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An enhanced explicit technique for the solution of non-Fourier heat transfer problems

机译:解决非傅立叶传热问题的增强显式技术

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In this work, an enhanced explicit technique is proposed to analyze hyperbolic heat conduction models. As usual, the explicit approach allows the solution of the problem to be carried out without dealing with any system of equations, featuring a very efficient methodology. In addition, the proposed technique enables algorithmic dissipation, allowing the influence of spurious high modes to be properly eliminated, without introducing significant period elongation and amplitude decay errors into the analysis. As an explicit approach, the technique is conditionally stable; however, it exhibits high stability limits (its critical time-step is around 1.8 times that of the Central Difference Method), emphasizing its effectiveness. The technique is very accurate, truly self-starting and extremely direct to implement. At the end of the manuscript, numerical results are presented, illustrating the good performance of the discussed technique.
机译:在这项工作中,提出了一种增强的显式技术来分析双曲线热传导模型。像往常一样,显式方法可以解决问题,而无需处理任何方程式系统,该方法具有非常有效的方法。此外,所提出的技术能够实现算法耗散,从而可以适当消除杂散高模的影响,而无需在分析中引入明显的周期延长和幅度衰减误差。作为一种明确的方法,该技术在条件上是稳定的。但是,它具有很高的稳定性极限(其关键时间步长是“中央差分法”的1.8倍左右),从而强调了其有效性。该技术非常准确,真正自启动并且非常直接地实现。在手稿的最后,给出了数值结果,说明了所讨论技术的良好性能。

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