Lift and drag forces are compared for various null and normal flux superconducting magnet configurations where each coil consists of a pair of infinitely long parallel wires separated by a fixed distance. The nullflux configuration has a minimum in the drag to lift ratio for a particular value of I2/W (I=magnet current, W=vehicle weight) when the vehicle cruises freely at constant speed. This calculation takes into account losses due to non-uniform eddy-current density distribution in the solid track. Results indicate that the null-flux configuration is the most efficient design, followed by the normal-flux, single track configuration. All other schemes are less efficient for a thin track configuration. A general method is outlined for calculating the zero-torque case.
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Hogan et al. (1975) studied this question.
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