高压断路器低环境影响气体热中断过程CFD分析

X. Ye, M. Dhotre, J. Mantilla, S. Kotilainen
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引用次数: 16

摘要

目前正在研究对环境影响较小的气体和气体混合物作为SF6的可能替代品,作为高压断路器的开关介质。研究的一个最重要的方面是热中断特性,这取决于流动加速,以及电弧在电流零附近的有效冷却。本文采用计算流体力学(CFD)方法研究了气体性质对热中断能力的影响。考虑以CO2为背景气体的氟酮混合气体。将该混合气体的潜在热中断行为与SF6进行了比较。研究了轴流参数压力、速度、马赫数和密度对热中断的个别影响。结合轴流变量,导出了能更好地表征热中断的热中断代理参数。并给出了不同气体间的差异。对影响压力积聚和热中断性能的设计参数进行了研究和讨论。
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CFD analysis of the thermal interruption process of gases with low environmental impact in high voltage circuit breakers
Gases and gas mixtures with lower environmental impact are being investigated as possible alternatives to SF6 as the switching medium in high voltage circuit breakers. One of the most important aspects of the investigation is the thermal interruption characteristic which depends on flow acceleration, and efficient cooling of the arc around current zero. In the present work, the influence of the gas properties on the thermal interruption capability is investigated using Computational Fluid Dynamics (CFD). A gas mixture of fluroketones with CO2 as background gas is considered. The underlying thermal interruptions behavior of this gas mixture is compared with that of SF6. The individual influence of the axial flow parameters namely pressure, velocity, Mach number and density on thermal interruption is studied. A thermal interruption proxy parameter is derived by combining the axial flow variables, which can better characterize the thermal interruption. The differences between the different gases using this proxy are presented. The design parameters influencing the pressure build-up and thermal interruption behavior are investigated and discussed.
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