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Large-scale trials of a real-time acoustic backscatter system for solids concentration measurement during nuclear waste cleanup

机译:用于核废料清理期间固体浓度测量的实时声反向散射系统的大规模试验

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摘要

Real time in situ characterisation of solids concentration would aid operational understanding and improve efficiency in many industrial systems. This is especially true in the processing of legacy nuclear wastes where hazardous material is encountered. Acoustic methods have been previously demonstrated for the measurement of concentration in solid-liquid systems at a small scale. This study explores the use of the ultrasound array research platform (UARP) for backscatter measurements of concentration at a large scale in a dynamic settling system. The theory of acoustic measurement of solids concentration is described for both backscatter based attenuation and backscatter power methods. Acoustic based backscatter power and attenuation measurements are compared to laboratory analysed samples. Ultrasonic solids concentration analysis is shown to reveal flow dynamics within the settling tank.
机译:固体浓度的实时原位表征将有助于操作理解并提高许多工业系统的效率。在处理遇到危险物质的遗留核废料时尤其如此。以前已经证明了声学方法可用于小规模测量固液系统中的浓度。这项研究探索了使用超声阵列研究平台(UARP)在动态沉降系统中进行大规模浓度反向散射测量。固体浓度的声学测量理论针对基于背向散射的衰减和背向散射功率方法进行了描述。将基于声学的反向散射功率和衰减测量值与实验室分析的样品进行比较。超声波固体浓度分析显示出沉降池内的流动动力学。

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