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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >A high-temperature thermal treatment of wood using a multiscale computational model: Application to wood poles
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A high-temperature thermal treatment of wood using a multiscale computational model: Application to wood poles

机译:使用多尺度计算模型的木材高温热处理:在木杆上的应用

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摘要

The present study is devoted to a numerical study with experimental validation of the high-temperature thermal treatment of three-dimensional wood pole. During the heat treatment process, the heat and mass transfer takes place between the solid and the drying medium, and the moisture evaporation occurs within the solid due to the capillarity action and diffusion. The development of the model equations, taking into account both bulk phases and interfaces of the multiphase system is described, starting from the microscopic scale. Fundamental to this model is the ability to quantify the effects of key material and geometric properties of the pole. The three-dimensional and unsteady-state mathematical model equations are solved numerically by the commercial package FEMLAB for the temperature and moisture content histories under different treatment conditions. A detailed discussion of the computational model and the solution algorithm is given. Heat treatment was applied on the test samples in an oven for three final temperatures (180, 200 and 220 degrees C). A series of experimental tests aimed at determination of heat treatment schedules kinetics curves and the temperature and moisture profiles and there time evolution were carried out. A very good agreement between the experimental and predicted results was obtained, implying that the proposed numerical algorithm can be used as a useful tool in designing high-temperature wood pole treatment processes.
机译:本研究致力于对三维木杆高温热处理进行实验验证的数值研究。在热处理过程中,热量和质量传递发生在固体和干燥介质之间,并且由于毛细管作用和扩散,水分在固体内部发生蒸发。从微观尺度开始,描述了考虑多相系统的本体相和界面的模型方程式的发展。此模型的基础是量化杆的关键材料和几何特性的影响的能力。通过商业软件包FEMLAB,针对不同处理条件下的温度和水分含量历史记录,对三维非稳态数学模型方程进行了数值求解。给出了计算模型和求解算法的详细讨论。在三个最终温度(180、200和220摄氏度)的烤箱中对测试样品进行热处理。进行了一系列旨在确定热处理时间表动力学曲线,温度和湿度曲线以及随时间变化的实验测试。实验结果和预测结果之间取得了很好的一致性,这表明所提出的数值算法可以用作设计高温木杆处理工艺的有用工具。

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