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A new approach to understanding the frequency response of mineral oil

机译:一种理解矿物油频率响应的新方法

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Dielectric spectroscopy is non-invasive diagnostic method and can give information about dipole relaxation, electrical conduction and structure of molecules. Since the creation of charge carriers in mineral oil is not only from dissociation but also injection from electrodes, the injection current cannot be simply ignored. The polarization caused by the charge injection has been studied in this paper. Based on our research, if the mobility of the injected charge carriers is fast enough so that they can reach the opposite electrode, the current caused by the injection will contribute only to the imaginary part of the complex permittivity and this part of the complex permittivity will decrease with the frequency with a slope of −1 which is in a good agreement with the experimental result. The classic ionic drift and diffusion model and this injection model will be combined to make an improved model. In this paper, the frequency responses of three different kinds of mineral oils have been measured, and this modified model has been used to simulate the experiment result. Since there is only one unknown parameter in this improved model, a better understanding of the frequency response in mineral oil can be achieved.
机译:介电谱是一种非侵入性的诊断方法,可以提供有关偶极弛豫,电导率和分子结构的信息。由于矿物油中电荷载体的产生不仅是由于离解,而且还因为来自电极的注入,因此注入电流不能简单地忽略。本文研究了由电荷注入引起的极化。根据我们的研究,如果注入的电荷载流子的迁移速度足够快,从而它们可以到达对电极,则注入引起的电流将仅对复介电常数的虚部贡献,而这部分复介电常数将随频率的降低而降低,其斜率为-1,这与实验结果非常吻合。经典的离子漂移和扩散模型以及该注入模型将被组合以构成一个改进的模型。本文测量了三种不同矿物油的频率响应,并使用该改进模型来模拟实验结果。由于在这种改进的模型中只有一个未知参数,因此可以更好地理解矿物油中的频率响应。

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