提高轻质混凝土空心砖热阻的数值优化研究

Q3 Energy
E. Cuce, Pinar Mert Cuce, A. Besir
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引用次数: 4

摘要

通过墙壁的热损失/增益约占建筑总能量损失的30%。砖是建筑不可或缺的组成部分,是一种非常常见的砖石墙体单元;因此,本工作旨在通过基于CFD的数值研究来优化轻质混凝土空心砖的热阻。优化是在一定数量的自变量上进行的,例如中空几何形状和设计、传热路径上的中空排数以及中空外壳内自然对流方面的中空深度。研究中使用了可靠的CFD软件ANSYS FLUENT 18.1。CFD结果的准确性首先通过参考模型砖(RMB)来证明。RMB的总传热系数(U值)确定为0.916W/m2。K、 这与制造商的数据报告(0.9 W/m2.K)非常一致。随后,对各种情况进行了参数研究,以优化作为砖质量函数的U值。根据研究结果,发现最大改进约为53%(U值0.43 W/m2)。K) 通过B48的情况,其具有1的h比(从上到下的连续中空)。此外,根据h比的增加,可以实现砖的热性能成比例地增加。砖设计(B45)的最小重量为7.645kg,相应的U值为0.44W/m2。K
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving thermal resistance of lightweight concrete hollow bricks: A numerical optimisation research for a typical masonry unit
Heat loss/gain through the walls accounts for about 30% of the total building energy losses. Bricks are indispensable parts of buildings as a very common masonry wall unit; hence the present work aims at optimising thermal resistance of lightweight concrete hollow bricks through a CFD based numerical research. The optimisation is conducted over a certain number of independent variables such as hollow geometry and design, number of hollow rows across the heat transfer path and hollow depth for natural convection aspects within the hollow enclosure. A reliable CFD software ANSYS FLUENT 18.1 is utilised in the research. The accuracy of the CFD results is justified first through the reference model brick (RMB). Overall heat transfer coefficient (U-value) of RMB is determined to be 0.916 W/m2. K, which is in good accordance with the manufacturer’s data report (0.9 W/m2.K). Following this, parametric research is carried out for various scenarios to optimise the U-value as a function of brick mass. Based on the findings, the maximum improvement is found to be about 53% (U-value 0.43 W/m2. K) through the case of B48 which has an h-ratio of 1 (continuous hollow from top to bottom). Moreover, depending on the increase in h-ratio, it is achieved that the thermal performance of the bricks proportionally increases. The minimum weight of the brick design (B45) is found to be 7.645 kg and the corresponding U-value is obtained as 0.44 W/m2. K.
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来源期刊
Journal of Energy Systems
Journal of Energy Systems Environmental Science-Management, Monitoring, Policy and Law
CiteScore
1.60
自引率
0.00%
发文量
29
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