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首页> 外文期刊>Electric Power Applications, IET >Multi-physics design of a novel turbine permanent magnet generator used for downhole high-pressure high-temperature environment
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Multi-physics design of a novel turbine permanent magnet generator used for downhole high-pressure high-temperature environment

机译:用于井下高压高温环境的新型涡轮永磁发电机的多物理场设计

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摘要

Conventional turbine generator with magnetic coupling is becoming difficult to meet large electric power demand because of complex structure, low-efficiency and lower-power density in the downhole environment. In this study, a novel stator-sealed downhole turbine permanent magnet generator is presented. Conventional magnetic coupling is replaced by the separate seals of stator and magnet, allowing drilling fluid flow from the air gap of the generator through the sliding bearings. Then the effective lubrication of bearings and cooling of generator are achieved as well as high power density and pressure balance of the generator. The Halbach array and fractional slot winding are both utilised to further improve the power density, reduce the loss, and keep a lower voltage regulation. A multi-physics design procedure is proposed in this study involving the electromagnetic, thermal, fluid and stress field for downhole harsh environment. In the design process, the coupling electromagnetic??thermal analysis based on two-way multiple iterations and the coupling thermal??fluid analysis based on conjugate heat transfer is incorporated to guarantee high accuracy. The experimental data are compared with simulation results to verify the correctness of proposed method and the feasibility of this novel turbine generator for downhole application.
机译:传统的具有磁耦合的涡轮发电机由于在井下环境中结构复杂,效率低和功率密度低而变得难以满足大功率需求。在这项研究中,提出了一种新颖的定子密封井下涡轮永磁发电机。常规的磁耦合器由定子和磁体的单独密封代替,从而使钻井液从发电机的气隙流经滑动轴承。然后,实现了轴承的有效润滑和发电机的冷却以及发电机的高功率密度和压力平衡。 Halbach阵列和分数槽绕组均用于进一步提高功率密度,减少损耗并保持较低的电压调节率。在这项研究中提出了一种多物理场设计程序,该程序涉及针对井下恶劣环境的电磁场,热场,流体场和应力场。在设计过程中,结合了基于双向多次迭代的耦合电磁场-热分析和基于共轭传热的耦合场热-流体分析,以保证高精度。将实验数据与仿真结果进行比较,以验证所提出方法的正确性以及该新型涡轮发电机在井下应用的可行性。

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  • 来源
    《Electric Power Applications, IET》 |2013年第3期|1-9|共9页
  • 作者

    Guo H.; Lv Z.; Wu Z.; Wei B.;

  • 作者单位

    School of Automation Science and Electrical Engineering, Beijing University of Aeronautics and Astronautics, People's Republic of China|c|;

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  • 正文语种 eng
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