首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >THE TRANSVERSAL METHOD OF LINES (TMOL) APPLIED TO UNSTEADY CONDUCTION IN LARGE PLATES, LONG CYLINDERS AND SPHERES WITH PRESCRIBED SURFACE HEAT FLUX
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THE TRANSVERSAL METHOD OF LINES (TMOL) APPLIED TO UNSTEADY CONDUCTION IN LARGE PLATES, LONG CYLINDERS AND SPHERES WITH PRESCRIBED SURFACE HEAT FLUX

机译:用规定的表面热通量的大板,长圆柱体和球体中的不稳定传导横向(Tmol)的横向方法

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The Transversal Method Of Lines (TMOL) or Rothe method is a general technique for solving parabolic partial differential equations that uses a two-point backward finite-difference formulation for the time derivative and differential spatial derivatives. This hybrid approach leads to transformed ordinary differential equations where the spatial coordinate is the independent variable and the time appears as an embedded parameter. The transformed ordinary differential equations may have constant or variable coefficients depending on the coordinate system and are first-order accurate. In this work, TMOL is applied to the 1-D heat equation for large plates, long cylinders and spheres with constant thermophysical properties, uniform initial temperature and prescribed surface heat flux. The analytic solutions of the adjoint heat equations are performed with the symbolic Maple software. It is demonstrated that the approximate semi-analytic TMOL temperature distributions for the three simple bodies are much better than first-order accurate. This signifies that TMOL temperature distributions are not only valid for short times, but they are valid for the entire heating period involving short, moderate and long times.
机译:线(TMOL)或ROTHE方法的横向方法是解决抛物面部分微分方程的一般技术,其使用两点向后有限差异配方进行时间衍生和差分空间衍生物。这种混合方法导致转换的常微分方程,其中空间坐标是独立变量,并且时间显示为嵌入式参数。变换后的常微分方程可以具有常数或可变系数,这取决于坐标系,并且是一阶精确的。在这项工作中,将Tmol应用于大板,长圆柱体和球体的1-D热方程,具有恒定热物理性质,均匀的初始温度和规定的表面热通量。使用符号枫木软件执行伴随热方程的分析解。结果表明,三个简单体的近似半分析Tmol温度分布远远优于一流的准确性。这使得Tmol温度分布不仅有效期,而且对于涉及短,中等和长时间的整个加热期是有效的。

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