Thermal energy assessment of oil bean stalk as a novel additive to building ceilings

J. Dirisu, S. Oyedepo, O. Fayomi
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引用次数: 5

Abstract

The thermal properties of oil bean stalk, an agro-waste, are inadequately studied; thus this research seeks to assess its property suitability as a prospective material for ceiling tile production. The material was cut to 50mm diameter with jig saw to fit into brass profile of the automatic Lee's disc thermal conductivity apparatus. This profile was also used to conduct the specific heat capacity test by employing the method of mixtures. The specific heat capacity, density, thermal conductivity, thermal resistivity, thermal diffusivity, thermal effusivity and cooling rate are 1563J/kgK, 158kg/m3, 0.12 Wm−1K−1, 8.68mKW−1, 4.86 x 10−7 m2s−1, 172.15 Jm−2K−1s−1/2 and 0.0014 °C/sec. The high energy values of specific heat and thermal effusivity shows the reluctance of the material to dissipate energy to the surrounding which approves it as a building material insulator. The values are within the class of insulating material required in building technology such as building ceiling tiles. This potential insulating material can be explored in the building industries as the material is readily available in the environment.The thermal properties of oil bean stalk, an agro-waste, are inadequately studied; thus this research seeks to assess its property suitability as a prospective material for ceiling tile production. The material was cut to 50mm diameter with jig saw to fit into brass profile of the automatic Lee's disc thermal conductivity apparatus. This profile was also used to conduct the specific heat capacity test by employing the method of mixtures. The specific heat capacity, density, thermal conductivity, thermal resistivity, thermal diffusivity, thermal effusivity and cooling rate are 1563J/kgK, 158kg/m3, 0.12 Wm−1K−1, 8.68mKW−1, 4.86 x 10−7 m2s−1, 172.15 Jm−2K−1s−1/2 and 0.0014 °C/sec. The high energy values of specific heat and thermal effusivity shows the reluctance of the material to dissipate energy to the surrounding which approves it as a building material insulator. The values are within the class of insulating material required in building technology such as building ceiling tiles. This potential insulati...
油豆秸秆作为一种新型建筑吊顶添加剂的热能评价
油豆秸秆是一种农业废弃物,目前对其热特性的研究还不充分;因此,本研究旨在评估其作为天花板砖生产的潜在材料的性能适用性。材料被切割成50mm直径的夹具锯,以适应黄铜型材的自动李的圆盘导热仪。该剖面还采用混合法进行了比热容试验。比热容、密度、导热系数、热电阻率、热扩散率、热渗出率和冷却速率分别为1563J/kgK、158kg/m3、0.12 Wm−1K−1、8.68mKW−1、4.86 × 10−7 m2s−1、172.15 Jm−2K−1s−1/2和0.0014℃/秒。高能量的比热和热溢率表明材料不愿向周围耗散能量,这证明它是一种建筑材料绝缘体。该值在建筑技术(如建筑天花板砖)所需的绝缘材料类别内。这种潜在的绝缘材料可以在建筑工业中探索,因为这种材料在环境中很容易获得。油豆秸秆是一种农业废弃物,目前对其热特性的研究还不充分;因此,本研究旨在评估其作为天花板砖生产的潜在材料的性能适用性。材料被切割成50mm直径的夹具锯,以适应黄铜型材的自动李的圆盘导热仪。该剖面还采用混合法进行了比热容试验。比热容、密度、导热系数、热电阻率、热扩散率、热渗出率和冷却速率分别为1563J/kgK、158kg/m3、0.12 Wm−1K−1、8.68mKW−1、4.86 × 10−7 m2s−1、172.15 Jm−2K−1s−1/2和0.0014℃/秒。高能量的比热和热溢率表明材料不愿向周围耗散能量,这证明它是一种建筑材料绝缘体。该值在建筑技术(如建筑天花板砖)所需的绝缘材料类别内。这种潜在的隔离……
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