The THELMA code has been developed with the aim of simulating the main aspects of superconductors to be used in the coils of the International Thermonuclear Experimental Reactor (ITER). An application of the code is presented here, where THELMA is used to simulate a single strand by considering, as cable elements, groups of superconducting (SC) filaments and the corresponding portion of the resistive matrix. This approach is used to reproduce the voltage-current characteristic of the Furukawa strand measured at JAERI. Attention is focused particularly on the effect of the applied mechanical load on the critical current, which is considered a relevant item in the explanation of the degradation of the coil performance observed in several ITER Model and Insert Coil experiments. The longitudinal strain of the SC filaments is calculated by means of a composite beam model of the strand, taking into account the non-linear, temperature-dependent material characteristics of the components. The whole load history is simulated, computing first he thermal strain due to cool-down, and then the mechanical one due to the bending at 4.2 K.

THELMA code analysis of bronze route Nb3Sn strand bending effect on Ic

BOSO, DANIELA;SCHREFLER, BERNHARD;
2006

Abstract

The THELMA code has been developed with the aim of simulating the main aspects of superconductors to be used in the coils of the International Thermonuclear Experimental Reactor (ITER). An application of the code is presented here, where THELMA is used to simulate a single strand by considering, as cable elements, groups of superconducting (SC) filaments and the corresponding portion of the resistive matrix. This approach is used to reproduce the voltage-current characteristic of the Furukawa strand measured at JAERI. Attention is focused particularly on the effect of the applied mechanical load on the critical current, which is considered a relevant item in the explanation of the degradation of the coil performance observed in several ITER Model and Insert Coil experiments. The longitudinal strain of the SC filaments is calculated by means of a composite beam model of the strand, taking into account the non-linear, temperature-dependent material characteristics of the components. The whole load history is simulated, computing first he thermal strain due to cool-down, and then the mechanical one due to the bending at 4.2 K.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/2472176
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