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Numerical simulation of the unsteady non-linear heat transfer problems. Application on nanosecond laser annealing of Si

机译:非稳态非线性传热问题的数值模拟。硅在纳秒激光退火中的应用

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摘要

The aim of the present work is the numerical simulation of the unsteady non-linear heat transfer problems. A nanosecond Gaussian in time and space pulse is considered as the heat source acting on a Si substrate. Four different scenarios are considered in order to examine the influence of the laser parameters on the Si surface temperature, namely variation of the fluence of the laser beam, the radius of the laser beam at the Si surface, the duration of the pulse and finally the number of laser pulses. A meshfree point collocation method (MPC) has been employed for the solution of the problem. More precisely, the moving least squares (MLS) approximation is incorporated for the construction of the shape functions, in conjunction with the general framework of the point collocation method. The accuracy and stability of the proposed scheme are demonstrated through three representative benchmark problems in 1D, 2D and 3D. Numerical results are found to be in very good agreement with analytical, numerical and experimental results presented in the literature.
机译:本工作的目的是非稳态非线性传热问题的数值模拟。纳秒高斯的时空脉冲被认为是作用在硅衬底上的热源。为了检验激光参数对Si表面温度的影响,考虑了四种不同的情况,即激光束能量密度的变化,Si表面激光束的半径,脉冲的持续时间以及最终激光脉冲数。无网格点配置方法(MPC)已用于解决该问题。更确切地说,结合点配置方法的一般框架,结合了移动最小二乘(MLS)近似来构造形状函数。通过1D,2D和3D中的三个代表性基准测试问题证明了所提方案的准确性和稳定性。发现数值结果与文献中给出的分析,数值和实验结果非常吻合。

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