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Experimental Study on Capacity Increase of 12kV Switchgear Based on Pumpless Self-circulation Evaporative Cooling Technology

机译:基于无泵自循环蒸发冷却技术的12kV开关柜容量增加的试验研究

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The dust brought by the 12kV switchgear air-cooling system reduces the insulation level of the switchgear and causes short-circuit faults to occur, At the same time, due to the convection cooling dead zone of the static and dynamic contacts of the switchgear, the current limit of the switchgear cabinet is only 3kA, which cannot meet the 4kA requirement in actual operation. In order to solve the above problem, First of all, according to the principle and the theoretical technology of Pumpless Self-circulation Evaporative Cooler, combined with the internal structure, the properties of working fluid and the heating power of the switchgear, the limit values of normal operating parameters of cooler were calculated, and four kinds of cooler cooling structure designed for the switchgear static and dynamic contacts is presented. Secondly, a temperature rise test platform for the switchgear, which were installed with cooling cooler device, was designed. The influence of cooler insulation section and evaporation section shape on temperature rise of switchgear dynamic and static contacts were studied, respectively. The results show that the cooling effect of the cooler including linear insulation section is better than that of the cooler including bending type insulation section. The cooling effect of the cooler including hoop type evaporating section is better than that of the cooler including flat type evaporating section. Finally, based on the test, the optimal effective ventilation area of the circuit breaker room, bus room, cable room, front and rear doors were 0.3m
机译:12kV开关柜空冷系统带来的灰尘降低了开关柜的绝缘水平,并导致发生短路故障。同时,由于开关柜静态和动态触点的对流冷却死区,开关柜的限流电流仅为3kA,不能满足实际使用中的4kA要求。为了解决上述问题,首先,根据无泵自循环蒸发冷却器的原理和理论技术,结合内部结构,工作流体的性质和开关柜的加热功率,极限值计算了冷却器的正常运行参数,给出了为开关柜静触头和动触头设计的四种冷却器冷却结构。其次,设计了装有冷却器的开关柜温升测试平台。分别研究了冷却器绝缘部分和蒸发部分形状对开关柜动触头和静触头温升的影响。结果表明,包括线性绝缘段的冷却器的冷却效果要优于包括弯曲型绝缘段的冷却器的冷却效果。包括箍式蒸发部分的冷却器的冷却效果比包括平板式蒸发部分的冷却器的冷却效果更好。最后,根据试验,断路器室,公共汽车室,电缆室,前后门的最佳有效通风面积为0.3m。

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