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A Control-Volume procedure compared with the Finite-Element method for calculating Stress and Strain during Wood Drying

机译:控制量程序与有限元方法的比较,用于计算木材干燥过程中的应力和应变

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This paper proposes a suitable method for calculating drying stresses. This is an application of the finite element method (FE) and the so-called control volume (CV) method. The latter has been chosen because most of coupled heat and mass transfer codes are based on CV. A parallel between the resulting formulation and a particular case of FE method (quadrilateral four-nodes element and Galerkin's method) has been established. Both analytical expressions and numerical results were compared. Furthermore, it is shown how to choose interpolation coefficients in CV procedure in order to get exactly the results obtained with FE. Such a stress calculation has been added to the code TRANSPORE in order to obtain a complete drying code which, in addition to heat and mass transfers, solves stress and strain due to shrinkage. Interesting and promising simulations of non-symmetric convective drying are presented. Indeed, for this drying configuration, the stresses induce a global curvature of the section.
机译:本文提出了一种计算干燥应力的合适方法。这是有限元方法(FE)和所谓的控制体积(CV)方法的应用。选择后者是因为大多数耦合的传热和传质代码都基于CV。已经建立了所得配方与有限元方法(四边形四节点元素和Galerkin方法)的特殊情况之间的相似之处。比较了解析表达式和数值结果。此外,它显示了如何在CV过程中选择插值系数,以便准确获得用FE获得的结果。这样的应力计算已添加到代码TRANSPORE中,以获得完整的干燥代码,该代码除了传热和传质外,还解决了由于收缩引起的应力和应变。介绍了非对称对流干燥的有趣和有希望的模拟。实际上,对于这种干燥构造,应力引起该部分的整体弯曲。

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