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Heat Transfer Applications of Meshless Local Petrov-Galerkin (MLPG) Method during Plasma Spray

机译:无网格局部Petrov-Galerkin(MLPG)方法在等离子喷涂过程中的传热应用

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摘要

In this work, a compact computational formulation is established based on the truly meshless method MLPG, and is firstly used to solve steady and transient heat conductions of the plasma spray. The unknown function of temperature distribution is approximated by moving least square approximation functions. These approximants are constructed by using a weight function, a polynomial basis and a set of non-constant coefficients. A cubic spline function selected as the weight of the moving least-squares approximation and a penalty technique is introduced to enforce the essential boundary conditions. The effect of scaling and penalty parameters on this numerical algorithm is discussed in detail. FORTRAN code is developed to obtain the MLPG results. For comparison, finite element method is conducted to evaluate the accuracy and efficiency of this formulation; moreover, experiments of plasma spray are also designed and carried out. It is shown that MLPG solutions of a steady and transient heat conduction problems exhibit higher accuracy and reliability compared with the FEM and is in good agreement with that from the empirical results in plasma spray experiments, suggesting that the MLPG method is feasible and efficient and therefore applicable to heat conduction problems during the plasma spray process.
机译:在这项工作中,基于真正的无网格方法MLPG建立了紧凑的计算公式,该公式首先用于解决等离子体喷涂的稳态和瞬态热传导。温度分布的未知函数通过移动最小二乘近似函数来近似。这些近似值是通过使用权函数,多项式基和一组非常数系数来构造的。引入三次三次样条函数作为移动最小二乘近似的权重,并引入了惩罚技术来强制执行基本边界条件。详细讨论了定标和惩罚参数对这种数值算法的影响。开发FORTRAN代码以获得MLPG结果。为了进行比较,采用了有限元方法来评估该配方的准确性和效率。此外,还设计并进行了等离子喷涂实验。结果表明,与有限元方法相比,具有稳态和瞬态热传导问题的MLPG解具有更高的精度和可靠性,并且与等离子喷涂实验的经验结果吻合良好,这表明MLPG方法是可行且高效的,因此适用于等离子喷涂过程中的导热问题。

著录项

  • 来源
    《Computational Mechanics》|2007年|1-1|共1页
  • 会议地点 Beijing(CN)
  • 作者

    ZHAO Jing-jing;

  • 作者单位

    S.C.Wu@College of Mechanical Science and Engineering,State Key Lab.of Digital Manufacturing Equipment and Tech.,Huazhong University of Science and Technology,Wuhan,430074 China--H.O.Zhang@College of Mechanical Science and Engineering,State Key Lab.of Digital Manufacturing Equipment and Tech.,Huazhong University of Science and Technology,Wuhan,430074 China--G.L.Wang@College of Material Science and Engineering,State Key Lab.of Material Processing and Die Mould Tech.,Huazhong University of Science and Technology,Wuhan,430074 China--W.S.Xia@College of Material Science and Engineering,State Key Lab.of Material Processing and Die Mould Tech.,Huazhong University of Science and Technology,Wuhan,430074 China--;

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  • 中图分类 应用力学;
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