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Simulation of temperature and moisture changes during storage of woody biomass owing to weather variability

机译:由于天气变化,模拟木质生物质在储存过程中温度和湿度变化的模拟

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摘要

The objective of this study is to describe moisture content and temperature profile in the woody biomass pile by a two dimensional mathematical model. Woody biomass in the form of wood chips and bundles was stored for a period of one year. Heat and moisture transfer model for drying processes was solved by finite element method using MATLAB programming. The simulation was performed using the recorded climate conditions during the experiment and constant drying air conditions. The temperature change inside the bundles shows the same trend and effect with ambient air temperature, however, in case of wood chips shows lesser effect at various ambient air temperature. Uniformly declined moisture content was observed inside the covered wood chips pile during the storage period. The proposed two dimensional model is in close agreement with experimental data to describe the moisture and temperature profile of the pile wood chips and bundles. However, as the wood chips pile height increases more than 3 m temperature development inside the pile could be rapid and the effect of chemical reaction in the wood chips pile has to be included for better accuracy of prediction.
机译:这项研究的目的是通过二维数学模型描述木质生物质堆中的水分含量和温度曲线。以木片和捆的形式存在的木质生物质可保存一年。利用MATLAB程序,通过有限元法求解了干燥过程中的湿热传递模型。使用实验期间记录的气候条件和恒定的干燥空气条件进行模拟。捆内的温度变化对环境温度显示出相同的趋势和影响,但是,如果木屑在各种环境温度下显示的影响较小。在储存期间,在覆盖的木屑堆内部观察到水分含量均匀下降。提出的二维模型与实验数据非常吻合,用于描述堆木屑和捆束的水分和温度分布。但是,随着木屑桩高度的增加,超过3 m时,桩内部的温度可能会迅速升高,并且必须包括木屑桩中的化学反应作用,以提高预测的准确性。

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