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首页> 外文期刊>Frontiers of mechanical engineering >A fast compound direct iterative algorithm for solving transient line contact elastohydrodynamic lubrication problems
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A fast compound direct iterative algorithm for solving transient line contact elastohydrodynamic lubrication problems

机译:解决瞬态线接触弹性流体动力润滑问题的快速复合直接迭代算法

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摘要

A fast compound direct iterative algorithm for solving transient line contact elastohydrodynamic lubrication (EHL) problems is presented. First, by introducing a special matrix splitting iteration method into the traditional compound direct iterative method, the full matrices for the linear systems of equations are transformed into sparse banded ones with any half-bandwidth; then, an extended Thomas method which can solve banded linear systems with any half-bandwidth is derived to accelerate the computing speed. Through the above two steps, the computational complexity of each iteration is reduced approximately from O(N~3 /3) to O(β~2N), where N is the total number of nodes, and β is the half-bandwidth. Two kinds of numerical results of transient EHL line contact problems under sinusoidal excitation or pure normal approach process are obtained. The results demonstrate that the new algorithm increases computing speed several times more than the traditional compound direct iterative method with the same numerical precision. Also the results show that the new algorithm can get the best computing speed and robustness when the ratio, half-bandwidth to total number of nodes, is about 7.5%-10.0% in moderate load cases.
机译:提出了一种快速的复合直接迭代算法,用于求解瞬态线接触弹性流体动力润滑(EHL)问题。首先,通过在传统的复合直接迭代方法中引入特殊的矩阵分解迭代方法,将线性方程组的完整矩阵转换为任意带宽的稀疏带状矩阵。然后,推导了一种扩展的Thomas方法,该方法可以求解具有任何半带宽的带状线性系统,从而加快了计算速度。通过以上两个步骤,每次迭代的计算复杂度从O(N〜3/3)降低到O(β〜2N),其中N是节点总数,β是半带宽。获得了正弦激励或纯正法接近过程下的瞬态EHL线接触问题的两种数值结果。结果表明,与相同的数值精度的传统复合直接迭代方法相比,新算法的计算速度提高了数倍。结果还表明,在中等负载情况下,当半带宽与总节点数之比为7.5%-10.0%时,新算法可以获得最佳的计算速度和鲁棒性。

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