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Improving rammed earth wall thermal performance with added expanded granulated cork

机译:通过添加膨胀的粒状软木改善夯土墙的热性能

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摘要

Most construction materials require large amounts of energy for production and transportation purposes and are also associated with high levels of greenhouse gas emissions. One such material, rammed earth, has the advantage of being reusable and extremely durable, while it can also be locally sourced. However, rammed earth walls have a low thermal resistance. The aim of this study is to improve the thermal performance of rammed earth walls by increasing their thermal resistance. To this end, a range of different percentages and particle sizes of expanded granulated cork were added to rammed earth samples. The thermal conductivity of the samples was then determined in the laboratory and the data obtained were used to calculate heat transfer coefficients for a model rammed earth wall. Finally, the samples were subjected to uniaxial compression tests to determine whether the added cork led to a reduction in compressive strength. It was found that adding 10% granulated cork produced a reduction of about 12% in the heat transfer coefficient of a rammed earth wall with a thickness of 0.60 m, while the 28% reduction in compressive strength recorded is within the limits set out in the relevant standards.
机译:大多数建筑材料用于生产和运输需要大量能源,并且还与高水平的温室气体排放有关。一种这样的材料,夯土,具有可重复使用和极其耐用的优势,同时也可以从当地采购。但是,夯土墙的热阻较低。这项研究的目的是通过增加夯土墙的热阻来提高其热性能。为此,将一定范围的不同百分比和粒度的膨胀粒状软木添加到夯土样品中。然后在实验室中确定样品的热导率,并将获得的数据用于计算模型夯土墙的传热系数。最后,对样品进行单轴压缩测试,以确定添加的软木塞是否导致压缩强度降低。发现添加10%的颗粒状软木塞可以使夯实的土壁厚度为0.60 m时的传热系数降低约12%,而记录的抗压强度降低28%则在规定的极限范围内。相关标准。

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