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Research about the uniform field breakdown strength of helium gas at high temperature and pressure in millimeter-scale gaps

机译:毫米尺度间隙中高温高压氦气的均匀场击穿强度研究

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Helium now commonly serves as the coolant in high temperature gas-cooled reactor (HTGR). Some electrical facilities work in helium gas at certain temperature and pressure, such as the helium blower, magnetic bearings and the electrical penetration assemblies. Because the insulation property of helium is much poorer than that of air, especially at high pressure, the insulation design of these electrical facilities is rather important and challenging. So far, national standards of insulation design is only for the air while there exists almost no industrial standard for helium gas. In addition, not many scientific researches on insulation property of helium have been conducted yet and most efforts were made to deal with liquid helium. In this paper, uniform field breakdown strength in millimeter-scale gaps of helium was studied with a streamer model analysis, at from 15°C to 180°C and 0.01 MPa to 7MPa. Coefficients of Paschen law are modified to better fit the experimental data under specific conditions and some analysis or explanation was given. The experimental data and rules obtained will be useful for the design of insulation structure in helium gas and promote the study of HTGR.
机译:现在,氦气通常在高温气冷反应堆(HTGR)中用作冷却剂。一些电气设备在一定温度和压力下使用氦气工作,例如氦气鼓风机,磁性轴承和电插接组件。由于氦气的绝缘性能比空气差得多,尤其是在高压下,因此这些电气设备的绝缘设计非常重要且具有挑战性。到目前为止,绝热设计的国家标准仅针对空气,而氦气几乎没有工业标准。另外,关于氦的绝热性能的科学研究还很少,并且已经做出了很多努力来处理液态氦。本文利用流光模型分析研究了在15°C至180°C和0.01 MPa至7MPa的氦气中毫米级间隙中的均匀电场击穿强度。修改了帕申定律的系数,以更好地拟合特定条件下的实验数据,并给出了一些分析或解释。获得的实验数据和规则将对氦气绝热结构的设计和促进高温气冷堆的研究有帮助。

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