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DEVELOPMENT OF AN OBJECT-ORIENTED PROGRAM WITH ADAPTIVE MESH REFINEMENT FOR HEAT TRANSFER SIMULATIONS

机译:传热模拟自适应网格细化的面向对象程序的开发

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A 2D/3D object-oriented program with h-type adaptive mesh refinement method is developed for finite element analysis of the multi-physics applications including heat transfer. A framework with some basic classes that enable the code to be built accordingly to the type of problem to be solved is proposed. The program consists of different modules and classes, which ease code development for large-scale complex systems, code extension and program maintenance. The developed program can be used as a "test-bed" program for testing new analysis techniques and algorithms with high extensibility and flexibility. The overall mesh refinement causes the CPU time cost to greatly increase as the mesh is refined. However, the CPU time cost does not increase very much with the increase of the level of h-adaptive mesh refinement. The CPU time cost can be saved by up to 90%, especially for the simulated system with a large number of elements and nodes.
机译:开发了具有h型自适应网格细化方法的2D / 3D面向对象程序,用于包括传热在内的多物理场应用的有限元分析。提出了一个具有一些基本类的框架,该类使得能够根据要解决的问题的类型来构建代码。该程序由不同的模块和类组成,可简化大型复杂系统的代码开发,代码扩展和程序维护。所开发的程序可以用作“测试台”程序,以具有高度可扩展性和灵活性的方式测试新的分析技术和算法。总体网格细化会导致CPU时间成本随着网格细化而大大增加。但是,随着h自适应网格细化程度的提高,CPU时间成本不会增加太多。 CPU时间成本最多可节省90%,特别是对于具有大量元素和节点的模拟系统而言。

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