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Experimental studies of two-phase liquid metal-gas chain flow with ultrasonic echo pulse method and in the magnetic field of permanent magnets

机译:超声回波脉冲法在永磁体磁场中两相液态金属-气体链流的实验研究

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Metallurgical processes of refining and degassing liquid metals are related to the blowing-in neutral gasses like for example argon. Effectiveness of the process depends on the flowing gas parameters like: dimensions, velocity, distribution amd gas phase flow zone. These parameters can be changed under the influence of outside magnetic field and formed by it a Lorentz’ force. In order to get full information of rising bubbles essential are certain measuring methods. Among many of these the ultrasonic echo pulse method is likely to be the most intensive developed in the past few years. That method enables estimation of gas phase flow parameters in a range from individual bubble flow up to full continuous gas flow at the inlet nozzle. In this paper a measurement principle has been described for an ultrasonic echo method and there also submitted and discussed results of obtained results for diphase flow of GaInSn-argon.
机译:精炼和脱气液态金属的冶金工艺与吹入的中性气体(例如氩气)有关。该过程的有效性取决于流动的气体参数,例如:尺寸,速度,分布和气相流区。这些参数可以在外部磁场的影响下改变,并由洛伦兹力形成。为了获得上升气泡的完整信息,必不可少的是某些测量方法。在这些方法中,超声回波脉冲方法可能是过去几年中最密集的方法。该方法使得能够在从单个气泡流到入口喷嘴处的全连续气体流的范围内估计气相流参数。在本文中,已经描述了超声回波方法的测量原理,并且还提交并讨论了GaInSn-氩气的两相流获得的结果。

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