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无网格法在金属成形塑性分析中的应用
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作者 王文凯 汤文成 《机械制造》 2007年第12期31-34,共4页
比较了有限元法与无网格法在金属成形应用中的优缺点,分析描述了无网格法在金属弹塑性变形、金属体积成形、板料成形等金属成形加工方面的应用现状,并阐述了无网格法的不足、亟待继续深入解决的问题以及未来的展望。
关键词 有限元法 无网格法 金属成形 网格伽辽金法 再生核粒子无网格法
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Comparison of Improved Meshless Interpolation Schemes for SPH Method and Accuracy Analysis 被引量:1
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作者 郑兴 段文洋 马庆位 《Journal of Marine Science and Application》 2010年第3期223-230,共8页
In the smoothed particle hydrodynamics (SPH) method, a meshless interpolation scheme is needed for the unknown function in order to discretize the governing equation.A particle approximation method has so far been use... In the smoothed particle hydrodynamics (SPH) method, a meshless interpolation scheme is needed for the unknown function in order to discretize the governing equation.A particle approximation method has so far been used for this purpose.Traditional particle interpolation (TPI) is simple and easy to do, but its low accuracy has become an obstacle to its wider application.This can be seen in the cases of particle disorder arrangements and derivative calculations.There are many different methods to improve accuracy, with the moving least square (MLS) method one of the most important meshless interpolation methods.Unfortunately, it requires complex matrix computing and so is quite time-consuming.The authors developed a simpler scheme, called higher-order particle interpolation (HPI).This scheme can get more accurate derivatives than the MLS method, and its function value and derivatives can be obtained simultaneously.Although this scheme was developed for the SPH method, it has been found useful for other meshless methods. 展开更多
关键词 higher order particle interpolation (HPI) SPH meshless method moving least square (MLS)
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Chebyshev谱-Euler混合方法求解一类非线性Burgers方程 被引量:1
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作者 闵涛 任菊成 耿蓓 《数值计算与计算机应用》 CSCD 2013年第2期81-88,共8页
将Chebyshev谱方法与Euler方法相结合,对一类非线性Burgers方程进行数值求解,通过数值模拟将其与有限差分法和粒子无网格线混合格式MPS-MAFL方法进行了比较,结果表明这种方法对于求解非线性Burgers方程具有较好的效果.
关键词 非线性 BURGERS方程 粒子无网格法 Chebyshev谱-Euler混合方法 有限差分法
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