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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Particle volume flow rate measurement by combination of dual electrical capacitance tomography sensor and plug flow shape model
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Particle volume flow rate measurement by combination of dual electrical capacitance tomography sensor and plug flow shape model

机译:通过双电容断层扫描传感器和插头流形模型组合测量粒度流量测量

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摘要

Particle volume flow rate <(Q)over dot>(PLUG) in plug flow through a cross section of horizontal pipe has been accurately measured by a combination of dual electrical capacitance tomography sensor and plug flow shape model (dECT-PFSM). The plug flow shape model divides the trapezoidal shape of the plug flow into three flow regions which are Tip, Filling, and Tail regions. The plug flow volume V-PLUG is estimated by velocity and length which are measured in each region by the normalized permittivity signal changes obtained from the dECT images under the plug flow in the trapezoidal shape. The path time difference of the plug flow Delta t(PLUG) is also measured. The total volume flow rate of the plug flow is subsequently obtained from the sum of the plug flow volume of the three regions divided by Delta t(PLUG). Consequently, the volume flow rate of the plug flow obtained by dECT-PFSM Q(ECT), PFSM is compared with that of high-speed camera (HSC) as reference and conventional cross-correlation (CC) method. The absolute error E-abs of the proposed method is less than that of the CC method. The dECT-PFSM method is, therefore an affordable noninvasive technique for accurate determination of the volume flow rate of the plug flow. (C) 2020 Elsevier B.V. All rights reserved.
机译:通过双电容断层扫描传感器和插头流形模型(DECT-PFSM)的组合精确地测量了通过水平管的横截面的插头流过水平管道中的颗粒体积流量<(q)(插头)。插头流形模型将插头流的梯形形状分成三个流量区域,该流量区域是尖端,填充和尾部区域。通过速度和长度估计插头流量V-塞,其在每个区域中测量通过从梯形形状下的插头流下的DECT图像获得的归一化介电常数信号变化。还测量了插头流动ΔT(插头)的路径时间差。随后从三个区域的插头流量的总和除以ΔT(插头)的塞流量的总和。因此,通过DECT-PFSM Q(ECT)获得的插头流的体积流量与高速相机(HSC)作为参考和传统互相关(CC)方法进行比较。所提出的方法的绝对误差EBS小于CC方法的E-ABS。因此,DECT-PFSM方法是一种实惠的非侵入性技术,用于精确确定插头流量的体积流量。 (c)2020 Elsevier B.V.保留所有权利。

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