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Y Coupled heat and moisture transfer in hollow concrete block wall filled with compressed straw bricks

机译:Y填充压缩草砖的空心混凝土砌块墙中的热与湿耦合传递

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Coupled heat and moisture transfer has a severe influence on building envelop durability. This phenomenon has more concerns as the rapid development of new moisture buffering materials. In this paper, a detailed description of hollow concrete block filled with compressed straw bricks is presented. In order to reveal heat and moisture coupling mechanism of the multilayer energy-saving wall, a series of tests were developed based on our designed controllable coupled heat and moisture test. The experiments were divided into 3 groups according to directions of heat and moisture transfer and the variations of boundary conditions. The temperature and humidity profiles within the wall thickness through two different directions are monitored during the test. The experimental results highlight the important influence of temperature and relative humidity gradient on the hygrothermal properties of the multi layer wall. It also illustrates that filling compressed straw bricks into hollow concrete block can hinder heat transfer and improve moisture buffering performance of multilayer wall. Based on our developed model, a piece of software (HMCT 1.0) to simulate the hygrothermal performance in multilayer wall was proposed for deep understanding of the experimental results. A good agreement was found between simulation results and tested values. (C) 2016 Elsevier B.V. All rights reserved.
机译:热量和水分的耦合传递对建筑围护结构的耐久性产生严重影响。随着新型水分缓冲材料的迅速发展,这种现象引起了更多关注。在本文中,将详细介绍填充有压缩稻草砖的空心混凝土砌块。为了揭示多层节能墙体的热湿耦合机理,在我们设计的可控热湿耦合试验基础上进行了一系列试验。根据传热和水分传递的方向以及边界条件的变化,将实验分为3组。在测试过程中,通过两个不同的方向监控壁厚内的温度和湿度曲线。实验结果突出了温度和相对湿度梯度对多层墙体湿热特性的重要影响。这也说明将压缩的草砖填充到空心混凝土砌块中会阻碍传热并改善多层墙的水分缓冲性能。基于我们开发的模型,提出了一个软件(HMCT 1.0)来模拟多层墙体的湿热性能,以深入了解实验结果。在仿真结果和测试值之间找到了很好的一致性。 (C)2016 Elsevier B.V.保留所有权利。

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