thermal conductivity has a noticeable impact on thermal transmittance, and it may result in underperformance according to regulations.
机译:陶瓷砖作为建筑材料已经使用了数千年。如今,新产品的能源性能必须满足严格的要求。因此,在设计新的陶瓷砌块时,必须进行物理模拟。这项研究的目的是通过使用在实验室中测量的材料特性的热与湿气传输共轭有限元模拟来评估填充有不同隔热材料的现有砌体砌块形状。该研究根据现有的砌块对四种不同的内部结构进行了比较:梯形,三角形,矩形和具有混合形状的间隙。在缝隙中,考虑了不同的隔热材料,例如矿棉,膨胀珍珠岩和聚氨酯泡沫。研究表明珍珠岩作为填充材料与未填充的块相比对导热性没有很大的影响。但是,具有最佳内部结构的聚氨酯泡沫可以改善热性能。材料的湿热性能制造不准确会影响其性能,因为导热系数的微小差异会对导热率产生明显影响,并可能导致法规不合格。

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