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Numerical analysis of the electromagnetic force for design optimization of a rectangular direct current electromagnetic pump

机译:矩形直流电磁泵设计优化电磁力的数值分析

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摘要

The force of a direct current (DC) electromagnetic pump used to transport liquid lithium was analyzed to optimize its geometrical and electrical parameters by numerical simulation. In a heavy-ion accelerator, which is being developed in Korea, a liquid lithium film is utilized for its high charge-stripping efficiency for heavy ions of uranium. A DC electromagnetic pump with a flow rate of 6 cm3/s and a developed pressure of 1.5 MPa at a temperature of 200°C was required to circulate the liquid lithium to form liquid lithium films. The current and magnetic flux densities in the flow gap, where a Sm2Co17 permanent magnet was used to generate a magnetic field, were analyzed for the electromagnetic force distribution generated in the pump. The pressure developed by the Lorentz force on the electromagnetic force was calculated by considering the electromotive force and hydraulic pressure drop in the narrow flow channel. The opposite force at the end part due to the magnetic flux density in the opposite direction depended on the pump geometrical parameters such as the pump duct length and width that defines the rectangular channels in the nonhomogeneous distributions of the current and magnetic fields. Keywords: Current Distribution, Developed Pressure, Heavy-ion Accelerator, Liquid Lithium Film, Magnetic Flux Density Distribution, Rectangular DC Electromagnetic Pump
机译:分析了用于运输液体锂的直流(DC)电磁泵的力通过数值模拟优化其几何和电气参数。在韩国开发的重离子促进剂中,液态锂膜用于其铀的重离子的高电荷剥离效率。需要6cm3 / s的流速的直流电磁泵和200℃的温度为1.5MPa的效率,以循环液体锂以形成液态锂膜。分析了流动间隙中的电流和磁通密度,其中使用SM2CO17永磁体产生磁场,用于泵中产生的电磁力分布。通过考虑窄流动通道中的电动势和液压下降,计算由洛伦兹力对电磁力产生的压力。端部的相反力由于沿相反方向上的磁通密度依赖于泵几何参数,例如泵管道长度和宽度,该泵管道长度和宽度限定当前和磁场的非均匀分布中的矩形通道。关键词:电流分布,发育压力,重离子促进剂,液态锂膜,磁通密度分布,矩形直流电磁泵

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