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Research on energy conversion efficiency of helical coil electromagnetic launcher

机译:螺旋线圈电磁发射器能量转换效率研究

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摘要

During operation of electromagnetic launcher (EML), the electric energies from power supply are mainly converted to the magnetic energy in the launcher, joule heat loss and the kinetic energy of armature. The magnetic energy in helical coil electromagnetic launcher (HEML) are not only consumed by the muzzle arc but also lost in commutation process. The magnetic energy loss in commutation process, joule heat loss in armature acceleration process and the cause of arc are investigated in the present article. The kinetic energy conversion efficiency of HEML, typically greater than 50%(L′/M ′< 1) which explains the high efficiency of HEML, is obtained. It is related to the length of the launcher, the greater the length, the higher the efficiency. The energy conversion efficiencies of HEML under zero current and constant current exiting modes are deduced. The longer acceleration length, higher current and mutual inductance gradient result in higher velocity, less joule heat loss and higher efficiency. The mutual inductance gradient and energized coil resistance are important to the energy conversion efficiency.
机译:在电磁发射器(EML)运行期间,来自电源的电能主要转换为发射器中的磁能,焦耳热损耗和电枢动能。螺旋线圈电磁发射器(HEML)中的磁能不仅被枪口电弧消耗,而且在换向过程中也损失了。本文研究了换向过程中的磁能损失,电枢加速过程中的焦耳热损失以及电弧的产生原因。获得了HEML的动能转换效率,通常大于50%(L'/ M'<1),这说明了HEML的高效率。与发射器的长度有关,长度越大,效率越高。推导了零电流恒流模式下HEML的能量转换效率。较长的加速长度,较高的电流和互感梯度导致较高的速度,较少的焦耳热损耗和较高的效率。互感梯度和通电线圈电阻对能量转换效率很重要。

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