Experimental and numerical estimation of thermal conductivity of bio-based building composite materials with an enhanced thermal capacity
作者:Piotr Łapka, Fabian Dietrich, Piotr Furmański, Māris Šinka, Genādijs Šahmenko, Diāna Bajāre · 发表于:Journal of Energy Storage · 年份:2024 · DOI:10.1016/j.est.2024.112943 · 被引用次数:25 · 研究领域:Hygrothermal properties of building materials、Building Energy and Comfort Optimization、Urban Heat Island Mitigation
The paper tackles the important problem of estimating and predicting the thermal conductivity of bio-based building materials that can help decarbonize the building sector. Knowledge and the possibility to optimize their insulating properties is the first criterion for determining the ability of their use in the building sector. The novel yet not well-studied hemp shives and magnesium binder composites with improved thermal mass by microencapsulated phase change material (PCM) were considered. The samples of composites without PCM having different densities as well as with different amounts of microencapsulated PCM and the same density were manufactured and tested experimentally in different states, i.e., dry and after conditioning at relative humidity (RH) of 50, 75, and 90 %, and in the case of samples with PCM also at different average measurement temperatures selected with respect to the phase change range of the PCM. A novel method of predicting bio-based composites' effective thermal conductivity tensor was also developed. The method is based on the numerical solution of the heat conduction equation at the micro-scale considering real composite microstructure. The method was tuned using micro-computed tomography (μCT) data with the microstructure of composites without PCM and then applied to predict the thermal conductivities of composites with PCM, utilizing computational domains with an artificially distributed PCM in the binder. The experimental testing of composites...