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Flow Characterization of Dense-Phase Pneumatic Conveying System of Pulverized Coal through Electrostatic Sensor Arrays

机译:静电传感器阵列粉煤密相气力输送系统的流动特性

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摘要

Experiments are performed in a dense-phase pneumatic conveying system of pulverized coal, and electrostatic signals and coal particle distribution images over cross-section of the pipeline at superficial gas velocities of 5.7 m/s, 6.9 m/s, and 8.1 m/s are obtained through use of electrostatic sensor arrays (ESA) and electrical capacitance tomography (ECT), respectively. In combination with ECT imaging results, the output signals of the ESA are analyzed by FFT and approximate entropy method. Results show that characteristic of particles motion and its change with increasing superficial gas velocity are different in the dense and dilute phase region of the pipe. With increasing the superficial gas velocity, the peak frequency of the electrostatic signal increases linearly in dense-phase region, while that in dilute phase region is nonlinear, implying that the increase of the axial particles velocity is the main dynamic change, while in dilute phase regions, the particles velocity fluctuation in the radial direction cannot be ignored. The ApEn value of the electrostatic signal in dense phase region is larger than that in dilute phase region. When the ApEn value difference of the electrostatic signals is smaller, the pulverized coal particles are better suspended.
机译:在粉煤的密相气力输送系统中进行了实验,并且在表层气体速度为5.7 m / s,6.9 m / s和8.1 m / s的情况下,管道横截面上的静电信号和煤颗粒分布图像分别通过使用静电传感器阵列(ESA)和电容层析成像(ECT)获得。结合ECT成像结果,通过FFT和近似熵方法分析ESA的输出信号。结果表明,在管道的密相和稀相区域,颗粒运动的特性及其随表观气体流速的增加而变化。随着表观气体速度的增加,静电信号的峰值频率在密相区域呈线性增加,而在稀相区域则呈非线性,这表明轴向粒子速度的增加是主要的动态变化,而在稀相区域在这些区域中,径向上的粒子速度波动不能忽略。致密相区域中的静电信号的ApEn值大于稀相区域中的静电信号的ApEn值。当静电信号的ApEn值差较小时,粉状煤颗粒更好地悬浮。

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