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Mathematical modelling of low temperature drying of maize: comparison of numerical methods for solving the differential equations.

机译:玉米低温干燥的数学模型:求解微分方程的数值方法的比较。

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摘要

Low temperatureatural drying of grain depends strongly on the climate. Being a slow process, experimental determinations are costly and difficult, so that developing a mathematical model and finding a proper method of solution is of great importance. The dryer model is composed of a first-order, hyperbolic partial differential equation (PDE) system, encompassing four dependent variables: grain moisture content, grain temperature, air temperature and air humidity, plus two independent variables: time and position along the bed depth direction. The bed system requires initial and boundary conditions, the latter of the Dirichlet type. In this work the following numerical methods for solving the set of dryer equations were compared: (1) explicit finite differences (2) implicit finite differences and (3) the method of lines. The performance parameters selected for the comparison were (a) drying time and (b) specific energy consumption. The influence of time and length steps of numerical solutions on such parameters was also assessed through indicators such as relative computing (CPU) time, prediction stability and truncation error. The results indicated that the method of lines was the most adequate to solve the compromise between these indicators.
机译:谷物的低温/自然干燥在很大程度上取决于气候。作为一个缓慢的过程,实验确定是昂贵且困难的,因此开发数学模型并找到合适的求解方法非常重要。干燥机模型由一阶双曲偏微分方程(PDE)系统组成,包含四个因变量:谷物水分含量,谷物温度,空气温度和空气湿度,以及两个独立变量:沿着床深的时间和位置方向。床系统需要初始条件和边界条件,后者是Dirichlet类型。在这项工作中,比较了以下求解干燥器方程组的数值方法:(1)显式有限差分(2)隐式有限差分和(3)线法。选择用于比较的性能参数是(a)干燥时间和(b)比能耗。还通过诸如相对计算(CPU)时间,预测稳定性和截断误差之类的指标来评估数值解的时间和长度步长对此类参数的影响。结果表明,线法最适合解决这些指标之间的折衷。

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