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基于一种高精度微分求积法的结构动力响应数值计算
引用本文:蒲军平.基于一种高精度微分求积法的结构动力响应数值计算[J].南京航空航天大学学报,2004,36(3):294-297.
作者姓名:蒲军平
作者单位:南京航空航天大学航空宇航学院,南京,210016;浙江工业大学建工学院,杭州,310014
摘    要:采用了一种高阶精度的Pade逼进的时间域上格栅取点的时间步积分的微分求积方法,对双质点系及梁在强迫力作用下的振动特性进行了数值分析。计算结果表明.这种方法具有明显的高精度及低耗时并且对于二阶初值问题是无条件稳定的。在所考虑的时域内的动力响应过程中,系统的总能量是守恒的。

关 键 词:微分求积法  动力响应分析  能量守恒
文章编号:1005-2615(2004)03-0294-04
修稿时间:2003年10月28

Numerical Computation for Structural Dynamic Responses Based on a Highly Accurate Differential Quadrature Method
PU Jun-ping.Numerical Computation for Structural Dynamic Responses Based on a Highly Accurate Differential Quadrature Method[J].Journal of Nanjing University of Aeronautics & Astronautics,2004,36(3):294-297.
Authors:PU Jun-ping
Institution:PU Jun-ping 1,2
Abstract:A kind of unconditionally stable higher-order accurate time step integration algorithms has been applied, of which the numerical solutions are found to be equivalent to the generalized Pade approximations, for second-order initial value problems based on the differential quadrature method (DQM). The vibrant characteristic is numerically computed for the double-degree-of-freedom systems and a beam forced by a changing load. Results show that the algorithm has the capability of producing highly accurate solutions with minimal time consumption. In whole time integral process of the dynamic responses, the total energy of the system is conserved.
Keywords:differential quadrature method  dynamic response analysis  conservation of energy
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