首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Three-dimensional modeling of turbulent weld pool convection in GTAW processes
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Three-dimensional modeling of turbulent weld pool convection in GTAW processes

机译:GTAW过程中湍流熔池对流的三维建模

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Three-dimensional turbulent weld pool convection in a gas tungsten are welding (GTAW) pool is simulated using a high Reynolds number k-epsilon model. The k-epsilon model is suitably modified to account for the morphology of the solid-liquid interface. Melting and solidification occurring during the welding process are modeled using a modified enthalpy-porosity technique. Key issues regarding turbulent transport in a GTAW process are highlighted by comparing the results from the turbulence modeling with the corresponding ones from a laminar model, keeping all process parameters unaltered. A scaling analysis is also performed to obtain order-of-magnitude estimates of certain key features of a turbulent weld pool. The scale analysis predictions show good agreement with the numerical results.
机译:使用高雷诺数k-ε模型对气体钨极氩弧焊(GTAW)中的三维湍流焊池对流进行了模拟。对k-ε模型进行适当修改,以说明固液界面的形态。使用改进的焓-孔隙率技术对在焊接过程中发生的熔化和凝固进行建模。通过比较湍流模型的结果与层流模型的相应结果,突出了GTAW过程中有关湍流传输的关键问题,并保持所有过程参数不变。还执行缩放分析以获得湍流焊池的某些关键特征的数量级估计。规模分析预测结果与数值结果吻合良好。

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