直流场对换流变压器流化带电的影响

Yuan Gao, Qingguo Chen, M. Chi, Xinlao Wei, Yonghong Wang
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引用次数: 4

摘要

换流变压器在高压直流输电系统中起着重要的作用。换流变压器绝缘与普通电力变压器绝缘不同,它在工作过程中可以同时承受交直流电压。为了研究直流电场对换流变压器内流动通电的影响,建立了同轴圆柱形电极的油/纸管模型,并在实验室对直流电场作用下的流动通电进行了研究。结果表明,直流正电压的通电可以增强流体的带电性,特别是在高温下。随着温度的升高,流电流先增大并达到峰值,然后在较高温度下减小。在低温区,流速对流动电流影响不大。然而,在高温区域,流速的增加大大增强了电气化。离子迁移是引起直流电场作用下流动带电的主要原因。
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The effect of DC field on streaming electrification in converter transformer
Converter transformer plays an important role in the HVDC transmission system. The insulation in converter transformer withstands both the AC and DC voltage during operation, which is different from that in normal power transformer. In order to investigate the effect of DC electric field on streaming electrification in converter transformer, an oil/paper tube model with concentric cylindrical electrode geometry was built and the flow electrification under the DC electric field was investigated in laboratory. The results demonstrated that the energization by positive DC voltage can enhance the streaming electrification especially at high temperature. With the increment of temperature, the streaming current first increases and reaches a peak value, and then decreases at higher temperature. The flow velocity has a little effect on the streaming current in the low temperature region. However, in the high temperature region the increase of flow velocity greatly enhances the electrification. Furthermore, ion migration is the main reason that causes the flow electrification under the DC electric field.
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