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Design Consideration of High Power High Current Twelve Pulse Thyristor Controlled Rectifiers

机译:大功率大电流十二脉冲晶闸管控制整流器的设计考虑

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High power high current thyristor controlled rectifiers are widely used in industries, particularly in electrolysis processes like metal refining, chlorination plants, electroplating, hydrogen production, etc. Other special application includes metallurgical processes, heating applications and electric tractions including nuclear research. In this paper, design consideration of 3.4 MW at 10 kA, twelve pulse, thyristor controlled rectifier units utilized for nuclear research application have been discussed. Nuclear reactor converts fission energy into electrical energy which is fed to the grid network. Determination of safety margins of nuclear reactor is the most crucial requirement as far as the safety of nuclear reactor is concerned. Generally, nuclear reactor safety margin is initially evaluated using well-proven computer codes and then validated by conducting appropriate experiments in simulated test facilities. In those experimental test facilities, nuclear fuel bundle is simulated incorporating metallic cluster of identical geometry with suitable power scaling. Low resistance metallic cluster is directly heated by DC current of the order of 10-50 kA to achieve the output power in MW, needed for generating experimental database. Rectifiers should have capability to generate a typical nuclear reactor power profile/transient for simulating nuclear reactor conditions. The paper describes technical specifications, design considerations and implementation aspects, commissioning and operational experience of 3.4 MW, 10 kA, twelve pulse thyristor controlled rectifiers. The various operating parameters observed during experimentation are also presented.
机译:高功率大电流晶闸管控制整流器广泛用于工业,尤其是在电解过程中,如金属精炼,氯化工厂,电镀,制氢等。其他特殊应用包括冶金过程,加热应用以及包括核研究在内的电力牵引。在本文中,已经讨论了10 kA时3.4 MW的设计考虑因素,用于核研究应用的十二脉冲晶闸管控制整流器单元。核反应堆将裂变能转换为电能,然后馈送到电网。就核反应堆的安全而言,确定核反应堆的安全裕度是最关键的要求。通常,首先使用久经考验的计算机代码评估核反应堆的安全裕度,然后通过在模拟测试设施中进行适当的实验进行验证。在那些实验测试设施中,模拟了核燃料束,其中包含具有适当功率缩放比例的相同几何形状的金属簇。低电阻金属团簇直接被10-50 kA的直流电流加热,以达到生成实验数据库所需的以MW为单位的输出功率。整流器应具有生成典型的核反应堆功率分布/瞬态以模拟核反应堆条件的能力。本文介绍了3.4 MW,10 kA,十二个脉冲晶闸管控制整流器的技术规格,设计注意事项和实施方面,调试和运行经验。还介绍了实验期间观察到的各种操作参数。

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