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Application of calorimetry to the assessment of the performance of ITER Nb3Sn TF conductor samples in SULTAN tests

机译:量热法在SULTAN测试中评估ITER Nb3Sn TF导体样品性能的应用

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摘要

In the frame of the International Thermonuclear Experimental Reactor (ITER), several short full-size Nb3Sn samples of candidate toroidal field (TF) conductors were tested in 2007 at the SULTAN facility, PSI Villigen, Switzerland, in conditions relevant to the ITER TF (background magnetic field of 10.78 T and transport current of 68 kA). The performance of a SULTAN sample is determined by the current sharing temperature T-CS. This can be obtained in principle from voltage measurements along the conductor sample, but the procedure is not free of issues and ambiguities. Here a complementary approach, based on the calorimetric assessment of the Joule heating due to current sharing, is critically discussed. Suitable algorithms are defined and the respective error bars are estimated, also based on numerical thermal-hydraulic modeling. The calorimetric approach is then applied to assess the performance of the samples tested in 2007 and compared with the results of the standard (electrical) approach.
机译:在国际热核实验堆(ITER)的框架内,2007年在瑞士PSI Villigen的SULTAN设施中,以与ITER TF相关的条件对几个短的全尺寸Nb3Sn候选环形场(TF)导体样品进行了测试( 10.78 T的背景磁场和68 kA的传输电流)。 SULTAN样品的性能取决于当前的共享温度T-CS。原则上,这可以通过沿导体样品的电压测量来获得,但是该过程并非没有问题和模棱两可。在这里,对基于电流共享的焦耳热的量热评估的补充方法进行了讨论。还基于数值热工液压模型定义了合适的算法并估算了相应的误差线。然后将量热法应用于评估2007年测试样品的性能,并将其与标准(电学)法的结果进行比较。

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