Numerical modeling of heat and mass transfer processes in a capillary-porous body during contact drying

B. Gayvas, B. Markovych, A. Dmytruk, M. Havran, V. Dmytruk
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引用次数: 1

Abstract

The problem of conductive (contact) drying of a capillary-porous body in a steam-air (gas) environment by heat transfer to the material during its contact with the heated surfaces of the material is considered. A system of significantly nonlinear differential equations of heat and mass transfer to describe such a process is obtained. To solve the formulated problem of heat and mass transfer (without taking into account deformability), the method of solving nonlinear boundary value problems is applied in the form of an iterative process, at each step of which a linear boundary value problem is solved. The results of the application of the method are verified based on the popular numerical scheme used. They agree well. A numerical experiment is conducted for materials of three types of porosity. The results are presented graphically and tabularly. The regularities of contact drying of capillary-porous materials in a steam-air environment are deduced.
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接触干燥过程中毛细管多孔体传热传质过程的数值模拟
考虑了毛细管多孔体在蒸汽-空气(气体)环境中通过与材料受热表面接触时的热传递而导电(接触)干燥的问题。得到了描述这一过程的显著非线性传热传质微分方程组。为了求解公式化的传热传质问题(不考虑可变形性),以迭代过程的形式应用求解非线性边值问题的方法,每一步求解一个线性边值问题。基于常用的数值格式,验证了该方法的应用结果。他们意见很一致。对三种孔隙率的材料进行了数值试验。结果以图表形式呈现。推导了毛细管多孔材料在蒸汽-空气环境下接触干燥的规律。
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来源期刊
Mathematical Modeling and Computing
Mathematical Modeling and Computing Computer Science-Computational Theory and Mathematics
CiteScore
1.60
自引率
0.00%
发文量
54
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