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Research on Mechanism and Suppression of Sediment Deposition on Grading Electrodes in Cooling Water Dielectric of HV Converter Valve

机译:高压变换器阀冷却水介质沉积电极沉积电极机理及抑制研究

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The alumina sediment deposited on platinum grading electrodes in the inner cooling system of high voltage converter valve has been proved to be the cause of many operational accidents. To make clear the formation mechanisms of deposited sediment in water dielectric, a simulated setup referring to the inner cooling system was first established. The deposition processes on both anode and cathode electrodes were compared. An electrochemical anti-deposition device, as a measure of the suppression sediment deposition on the grading electrodes, was also designed, based on the similar principle of deposition mechanism on the grading electrodes. The feasibility study of this anti-deposition device was carried out further. In cooing water dielectric, the acidic or basic aluminates, as the source of the alumina sediment, will migrate toward the cathode or anode electrodes under the electric field, and finally deposit on the electrode surface through two stages -of the initial formation and the growth. As for this anti-deposition device, the most important operating parameters are included in the current density and water flow rate near the surface of plate electrodes.
机译:已经证明,沉积在高压转换阀内冷却系统中的铂分级电极的氧化铝沉积物是许多操作事故的原因。为了清除水电介质中沉积沉积物的形成机制,首先建立了参考内冷却系统的模拟设置。比较了阳极和阴极电极上的沉积过程。基于分级电极上的类似原理,还设计了一种电化学防沉积装置,作为分级电极上的抑制沉积物沉积物的量度。进一步进行该抗沉积装置的可行性研究。在凝固水电介质中,作为氧化铝沉积物的源泉的酸性或碱铝酸盐将朝向电场下的阴极或阳极电极迁移,并且最终通过初始形成和生长的两个阶段沉积在电极表面上。对于该抗沉积装置,最重要的操作参数包括在板电极表面附近的电流密度和水流速率中。

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