首页> 外文会议>Fusion Engineering 2005, Twenty-First IEEE/NPS Symposium on >Modular Coil Design for the Ultra-Low Aspect Ratio Quasi-Axially Symmetric Stellarator MHH2
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Modular Coil Design for the Ultra-Low Aspect Ratio Quasi-Axially Symmetric Stellarator MHH2

机译:超低纵横比拟轴向对称恒星器MHH2的模块化线圈设计

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A family of two field-period quasi-axisymmetric stellarators generally known as MHH2 with aspect ratios of only ~2.5 was found. These configurations have low field ripples and excellent confinement of alpha particles. This discovery raises the hope that a compact stellarator reactor may eventually be designed with the property of tokamak transport and stellarator stability. In this paper we demonstrate that smooth modular coils may be designed for this family of configurations that not only yield plasmas with good physics properties but also possess engineering properties desirable for compact power producing reactors. We show designs featuring 16 modular coils with ratios of major radius to minimum coil-plasma separation ~5.5, major radius to minimum coil-coil separation ~10 and the maximum field in coil bodies to the field on axis ~2 for 0.2 m2 conductors. These coils is expected to allow plasmas operated at 5% beta with alpha energy loss les10% for a reactor of major radius les9 m at 5 T
机译:发现了两个通常称为MHH2的场周期准轴对称恒星,其纵横比仅为〜2.5。这些配置具有较低的场纹波和出色的α粒子限制。这一发现使人们希望最终设计出一种紧凑的恒星反应器,并具有托卡马克运输和恒星稳定的特性。在本文中,我们证明,可以为这种配置系列设计平滑的模块化线圈,不仅可以产生具有良好物理特性的等离子体,而且还具有紧凑型发电反应堆所需的工程特性。我们展示了具有16个模块化线圈的设计,这些线圈的主半径与最小线圈等离子间距约为5.5,主半径与最小线圈-线圈间距约为10,并且线圈主体中的最大磁场与轴上的磁场之比为0.2 m 2 个导体。这些线圈有望使等离子在5 T下主半径les9 m的反应堆中,以5%的beta运行,α能量损失为les10%。

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