Frequency-dependent streaming potential experiments of porous transducer in liquid circular angular accelerometer

K. Ning, Meiling Wang, Siyuan Cheng, Li Ming
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引用次数: 2

Abstract

The classical Helmholtz-Smoluchowski equation is broadly used to characterize the relationship among the DC streaming potential coupling coefficient, the properties of the porous medium and the pore fluid, such as the zeta potential, fluid dielectric, conductivity and permittivity under the steady-state fluid flow. However, there is a frequency-dependent streaming potential through both sides of a transducer, which is one kind of porous media sintered by glass beads with different diameters and embedded in the liquid circular angular accelerometer. In order to increase the streaming potential signal, broaden the bandwidth of the accelerometer, and analyze the influence factors, we present a novel measurement system to determine streaming potential coupling coefficient of those transducers, which provides a sinusoidal pressure-driven fluid flow for transducers below 320 Hz. We have measured dynamic streaming potential coupling coefficients of 4 types of transducers by this device, and the results are well consistent with the theoretic model. For magnitude anomalies of the frequency response of the streaming potential coupling coefficient, we analyze the relationship among the cut-off frequency, permeability, and the mean particle size. It is proved that the cut-off frequency is inversely proportional to the mean particle size or permeability.
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液体圆形角加速度计多孔换能器的频率相关流势实验
经典的Helmholtz-Smoluchowski方程被广泛用于表征稳态流体流动下直流流势耦合系数与多孔介质和孔隙流体性质(如zeta势、流体介电、电导率和介电常数)之间的关系。换能器是一种由不同直径的玻璃微珠烧结而成的多孔介质,嵌入在液体圆形角加速度计中,其两侧存在频率相关的流势。为了增加流势信号,拓宽加速度计的带宽,并分析影响因素,我们提出了一种新的测量传感器流势耦合系数的测量系统,为320 Hz以下的传感器提供了正弦压力驱动的流体流动。用该装置测量了4种换能器的动态流势耦合系数,结果与理论模型吻合较好。对于流势耦合系数频率响应的震级异常,分析了截止频率、渗透率和平均粒径之间的关系。证明了截止频率与平均粒径或渗透率成反比。
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