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Identification and characterization of solids in sand-water two-phase flows via vibration multi-sensor approaches

机译:通过振动多传感器方法识别和表征砂水两相流动中的固体

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The monitoring of tiny particles in multiphase pipe flow is widely encountered in industry. In this paper, the identification and characterization of solid particles suspended in sand-water flow were developed based on vibration multi-sensor approaches. Verification experiments were conducted, and good agreement was found between the concentrations (0-0.1 wt% with an interval of 0.02 wt%) of varisized sands (from 86 to 180 mu m) and the monitored vibration signal characteristics by multi-sensor approaches. A quadratic relationship between the particle concentration and vibration energy was obtained. In sand-carrying flow measurement experiments, the sand's characteristic frequency bands were found at 22-23.6 kHz and 24.8-26.6 kHz. Additionally, the sand particle identification effect was evaluated from two positions at bends, that is, the outer wall of the 45-degree bend on the elbow and the exit of the 90-degree bend. Compared with these two monitor positions, the sand vibration energy from the outlet of the elbow had a higher signal-to-noise ratio with obvious energy variations. In addition, the accuracies of the detected sand vibration features were mutual confirmation. Consequently, the above methods are applicable for little solid detection in sand-water flow, which lays the foundation for particles monitoring in the complexed multiphase flow. (C) 2019 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:在工业中广泛遇到对多相管道流动中微小颗粒的监测。在本文中,基于振动多传感器方法,开发了悬浮在砂水中固体颗粒的鉴定和表征。进行了验证实验,并且在浓度(0-0-1wt%的间隔为0.02wt%)的变化砂(从86至180μm)和通过多传感器方法的监测振动信号特性之间发现了良好的一致性。获得颗粒浓度与振动能之间的二次关系。在携带砂流量测量实验中,砂的特征频带被发现为22-23.6 kHz和24.8-26.6 kHz。另外,砂颗粒识别效应从弯曲的两个位置评估,即,肘部上的45度弯曲的外壁和90度弯曲的出口。与这两个监视器位置相比,弯头出口的砂振动能量具有较高的信噪比,具有明显的能量变化。此外,检测到的砂振特征的准确性是相互确认的。因此,上述方法适用于砂水流动中的少量固体检测,其为络合的多相流中的颗粒监测奠定了基础。 (c)2019年日本粉末技术学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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