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Turbulent heat transfer in liquid iron during electron beam evaporation

机译:电子束蒸发过程中液态铁中的湍流传热

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Electron beam evaporation of high-purity liquid metals is characterized by vigorous (turbulent) convection in the melt pool resulting in unwelcome heat losses. This convective motion is exclusively drivcn by thermocapillary forces. We exploit this unique feature to measure the Nusselt number in liquid iron for Marangoni numbers up to l0~8. The experiments are carried out in a real-to-life test facility for electron beam evaporation. We compare the results of our investigations with findings of a recent scaling analysis. Moreover. we perform direct numerical simulations employing a 2D model. The numerical results demonstrate the turbulent character of the flow as well as the dominance of thermocapillarity over buoyancy.
机译:高纯度液态金属的电子束蒸发的特征是熔池中剧烈(湍流)对流,导致不受欢迎的热损失。对流运动仅通过热毛细作用力驱动。我们利用这一独特的功能来测量液态铁中的努塞尔特数,直至Marangoni数高达10〜8。实验是在真实的电子束蒸发测试设备中进行的。我们将调查结果与近期规模分析的结果进行比较。此外。我们使用2D模型执行直接数值模拟。数值结果证明了流动的湍流特性以及热毛细作用对浮力的支配性。

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