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Critical heat flux testing on screw cooling tube made of RAFM-steel F82H for divertor application

机译:在用于分流器的RAFM钢F82H制成的螺旋冷却管上进行临界热通量测试

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Critical heat flux (CHF) testing on a cooling tube with a helical triangular fin on its inner surface, screw tube has been carried out to examine its applicability to divertor of DEMO. In DEMO designs, Reduced Activation Ferritic Martensitic (RAFM) steel, such as F82H, is one of the candidate materials for a cooling structure of PFCs instead of Cu-alloy. As thermal conductivity of F82H is about 10 times smaller than that of Cu-alloy, this study is intended to examine heat removal capability of the screw tube made of F82H. The screw tubes are the screw tubes with M10 of 1.5-mm-pitch. The M10 threads are directly shaped in F82H and OFHC-Cu tubes. Incident CHF (ICHF) of the F82H screw tube is reduced to about half of the OFHC-Cu tube. For instance, ICHF of the F82H tube is 13 MW/m~2 at the flow velocity of 4 m/s and that of the Cu tube is 25 MW/m~2. Numerical analyses indicate that the incident heat flux is highly concentrated for the F82H tube because of its low thermal conductivity. The ratios of the heat flux at the inner surface of the cooling tube to the incident heat flux are around 1.6 for the F82H tube and 1.1 for the Cu tube.
机译:在冷却管的内表面带有螺旋形三角形翅片的临界热通量(CHF)测试中,已经进行了测试,以检查其对DEMO分流器的适用性。在DEMO设计中,降低活化铁素体马氏体(RAFM)钢(例如F82H)是PFC替代铜合金的冷却结构的候选材料之一。由于F82H的导热系数比铜合金的导热系数小10倍左右,因此本研究旨在检查由F82H制成的螺杆管的散热能力。螺纹管是间距为1.5 mm的M10的螺纹管。 M10螺纹直接在F82H和OFHC-Cu管中成型。 F82H螺纹管的入射CHF(ICHF)减少到OFHC-Cu管的一半。例如,F82H管的ICHF在流速为4 m / s时为13 MW / m〜2,而Cu管的ICHF为25 MW / m〜2。数值分析表明,由于F82H的导热系数低,因此入射热通量高度集中。对于F82H管,冷却管内表面的热通量与入射热通量之比约为1.6,对于Cu管,约为1.1。

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