低电应力下LDPE空间电荷注入的数值模拟

Y. Hayase, Y. Tanaka, T. Takada
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引用次数: 3

摘要

在本报告中,我们试图模拟低密度聚乙烯(LDPE)在相对低电应力下的空间电荷注入行为。在我们之前的论文中,我们发现了LDPE在大于100 kV/mm的高直流电场下的有趣的包状电荷行为。认为巨大的包状电荷对LDPE的击穿特性有很大的影响。为了分析LDPE中包状电荷行为的特点,我们在前人实验结果的基础上进行了简单的数值模拟。在该模型中,通过给出样品的一些参数,我们可以很容易地模拟出类似于包的电荷行为。为了研究哪个参数对包状电荷行为起主导作用,我们尝试将我们提出的模型应用于表现出不同于LDPE的包状行为的各种聚乙烯。然而,在100kv /mm左右或以下的条件下,LDPE内部的空间电荷积累过程尚未用该模型解释。实验结果表明,在较低的电应力下,空间电荷在体内均匀分布。为了用所提出的模型解释这种行为,必须考虑电荷注入和电导率分布的复杂参数。因此,作为第一步,我们尝试将数值模拟结果与实际实验结果拟合。
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Numerical Simulation of Space Charge Injection in LDPE under Relatively Low Electric Stress
In this report, we tried to simulate the behavior of space charge injection in low-density polyethylene (LDPE) under relatively low electric stress. In our previous paper, we found an interesting packet-like charge behavior in LDPE under high DC electric field of more than 100 kV/mm. It is thought that the huge packet-like charge must strongly affect to breakdown characteristics of LDPE. To analyze the feature of the packet-like charge behavior in LDPE, we have carried out a simple numerical simulation based on the experimental results in the previous paper. In the proposed model, by giving a few parameters of the sample, we can easily simulate the packet-like charge behavior. To investigate which parameter is dominant for the packet-like charge behavior, we attempt to apply our proposed model to various kinds of polyethylene which show different packet-like behavior from that in LDPE. However, the space charge accumulation process in LDPE under around or below 100 kV/mm has not explained using the model yet. From the experimental results, it was identified the space charge spread uniformly in the bulk under relatively low electric stress. To explain the behavior using the proposed model, it is necessary to concern the complicated parameters of charge injection and conductivity distribution. Therefore, as a first step, we tried to fit the numerical simulation results to the actual experimental results.
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