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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >On the optimal design of gas-cooled Peltier current leads
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On the optimal design of gas-cooled Peltier current leads

机译:关于气冷珀尔帖电流引线的优化设计

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摘要

We perform the optimal design of gas-cooled Peltier current leads (PCLs), such that their resulting heat leaking into superconducting magnets can be minimized. Superior to previous investigations, the effect of gas cooling on both the Cu lead and the thermoelectric element in a PCL is taken into consideration. Analytical temperature distribution is derived as well as the concerned heat leaking into superconducting magnets. Numerically iterative calculations are, therefore, avoided. Moreover, temperature-entropy diagrams are constructed to distinguish conventional all-Cu leads from PCLs with and without gas cooling. Both the heat leak and the input power of current leads can be easily identified from the areas subtended by the isotherms on the simple two-dimensional temperature-entropy plane.
机译:我们对气冷珀尔帖电流引线(PCL)进行了优化设计,以使它们散发到超导磁体中的热量最小化。优于先前的研究,考虑了气体冷却对PCL中的Cu铅和热电元件的影响。得出分析的温度分布以及相关的热量泄漏到超导磁体中。因此,避免了数字迭代计算。此外,构建了温度-熵线图以区分传统的全铜引线与有气体冷却和无气体冷却的PCL。可以从简单的二维温度-熵平面上的等温线所覆盖的区域中轻松识别出热泄漏和电流引线的输入功率。

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