直流电压在确定流动带电边界条件中的应用

P.A. Washabaugh, M. Zahn
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引用次数: 2

摘要

在非水弱离子化烃溶液中,流动带电是一种危险,电荷转移过程不太清楚,因为离子种类通常以微量存在,它们的化学成分是未知的。因此,使用了假设的边界条件,例如恒定的zeta电位或壁电荷密度,恒定的体积电荷密度梯度,或与体积电荷密度和平衡值之间的差成正比的壁电流密度。探讨了这些边界条件的适用性。在旋转圆柱形不锈钢电极之间通电体积电荷密度的测量中,变压器油填充在气缸之间的环空,结果表明,稳态电荷密度随着施加的低直流电压(电场为10/sup / 3/V/m)线性增加。当直流电压交替接通和断开时,内筒被压板绝缘覆盖的瞬态测量表明,界面表面电荷和电场影响通电体积电荷密度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of DC voltages for determining flow electrification boundary conditions
In the nonaqueous weakly ionized hydrocarbon solutions where flow electrification has been a hazard, the charge transfer processes are not well understood because the ionic species are typically present in trace amounts and their chemical composition is unknown. As a result, postulated boundary conditions have been used, such as a constant zeta potential or wall charge density, a constant gradient in the volume charge density, or a wall current density that is proportional to the difference between the volume charge density and an equilibrium value. The applicability of these boundary conditions is explored. Measurements of the electrification volume charge density between rotating cylindrical stainless steel electrodes, with transformer oil filling the annulus between the cylinders, showed the steady-state charge density increasing linearly with low applied DC voltages (with fields of order 10/sup 3/V/m). Transient measurements, with the inner cylinder covered by pressboard insulation, when the DC voltage is alternately connected and disconnected, suggest that the interfacial surface charge and electric field affect the electrification volume charge density.<>
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