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Bi-discontinuous time step integration algorithms―Part 2: second-order equations

机译:双间断时间步长积分算法第2部分:二阶方程

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In this paper, bi-discontinuous time step integration algorithms for Linear second-order equations are investigated. The second-order equations are manipulated directly. Both the initial and final displacement and velocity are only weakly enforced at the beginning and at the end of the time interval. As a result, there may be discontinuous jumps for both the displacement and velocity at the two ends of the time interval. If the displacement is assumed to be a polynomial of degree n + 1 within the time interval, there are n + 4 unknowns in the formulation. It is found that the order of accuracy would be at least n + 1 for displacement and n for velocity in general. It is shown that the relevant algorithmic parameters for the second-order equations can be related to the algorithmic parameters presented in Part 1 of this paper for the first-order equations. Unconditionally stable higher order accurate time step integration algorithms with controllable numerical dissipation equivalent to the generalized Pade approximations with an order of accuracy 2n + 3 can then be constructed systematically. The weighting parameters and the corresponding weighting functions are given explicitly. It is also shown that the accuracy of the particular solutions is compatible with the accuracy of the homogeneous solutions if the proposed weighting functions are employed.
机译:本文研究了线性二阶方程的双不连续时间步长积分算法。二阶方程是直接操纵的。初始和最终位移和速度都仅在时间间隔的开始和结束时被弱地施加。结果,在时间间隔的两端,位移和速度可能都存在不连续的跳跃。如果假设在该时间间隔内位移为n + 1的多项式,则公式中将存在n + 4个未知数。可以发现,通常位移的精度等级至少为n + 1,速度的精度等级至少为n。结果表明,二阶方程的相关算法参数可以与本文第一部分介绍的一阶方程的算法参数相关。然后可以系统地构建无条件稳定的高阶精确时间步长积分算法,该算法具有可控制的数值耗散,其等效精度为2n + 3的广义Pade近似值。明确给出加权参数和相应的加权函数。还表明,如果采用建议的加权函数,则特定解的精度与均质解的精度兼容。

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