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An ultrasonic level measuring technique based on radiation dissipation and its industrial application

机译:基于辐射耗散的超声波液位测量技术及其工业应用

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摘要

The difficulties occur when traditional level gauging instruments are applied in filling processes, because dust above the interface of material will affect the accuracy of these gauging instruments. A non-destructive method using ultrasonic sensors was proposed in this work to meet this challenge. Theoretical model of ultrasonic radiation damping was derived on the basis of vibration damping theory, and the model was used to describe the relationship between the dissipation of ultrasonic vibration energy and material level. Moreover, influences of frequency and amplitude of the ultrasonic signal on the model were investigated. The results show that the frequency instead of the amplitude has a big influence on the model. Base on these results, proper amplitude and frequency of the ultrasonic signal is decided for the industrial trial in a pulverized coal silo. The predicted level obtained using the model gives error less than 5%. Conclusions can be drawn that the non-destructive ultrasonic method enjoys a bright future in the measurement of material level. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在灌装过程中使用传统的液位测量仪器时会遇到困难,因为材料界面上方的灰尘会影响这些测量仪器的精度。在这项工作中提出了一种使用超声波传感器的非破坏性方法来应对这一挑战。根据振动阻尼理论推导了超声辐射阻尼的理论模型,并用该模型描述了超声振动能量的耗散与材料水平之间的关系。此外,研究了超声信号的频率和幅度对模型的影响。结果表明,频率而不是幅度对模型有很大的影响。根据这些结果,可以确定超声信号的适当振幅和频率,以便在粉煤仓中进行工业试验。使用该模型获得的预测水平得出的误差小于5%。可以得出结论,无损超声方法在物位测量中有着广阔的前景。 (C)2014 Elsevier Ltd.保留所有权利。

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