Ahmed Rizwan, Abd Rahman Rahisham, Jamal Arshad, Salem Ali Ahmed, Saman Bander, Lau Kwan Yiew, Ghoneim Sherif S M
Faculty of Electrical and Electronic Engineering, University Tun Hussein Onn Malaysia, Batu Pahat 86400, Malaysia.
Interdisciplinary Research Center of Smart Mobility and Logistics (IRC-SML), King Fahd University of Petroleum & Minerals, Dhahran 31261, Saudi Arabia.
Polymers (Basel). 2022 Jan 27;14(3):516. doi: 10.3390/polym14030516.
In-depth understanding of the pollution problems such as dry bands and the polymeric aging process requires better determination of electric field strength and its distribution over the polymeric surface. To determine the electric field distribution over the insulator surface, this research proposes utilizing a novel approach model based on nonlinear electrical characteristics derived from experimental results for polluted polymer insulators. A case study was carried out for a typical 11 kV polymeric insulator to underline the merits of this new modeling approach. The developments of the proposed pollution model and the subsequent computational works are described in detail. The study is divided into two main stages; laboratory measurements and computer simulations. In the first stage, layer conductance tests were carried out to develop nonlinear field-dependent conductivity for the pollution modeling. In the second part, equipotential and electric field distributions along the leakage were computed using the finite element method (FEM). Comparative field studies showed that the simulation using the proposed dynamic pollution model results in more detailed and realistic field profiles around insulators. This may be useful to predict the formation of dry bands and the initiation of electrical discharges on the polymeric surface.
深入了解诸如干带等污染问题以及聚合物老化过程,需要更好地确定电场强度及其在聚合物表面的分布。为了确定绝缘子表面的电场分布,本研究提出利用一种基于从污染聚合物绝缘子实验结果得出的非线性电气特性的新型方法模型。对一个典型的11 kV聚合物绝缘子进行了案例研究,以突出这种新建模方法的优点。详细描述了所提出的污染模型的发展以及随后的计算工作。该研究分为两个主要阶段:实验室测量和计算机模拟。在第一阶段,进行了层电导测试,以开发用于污染建模的非线性场相关电导率。在第二部分中,使用有限元方法(FEM)计算了沿泄漏路径的等电位和电场分布。对比场研究表明,使用所提出的动态污染模型进行模拟会在绝缘子周围产生更详细、更逼真的场分布。这对于预测聚合物表面干带的形成和放电的起始可能是有用的。