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CALCULATION OF THE THERMAL ENERGY AND ITS COMPONENTS REQUIRED FOR THAWING LOGS

ACTA FACULTATIS XYLOLOGIAE ZVOLEN(2024)

Univ Forestry | Tech Univ Zvolen

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Abstract
An approach for calculating the thermal energy and its components required for thawing logs intended for veneer production is proposed. The approach is based on the use of two personal mathematical models. The influence of all combinations between 5 values of the initial wood temperature from -1 degrees C to -40 degrees C and 3 values of the wood moisture content above the hygroscopic range (0.4 kgkg-1, 0.6 kgkg-1, and 0.8 kgkg-1) on the thermal energy and its four components required to thaw beech logs with a diameter of 0.4 m at operating temperature of the heating medium of 80 degrees C was investigated. The obtained results show that this energy changes in the range from 31.66 kWhm-3 (at -1 degrees C and 0.4 kgkg-1) to 95.36 kWhm-3 (at -40 degrees C and 0.8 kgkg-1). The approach could be applied to determine the energy required to thaw various frozen capillary-porous materials in practice.
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Key words
frozen logs,frozen bound water,frozen free water,thawing,thermal energy
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要点】:提出了一种计算解冻用于单板生产的木材所需的 thermal energy 及其组成成分的新方法,基于两个个人数学模型,分析了木材初始温度和含水量对所需热能的影响。

方法】:通过构建两个数学模型,对木材的初始温度和含水量进行组合,计算解冻过程中所需的热能及其四个组成部分。

实验】:研究了直径为0.4米的山毛榉圆木在加热介质操作温度为80℃的条件下,不同初始温度(-1℃至-40℃)和含水量(0.4 kg/kg至0.8 kg/kg)组合对所需热能的影响,使用的数据集未在文中明确提及,结果热能变化范围在31.66 kWh/m³至95.36 kWh/m³之间。