首页> 外文会议>International Mechanical Engineering Congress and Exposition >A NEW AND EFFICIENT MESHLESS COMPUTATIONAL APPROACH FOR TRANSIENT HEAT CONDUCTION IN ANISOTROPIC NONHOMOGENEOUS MEDIA: FRAGILE POINTS METHOD AND LOCAL VARIATIONAL ITERATION SCHEME
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A NEW AND EFFICIENT MESHLESS COMPUTATIONAL APPROACH FOR TRANSIENT HEAT CONDUCTION IN ANISOTROPIC NONHOMOGENEOUS MEDIA: FRAGILE POINTS METHOD AND LOCAL VARIATIONAL ITERATION SCHEME

机译:各向异性非均匀介质中瞬态导热的新有效的无丝肌计算方法:脆弱点法和局部变分迭代方案

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A new and efficient computational approach is presented for analyzing transient heat conduction problems. The Fragile Points Method (FPM) utilized for spatial discretization can, on one hand, like many other meshless methods, be free of the requirement of high-quality meshing, and on the other hand, bypass the difficulty of domain integration problem which is commonly seen in Galerkin meshfree methods. With local, polynomial and discontinuous trial and test functions, the method has a great potential in solving problems with rupture and fragmentation without remeshing. Anisotropy and nonhomogeneity which is challengeable for many spatial numerical methods do not give rise to any difficulties in the present implementation. The Local Variational Iteration Method (LVIM) in the time domain is a highly efficient technology in solving nonlinear problems, in which the time steps can be an order of magnitude larger than the traditional backward Elder scheme and the computing time can be cut by a half. The FPM+LVIM solver is also connected to the prepossessing module of ABAQUS which helps generating the domain partition. It shows the compatibility of the current approach with various partitions and makes it more friendly for engineer users. Several 2D and 3D numerical examples with functionally graded and composite materials are then provided as validations.
机译:提出了一种新的有效的计算方法来分析瞬态导热问题。用于空间离散化的脆弱点法(FPM)可以一方面像许多其他无网格方法一样,没有高质量的啮合要求,另一方面,绕过域集成问题的难度在Galerkin Meshfree方法中看到。随着本地,多项式和不连续的试验和测试功能,该方法在解决破裂和碎片问题的情况下具有很大的潜力,而不会倒闭。对许多空间数值方法有挑待的各向异性和非均匀性不会产生本实施中的任何困难。时域中的局部变分迭代方法(LVIM)是求解非线性问题的高效技术,其中时间步长可以是传统落后长老方案大的数量级,并且计算时间可以缩小一半。 FPM + LVIM求解器还连接到ABAQUS的Prepossessing模块,这有助于生成域分区。它显示了当前方法与各种分区的兼容性,使其对工程师用户更加友好。然后提供具有功能梯度和复合材料的几个2D和3D数值例子作为验证。

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