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Use of conconut fiber as a low-cost thermal insulator

机译:使用椰子纤维作为低成本的热绝缘体

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Cost is one of the major factors to be considered when choosing a thermal insulator. Design engineers continuously strive to provide the best at the lowest possible cost. In the tropics climatic conditions are essentially hto and humid and a cause for daily discomfort. To some extent, air-conditioning of buildings has solved this problem. The major deterrent to air-conditioning is the exorbitant cost of imported thermal insulation materials. This has prompted a search for local, low-cost but effective thermal insulation for buildings. Coconut fiber is available at minimal cost from the copra industry in Trinidad, as it is a waste product from the coconut. The viability of using coconut fiber as building thermal insulation was explored by conducting thermal conductivity tests on 200 m X 400 mm X 60 mm thick slab-like specimens. The test equipment used was a locally designed constant temperature hot box apparatus. This apparatus was designed to test slab-like specimens under steady-state conditions. The reliability if this experimental set up was checked using Gypsum Plaster. The thermal conductivity test results for coconut fiber over the density range 30 kg/m~3 to 115 kg/m~3 showed the characteristic hooked shape graph for fibrous material. For the 60 mm thick specimens at a mean temperature of 39 deg C, a minimum thermal conductivity of 0.058 W/mK occurred at an optimum density of 85 kg/m~3. The thermal conductivity of commonly used industrial insulators, namely loose-fill expanded vermiculite, cellular glass and blanket fiber glass, at a mean temperature of 38 deg C are 0.066 W/mK, 0.061 W/mK and 0.052 W/mK respectively. When compared, these results show that air dried coconut fiber has far reaching potential for use as an effective building thermal insulation.
机译:成本是选择隔热绝缘体时要考虑的主要因素之一。设计工程师不断努力以尽可能低的成本提供最佳。在热带地区,气候条件基本上是HTO和潮湿,并且每日不适的原因。在某种程度上,建筑物的空调已经解决了这个问题。空调的主要威慑是进口隔热材料的过高成本。这促使搜索了局部,低成本但有效的储物为建筑物。椰子纤维在特立尼达邦的Copra产业的最低成本上可获得,因为它是来自椰子的废物。通过在200米×400mm×60mm厚的板状样品上进行导热性试验,探讨了使用椰子纤维作为建筑隔热的可行性。使用的测试设备是局部设计的恒温热箱设备。该装置被设计成在稳态条件下测试类似板状样品。如果使用石膏膏药检查了这种实验设置,可靠性。在密度范围内的椰子纤维的导热性试验结果30kg / m〜3至115kg / m〜3显示了纤维材料的特征钩状图。对于39℃的平均温度的60mm厚的样品,最小导热率为0.058W / mk,最佳密度为85kg / m〜3。常用的工业绝缘体的导热率,即松散填充膨胀的蛭石,细胞玻璃和橡皮布纤维玻璃,平均温度为38℃,分别为0.066W / MK,0.061W / MK和0.052W / mK。比较时,这些结果表明,空气干椰子纤维远远达到用作有效建筑隔热的潜力。

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