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Experimental study and numerical modeling of heat and mass transfer in rubberwood during kiln drying

机译:窑炉窑干燥中热量和传质的实验研究与数值模型

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摘要

Rubberwood (Hevea brasiliensis) is a major raw material used in furniture factories in southern Thailand. Proper kiln drying of the lumber plays a significant role on the efficient utilization of the final product. Overall quality-reducing defects in such a materials are inevitable, unless a correct and proper drying process is used. Therefore, the objective of the present study was to develop a three-dimensional numerical model of heat and moisture transfer during the drying process and to conduct physical experiments in order to compare the results between the two approaches. For this purpose, an innovative kiln dryer was designed in the laboratory which will also contribute to the prevention of defects in the wood. The results show that the samples dried at a temperature of 120 °C experienced faster decreases in their moisture content compared to those dried at temperatures of 100 °C and 80 °C. The drying temperature and moisture content of the samples were successfully predicted by the simulation model created in this investigation and the two approaches demonstrated good agreement for temperature and moisture with root mean square errors of 0.50 and 0.19, standard errors of 0.38 and 0.16, and mean absolute errors of 0.94 and 2.18, respectively. These results will help rubberwood drying facilities prevent wood deformation while reducing the drying time required.
机译:Rubberwood(Hevea Brasiliensis)是泰国南部家具工厂中使用的主要原料。适当的窑干燥木材在最终产品的有效利用率上起着重要作用。除非使用正确和正确的干燥过程,否则这种材料的整体质量降低缺陷是不可避免的。因此,本研究的目的是在干燥过程中开发一种三维数值模型,并进行物理实验,以比较两种方法之间的结果。为此目的,创新的窑烘干机是在实验室设计的,这也将有助于预防木材的缺陷。结果表明,与在100℃至80℃的温度的温度下,在其水分含量下,在120℃的温度下经历的温度变得更快地降低。通过在本研究中创建的模拟模型成功预测样品的干燥温度和水分含量,两种方法表现出良好的温度和水分达到0.50和0.19,标准误差为0.38和0.16的温度和水分良好的一致性。分别为0.94和2.18的绝对误差。这些结果将有助于橡胶木干燥设施防止木材变形,同时降低所需的干燥时间。

著录项

  • 来源
    《Heat and mass transfer》 |2021年第3期|453-464|共12页
  • 作者单位

    Department of Industrial Engineering Faculty of Engineering Prince of Songkla University Hat Yai Songkhla 90112 Thailand;

    Department of Industrial Engineering Faculty of Engineering Prince of Songkla University Hat Yai Songkhla 90112 Thailand;

    Department of Mechanical Engineering Faculty of Engineering Prince of Songkla University Hat Yai Songkhla 90112 Thailand;

    School of Engineering RMIT University Melbourne Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Rubberwood; Heat transfer; Mass transfer; Kiln drying; Simulation;

    机译:橡胶木;传播热量;传质;窑干;模拟;

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