稻草捆墙的热湿特性:实验测试和数值分析

Alessandra Mesa, A. Arenghi
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引用次数: 8

摘要

秸秆是一种具有吸湿性的有机材料。它从周围环境中储存水分的高容量会进一步影响其性能并导致其材料的可能降解。本研究的目的是评估一种复杂材料(如稻草)的电导c值。一个气候室被用来研究一个样本,它再现了传统的抹灰稻草包墙。试验在不同的边界条件下进行,设定恒定的温度和相对湿度值。对评估结果的修正允许在不同条件下计算电导和电导率值。然后根据实验数据设计了一个数值模型,用于表征材料的性能。软件模拟和实验室分析之间的匹配将是进一步测试的起点。由于材料的复杂性和独特的性质,确定秸秆电导c值是一项困难的任务。尽管如此,实验室测试显示出令人鼓舞的结果,这反映了稻草作为建筑材料的巨大潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hygrothermal behaviour of straw bale walls: experimental tests and numerical analyses
Straw is an organic material with hygroscopical properties. The high capacity it has of storing moisture from the surroundings can furthermore influence the performance and lead to the possible degradation of the material thereof. The aim of this study was to assess the conductance C-value of a complex material such as straw. A climatic chamber was used to study a sample, which reproduces a traditional plastered straw bale wall. Tests were conducted under different boundary conditions, setting constant values for temperatures and relative humidity. The revision of the assessment's results allowed the calculation of conductance and conductivity values under different conditions. A numerical model was then designed starting from the laboratory data, which was used to characterize material properties. The match between software simulations and laboratory analyses will be a starting point for further tests. Determining the straw conductance C-value is a difficult task to achieve, due to the complexity and the unique properties of the material. In spite of all this, laboratory tests have shown encouraging results, which reflect the great potential of straw as a building material.
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