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Experimental Investigation of Building ThermalInsulation from Agricultural By-products

机译:农业副产品建筑保温的实验研究

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The thermo-physical properties of environmentally friendly biodegradable agricultural by-products, oil palm, coconut and sugarcane fiber, were investigated for use as potential building thermal insulation. Thermal conductivity measurements were conducted on 51 mm thick, 254 mm square test specimens in accordance with ASTM C518 where the apparent thermal conductivity, λ, was measured under steady-state one-dimensional test conditions with heat flow upwards. The test apparatus provided λ measurements with ±0.2% repeatability and ±0.5% reproducibility within the range 0.005 W/m.K to 0.35 W/m.K. For all three materials, experimental data at various mean test temperatures show the thermal conductivity variation with density followed the characteristic hooked shape associated with loose-fill fibrous insulation. Test results indicated that sugarcane fiber with the lowest solid fiber density of 686 kg/m3 exhibited the lowest apparent thermal conductivity of 0.04610 W/m.K and a trend of increase in solid fiber density of the material reflected an increase in the minimum λ of the fibrous batt. The minimum λ for the materials ranged between 0.04160 W/m.K to 0.05784 W/m.K over the mean temperature ranges 15.6°C to 32°C. These λ values are within the range 0.02 W/m.K to 0.06W/m.K which is normally used for thermal building insulation.
机译:研究了可生物降解的环保农业副产品油棕,椰子和甘蔗纤维的热物理性质,可作为潜在的建筑隔热材料。根据ASTM C518,在51毫米厚,254平方毫米的试样上进行热导率测量,其中表观热导率λ是在稳态一维测试条件下以向上的热流进行测量的。该测试设备在0.005 W / m.K至0.35 W / m.K的范围内提供了±0.2%的重复性和±0.5%的再现性的λ测量。对于这三种材料,在各种平均测试温度下的实验数据表明,导热率随密度的变化而变化,并遵循与松散填充纤维绝缘材料相关的典型钩形形状。测试结果表明,最低固体纤维密度为686 kg / m3的甘蔗纤维表现出最低的表观热导率为0.04610 W / mK,材料的固体纤维密度增加的趋势反映了纤维的最小λ的增加棉絮。在15.6°C至32°C的平均温度范围内,材料的最小λ介于0.04160 W / m.K至0.05784 W / m.K之间。这些λ值在0.02 W / m.K至0.06W / m.K的范围内,通常用于建筑物的隔热。

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