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It is demonstrated that coil geometries more closely encompassing the sample shape, hence possessing wire windings located close the sample, produce superior coil performances.
The coil performances can be made clearer with the assistance of characteristic equations at the coil design stage and, further, the optimum coil design will be made possible.
This paper investigated the quantitative current transport performance and thermal behaviour of a high temperature superconducting (HTS) coil, and the effect of the critical current inhomogeneity along the longitudinal direction of HTS tapes on the coil performances.
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The coil was compared to existing designs, in terms of coil performance and eddy current effects.
Gradient coil performance must be maximised within temperature limits imposed by safety and system requirements.
Transmit coil performance is a key determinant of TRASE image quality.
Accordingly, coil performance affects strongly the quality of the obtained data and images.
This raises technical difficulties for maintaining a high gradient coil performance.
Also, the coiling parameters, such as strip thickness, coiling tension and necking critical pressure, affecting the coil performance are investigated.
To assure optimal simulations and to evaluate coil performance, S-parameters were simulated and compared with experimentally data.
To estimate coil performance, we calculated the stored energy density, whose denominator is the increased coil volume.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com