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Research on better use of wood for sustainable development: Quantitative evaluation of good tactile warmth of wood

机译:更好地利用木材促进可持续发展的研究:良好触感木材的量化评估

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摘要

Wood is a prospective material against the problems of mineral resource shortage and global warming from the viewpoint of sustainable development. The continuous cycle of felling, planting and growing of trees is essential prerequisite for sustainability. The engineering evaluation of advantages of wood can increase its use more widely as a substitute for other industrial materials and save the finite mineral resources. The increase of wood use can support the continuous cycle for the sustainable forestry as an industry. This paper treats good tactile warmth of wood as one of its advantages. The relationship between contact surface temperature and thermal effusivity is derived from the theoretical analysis of governing heat transfer phenomenon on tactile warmth. Some knowledge on tactile warmth of wood is reviewed with these physical properties. The sensory tactile warmth of wood has a high and positive linear correlation with the logarithm of the contact surface temperature. The materials with lower thermal effusivity feel warmer than the ones with higher thermal effusivity. The relationship between contact surface temperature and thermal effusivity explains rationally why each wood has a large difference of tactile warmth in spite of their small difference of material properties. It also explains the reason why wood has good tactile warmth regardless of seasons against metals, which feel too hot in summer and too cold in winter to touch. The contact surface temperature and the thermal effusivity are proposed as engineering measures to evaluate the tactile warmth of wood and other materials.
机译:从可持续发展的角度来看,木材是解决矿产资源短缺和全球变暖问题的潜在材料。树木采伐,种植和生长的连续循环是可持续性的必要前提。对木材的优势进行工程评估后,可以更广泛地代替其他工业材料使用木材,并节省有限的矿产资源。木材使用的增加可以支持可持续林业作为一个产业的持续循环。本文将木材的良好触感视为其优点之一。接触表面温度与热效率之间的关系是从控制触觉传热现象的理论分析中得出的。通过这些物理性质,对木材的触感温暖的一些知识进行了综述。木材的感官触感与接触表面温度的对数具有高度正相关的线性关系。具有较低热发射率的材料比具有较高热发射率的材料感到温暖。接触表面温度和热效率之间的关系合理地解释了为什么每种木材尽管其材料特性差异很小,但触感温暖度差异却很大。这也解释了为什么木材无论季节如何都具有良好的触感保暖​​性,原因是金属在夏天感觉太热而在冬天感觉太冷而无法触摸。提出了接触表面温度和热发射率作为评估木材和其他材料的触觉温暖的工程措施。

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  • 来源
    《Energy 》 |2005年第8期| p.1317-1328| 共12页
  • 作者单位

    Materials Research Institute for Sustainable Development, National Institute of Advanced Industrial Science and Technology, 2266-98 Anagahora, Shimoshidami, Moriyama-ku, Nagoya 463-8560, Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程 ;
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