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Numerical Simulation of Impact Effect of Internal Gas Pressure on Chamber Housing in Low-Voltage Circuit Breaker

机译:低压断路器内部气体压力对腔室壳体影响的数值模拟

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摘要

In this paper, the fluid–solid interaction model of the impact process of internal pressure in arc chamber on housing structure of low-voltage circuit breaker is established, including the computational fluid dynamic (CFD) module that can assess 3-D pressure distribution of internal gas flow in the arcing chamber and finite element module (FEM) to calculate the impact of high-pressure gas flow on the housing. Based on the CFD module, the internal pressure distribution under different breaking currents and venting conditions is simulated, in which the simulation results agree well with the experimental results. Then, based on the 3-D pressure distribution, through the 3-D FEM of housing impact, the dynamic stress and deformation of chamber housing are simulated and analyzed. By this method, the stress concentration region of arc chamber housing can be predicted, which can provide reference for structure optimization design of arc chamber. For the region where stress is concentrated, structural strength needs to be enhanced, which can effectively avoid rupture problems due to local excessive stress on the housing.
机译:本文建立了电弧室内部压力对低压断路器壳体结构的冲击过程的流固耦合模型,其中包括可评估3D压力分布的计算流体动力学(CFD)模块。电弧室内的内部气流和有限元模块(FEM),以计算高压气流对壳体的影响。基于CFD模块,模拟了不同分断电流和排气条件下的内部压力分布,其模拟结果与实验结果吻合良好。然后,基于3-D压力分布,通过壳体冲击的3-FEM,模拟和分析了腔室壳体的动应力和变形。通过该方法可以预测电弧室壳体的应力集中区域,为电弧室的结构优化设计提供参考。对于应力集中的区域,需要提高结构强度,这可以有效避免由于壳体上局部过大应力而导致的破裂问题。

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