Electric-field induced retardation of granular flows in a pipe

W. Chen, K. Lu, Zh Jiang, M. Hou, L. Lam
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Abstract

A local horizontal electric field is able to retard the flow of nickel granule down a vertical pipe. In the first sequence of our experiments, the granule is released from a hopper after a voltage difference V is applied across two short, vertical copper electrodes. As V is increased from zero to 4.8 kV, Q remains practically constant for V V I, In the second sequence of our experiments, V is first set at 4.8 kV; the flow is allowed to start; then V is reduced to the desired voltage. The new Q vs. V curve coincides with the previous Q(V) curve of first sequence, except for V-2 < V < V-1. A simplified one-dimension model is able to explain all the observed features.
电场对管道中颗粒流的阻滞作用
一个局部的水平电场可以延缓镍颗粒沿垂直管道的流动。在我们实验的第一个序列中,在两个短的垂直铜电极上施加电压差V后,颗粒从料斗中释放出来。当V从零增加到4.8 kV时,V V I的Q几乎保持不变。在我们的实验的第二个序列中,V首先被设置为4.8 kV;允许流量启动;然后V被降低到所需的电压。除了V-2 < V < V-1外,新的Q vs. V曲线与前一个序列的Q(V)曲线一致。一个简化的一维模型能够解释所有观测到的特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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