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Study on designing high current density rotor windings ofsuperconducting generator and relation of the stabilities in static androtating conditions

机译:超导发电机高电流密度转子绕组设计及其静态和旋转条件下的稳定性关系研究。

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It is critically important to realize high current density superconducting rotor windings to make the superconducting generator economically competitive to a conventional one. High current density rotor windings inevitably suffer from instability problems. Therefore, the rotor windings should be designed for the quench currents to surely exceed the maximum operational currents in the rotating condition. In the next step of the Super-GM project, the current density required is 30% higher than that of the rotor winding developed in the former Super-GM project. To test the stability of the rotor windings, usually quench tests are conducted in a static and pool-cooled condition for the simplicity of the test but presently the relation between the stabilities in the static and rotating conditions is not clear. In the paper, we study what information can be obtained and how the stability in the rotating condition can be estimated from the static test. Based on this study, we investigate a method to design quench currents of high current density rotor windings to exceed a required value and discuss what level for the quench current to exceed in the static condition to satisfy the requirement in the rotating condition
机译:至关重要的是要实现高电流密度超导转子绕组,以使超导发电机在经济上与传统发电机竞争。高电流密度的转子绕组不可避免地遭受不稳定问题的困扰。因此,转子绕组的淬火电流必须确保在旋转条件下超过最大工作电流。在Super-GM项目的下一步中,所需的电流密度比前Super-GM项目中开发的转子绕组的电流密度高30%。为了测试转子绕组的稳定性,为了简化测试,通常在静态和池冷却条件下进行淬火测试,但目前尚不清楚静态和旋转条件下的稳定性之间的关系。在本文中,我们研究了可以获取哪些信息,以及如何通过静态测试估算旋转条件下的稳定性。基于这项研究,我们研究了一种设计高电流密度转子绕组的淬火电流以使其超过所需值的方法,并讨论了在静态条件下淬火电流要超过什么水平才能满足旋转条件下的要求

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