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Design of intelligent temperature control system of SF6 circuit breaker to prevent SF6 from liquefaction

机译:SF 6 断路器智能温度控制系统的设计,防止SF 6 从液化中

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摘要

SF6 circuit breakers are widely used in power system because of its excellent arc interruption performance. But the liquefaction of SF6 gas at extreme cold area affect the reliability of the circuit breakers. To solve the problem, an intelligent temperature control system for the SF6 circuit breakers at cold area, the internal heating belt and their installation methods are designed in this paper. A test box to simulate the low temperature environment is built. And the cooperating performances of the temperature control system and the SF6 circuit breaker are studied from three aspects, the working temperature of circuit breaker, the heating power and the installation position of the heating belt. In addition, the 3D models are built in workbench based on different test schemes, and the temperature rises of the models are simulated. The results prove that, the cooperation of intelligent temperature control system and the circuit breaker is stable, and the measurement error of temperature is less than 1°C. As the 500w heating belt added at the bottom of the gas chamber, the temperature of gas chamber can be maintained at more than -15°C when the external temperature is -40°C.
机译:SF 6 断路器由于其优异的电弧中断性能而广泛用于电力系统。但SF 6 气体在极端寒冷区域的液化影响断路器的可靠性。为了解决问题,本文设计了冷区,内部加热带及其安装方法的SF 6 断路器的智能温度控制系统。构建了模拟低温环境的测试盒。和温度控制系统和SF 6 断路器的协作性能是从三个方面进行的,断路器的工作温度,加热电力和加热带的安装位置的研究。此外,基于不同的测试方案,在工作台内置3D模型,模拟模型的温度升高。结果证明,智能温度控制系统和断路器的合作稳定,温度的测量误差小于1°C。当在气室底部添加500W加热带时,当外部温度为-40℃时,气室的温度可以保持在-15℃。

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