An Approach for Computing the Heat Sources in Logs Subjected to Freezing

Q4 Agricultural and Biological Sciences Acta Silvatica et Lignaria Hungarica Pub Date : 2018-06-01 DOI:10.2478/aslh-2018-0002
N. Deliiski, N. Tumbarkova
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引用次数: 4

Abstract

Abstract This study suggests an approach for computing the specific energies of the internal heat sources in logs subjected to freezing. The approach maximally considers the physics of the freezing processes of both the free and the bound water in wood. It reflects the influence on the mentioned energies of the wood density above and below the hygroscopic range. It also considers the icing degrees formed separately by both the free and bound water in the logs, as well as the influence of the fiber saturation point of each wood species on its respective amount of non-frozen water depending on temperatures below 272.15 K. Mathematical descriptions of the specific heat energies Qv-fw and Qv-bw released in logs during free water freezing in the range from 0 °C to −1 °C and of the bound water below –1 °C, respectively, have been executed. These descriptions are introduced in own 2D non-linear mathematical model of the freezing process of logs. For the solution of the model and computation of the energies Qv-fw and Qv-bw, a software program based on the suggested approach and mathematical descriptions was prepared in FORTRAN, which was input into the calculation environment of Visual Fortran. With the aid of the program, computations were completed to determine the energies Qv-fw and Qv-bw and their sum, Qv-total of a beech log subjected to freezing. The beech log had a diameter of 0.24 m, a length of 0.48 m, an initial temperature of 20.5 °C, a basic density of 683 kg·m−3, and a moisture content of 0.48 kg·kg–1 during its 30 hours in a freezer at approximately −30 °C.
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冻结原木中热源的计算方法
摘要本研究提出了一种计算冻结原木内部热源比能的方法。该方法最大限度地考虑了木材中自由水和结合水冻结过程的物理特性。它反映了吸湿范围以上和以下木材密度对上述能量的影响。它还考虑了原木中自由水和束缚水分别形成的结冰度,以及每种木材的纤维饱和点对其各自非冻结水量的影响,这取决于温度低于272.15 K。对0℃~ -1℃范围内的自由水和-1℃以下的束缚水冻结过程中释放的比热能Qv-fw和Qv-bw分别进行了数学描述。这些描述是在自己的二维非线性数学模型中引入的。针对Qv-fw和Qv-bw能量模型的求解和计算,采用FORTRAN语言编写了基于该方法和数学描述的软件程序,并将其输入到Visual FORTRAN计算环境中。在此程序的帮助下,计算了山毛榉原木在冻结过程中的能量Qv-fw和Qv-bw及其总和Qv-total。山毛榉原木的直径为0.24 m,长度为0.48 m,初始温度为20.5℃,基本密度为683 kg·m - 3,水分含量为0.48 kg·kg - 1,冷冻温度约为- 30℃。
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来源期刊
Acta Silvatica et Lignaria Hungarica
Acta Silvatica et Lignaria Hungarica Agricultural and Biological Sciences-Forestry
CiteScore
0.90
自引率
0.00%
发文量
0
审稿时长
12 weeks
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