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Design of the RFX-mod2 first wall

机译:RFX-MOD2第一墙的设计

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RFX-mod2 is the latest upgrade of the reversed field pinch machine operated at Consorzio RFX. A significant modification consists of replacing the first wall files, proposed as a key factor to improve the gas density with reduction of hydrogen retention. Polycrystalline graphite has been identified as file material given its high thermal conductivity (up to about 165 Wm(-1) K-1), uniformity and small grain size (about 20 mu m), and high mechanical strength (100 MPa compressive strength, 30 MPa tensile strength).With respect to RFX-mod, the mechanical resistant section of files has been increased coherently with the magnetic front-end modification that foresees the files supported by the existing MHD passive stabilising shell, so decreasing the maximum stress at 3.5 MPa calculated from finite element analysis that simulates the operating condition. This low stress level together with a measurement of the experimental loads during next RFX-mod2 operations could qualify the use of extruded graphite for a possible further first wall change in the future. Indeed, extruded graphite is considered attractive given its high directional thermal diffusivity (about 50 % better then polycrystalline graphite) to enhance the heat transmission and so improving the gas density control, and the low stress induced may allow use of this mechanically less performing graphite.
机译:RFX-MOD2是在Consorzio RFX上运行的倒车现场捏合机的最新升级。显着的修改包括更换第一壁文件,提出作为改善气体密度的关键因素,以减少氢保留。多晶石墨已被鉴定为赋予其高导热率的文件材料(高达约165wm(-1)k-1),均匀性和小粒度(约20μm)和高机械强度(100mPa抗压强度, 30 MPa拉伸强度)。对于RFX-MOD,文件的机械抗性部分与磁前端修改完全增加,这些磁前端修改已预见到现有MHD被动稳定外壳支持的文件,因此降低了3.5的最大应力从模拟操作条件的有限元分析计算的MPA。该低应力水平与下一个RFX-MOD2操作期间的实验载荷的测量可以符合未来可能进一步的第一壁变化的挤出石墨的使用。实际上,挤出的石墨被认为是有吸引力的,因为其高定向热扩散率(约50%更好的多晶石墨)以增强热传递等,因此改善气体密度控制,并且诱导的低应力可以允许使用这种机械较少的性能的石墨。

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