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Investigations on the influence of the switching chamber design on the thermal interruption performance of carbon dioxide in high voltage circuit breakers

机译:开关室设计对高压断路器中二氧化碳热中断性能影响的研究

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The search for alternatives for the strong greenhouse gas SF (sulphur hexafluoride) in high voltage gas insulated switchgear (GIS) and circuit breakers lead to the identification of CO (carbon dioxide) as possible substitute for use as quenching gas. Nevertheless the first prototypes of circuit breakers filled with CO up to rated voltages of U = 145 kV show that an optimization of the CO technology with regard to the size of the switching chamber and the energy of the operating mechanism is needed. This requires a deep understanding of the interruption process in CO and an identification of the main influencing factors on the interruption performance. For this purpose the thermal interruption performance of two model switching chambers — optimized for the use of CO and SF — is experimentally investigated and compared. From the comparison with CFD (computational fluid dynamics) simulation results, gas temperature and flow velocity are determined as main influencing parameters on the interruption performance.
机译:在高压气体绝缘开关设备(GIS)和断路器中寻找强温室气体SF(六氟化硫)的替代品,从而导致了CO(二氧化碳)的识别,可以用作淬灭气体。然而,断路器的第一批原型机充满了高达U = 145 kV额定电压的CO,表明在开关室的大小和操作机构的能量方面需要对CO技术进行优化。这需要深入了解CO中的中断过​​程,并确定影响中断性能的主要影响因素。为此,通过实验研究和比较了两个模型开关室的热中断性能(针对CO和SF的使用进行了优化)。通过与CFD(计算流体力学)仿真结果的比较,确定气体温度和流速是影响中断性能的主要参数。

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