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Ultrasonic Doppler Velocimetry in Liquid Aluminum

机译:液态铝中的超声多普勒测速仪

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Available techniques for the experimental study of flow patterns and velocities are difficult to apply to liquid metals because of the high temperatures generally involved. Thus, no velocity measuring technique for liquid metal flows is commercially available. In most cases, water models with particle velocity tracking measurements are used to estimate the local metal velocity. Ultrasound Doppler Velocimetry (UDV) is a non-invasive way of measuring the velocity in fluid depth, which can be used in opaque liquid and deliver velocity profiles in real-time. This paper describes the principle of the technique. It also presents recent UDV experiments performed at Constellium, in molten aluminum on lab equipment and at industrial scale. The breakthrough technology developed by Constellium for the wettability of the ceramic waveguides is introduced. It is essential for signal stability and continuous measurement. 2D UDV measurements in a trough and the liquid sump of a DC cast slab are presented together with numerical modeling results.
机译:由于通常涉及高温,因此很难对液态金属的流动模式和速度进行实验研究的可用技术。因此,没有可商购的用于液态金属流的速度测量技术。在大多数情况下,使用具有粒子速度跟踪测量值的水模型来估计局部金属速度。超声多普勒测速仪(UDV)是一种非侵入性的方法,可以测量流体深度中的速度,可用于不透明液体中并实时传递速度分布图。本文介绍了该技术的原理。它还介绍了最近在Constellium进行的UDV实验,该实验是在实验室设备和工业规模的熔融铝中进行的。介绍了Constellium为陶瓷波导的可湿性开发的突破性技术。这对于信号稳定性和连续测量至关重要。给出了直流铸坯的水槽和液槽中的二维UDV测量结果以及数值模拟结果。

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