Simulation study on the structural optimization of composite insulators based on contaminant deposition

Yukun Lv, Zeze Chen,Qian Wang, Yao Lu, Xiaojing Li

ARCHIVES OF ELECTRICAL ENGINEERING(2023)

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摘要
Optimizing the aerodynamic structure of composite insulators can guarantee the safe operation of power systems. In this study, we construct a simulation model for composite insulator contaminant deposition using the COMSOL simulation software, and the rationality of the simulation model and method is verified through wind tunnel experiments. Taking the FXBW4-110/100 composite insulator as an example, we adopt a progressive optimization plan to explore the impacts of shed spacing s, and shed inclination angles alpha and beta on its contaminant deposition characteristics under DC and AC voltages. Based on the numerical simulation results, we analyze the antifouling performance of insulators before and after structural optimization. The results indicate the following: 1) The contaminant deposition of the insulator under AC and DC voltages is negatively correlated with the shed spacing s, but positively correlated with the lower inclination angle beta. 2) Under AC voltages, the contaminant deposition of the insulator increases with the upper inclination angle alpha, while under DC voltages, the contaminant deposition shows an uptrend first, then a downtrend and then an uptrend again with the increase of the upper inclination angle alpha. 3) Compared with the original model, the AC-optimized model (alpha = 6 degrees, beta = 2 degrees and s = 98 mm) with a larger shed spacing s, and smaller shed inclination angles alpha and beta showed superior antifouling performance at wind speeds of no less than 2 m/s, and under the typical conditions (v = 2.5 m/s, = 20 mu m, and rho = 2 200 kg/m(3)), its contaminant deposition is 15% less than that of the original model (alpha = 10 degrees, beta = 2 degrees and s = 80 mm).
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关键词
composite insulator,contaminant deposition characteristics,numerical simulation,voltage type,structural optimization
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