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Mhd And Heat Transfer Considerations For The Us Dcll Blanket For Demo And Iter Tbm

机译:用于演示和Iter Tbm的美国Dcll毛毯的Mhd和传热注意事项

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摘要

We summarize here the results of ongoing studies for magnetohydrodynamic (MHD) flows and heat transfer in the eutectic alloy lead-lithium (PbLi), which is used as a breeder and coolant, for three US Dual-Coolant Lead-Lithium (DCLL) blanket scenarios: ITER H-H, ITER D-T, and DEMO. The paper focuses on the important blanket feasibility issues, such as the MHD pressure drop, heat leakages from PbLi into the cooling helium flows, and the temperature distributions in the insulating flow insert and at the material interface. Both ITER scenarios look acceptable, i.e., all material restrictions can be easily met. In the DEMO scenario, the flow insert operates in harsh conditions causing high temperature drop in the insert and high interface temperature between the hot PbLi and the ferritic structure that may exceed the allowable material limits.
机译:我们在此总结正在进行的研究的结果,该研究针对三种美国双冷却铅锂(DCLL)毯子用作共晶和冷却剂的共晶合金铅锂(PbLi)中的磁流体动力学(MHD)流动和传热研究场景:ITER HH,ITER DT和DEMO。本文着重讨论了重要的毯式可行性问题,例如MHD压降,PbLi泄漏到冷却氦气流中的热泄漏以及绝缘流插入件中和材料界面处的温度分布。两种ITER方案看起来都是可以接受的,即可以轻松满足所有重大限制。在DEMO场景中,导流插件在恶劣条件下运行,导致插件中的高温下降以及热PbLi和铁素体结构之间的界面温度很高,可能会超过允许的材料极限。

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