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首页> 外文期刊>International Journal of Heat and Mass Transfer >Characterization of laser-induced local heating in a substrate
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Characterization of laser-induced local heating in a substrate

机译:基底中激光诱导的局部加热的表征

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摘要

The laser-induced heating in a substrate is investigated in the present study. The non-dimensional form of the governing equation on energy conservation for the unsteady laser heating process indicates that the heating process can be characterized only by two dimensionless parameters, i.e. the dimensionless scanning velocity of the laser spot V and the dimensionless absorption depth Λ. A criterion, U«1, is derived to scale down the heat transfer process from three dimensions to two dimensions, which is verified by the present numerical simulation. Another criterion, Λ > 100, is also given to correlate the heat flux model and the heat absorption model by comparing the numerical results obtained by these two models. The numerical simulation reveals an interesting phenomenon, the lag between the times for laser center reaching a point and the corresponding point reaching the maximum temperature. The present study provides insight into the unsteady heat transfer process induced by laser heating.
机译:在本研究中,研究了衬底中的激光诱导加热。不稳定激光加热过程的能量守恒控制方程的无量纲形式表明,加热过程只能用两个无量纲的参数来表征,即激光点V的无量纲扫描速度和无量纲的吸收深度Λ。推导出标准U«1,以将传热过程从三个维度缩减为两个维度,这已通过当前的数值模拟进行了验证。通过比较由这两个模型获得的数值结果,还给出了另一个准则Λ> 100,以关联热通量模型和吸热模型。数值模拟揭示了一个有趣的现象,即激光中心到达某一点的时间与相应点达到最高温度的时间之间的时滞。本研究提供了由激光加热引起的不稳定传热过程的见解。

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