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首页> 外文期刊>International Journal of Electrical and Computer Engineering >Analysis of Inductance Gradient and Current Density Distribution Over Different Cross-section of Rails
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Analysis of Inductance Gradient and Current Density Distribution Over Different Cross-section of Rails

机译:不同截面钢轨电感梯度和电流密度分布分析

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摘要

In a rail gun system the armature accelerated due to the Lorentz force caused by the current which is diffused in to the rails. The entire system depends on the inductance gradient of the rail which is directly connected to the accelerating performance and efficiency of railgun. Hence, the exact analysis of inductance gradient is extremely significant for the railgun design. Since short duration of current pulse is applied to the rails determination of inductance gradient is very difficult. The inductance gradient varies with the system parameters such as the dimensions of the rails and armature. And it can be calculated with analytical method and numerical methods. In this paper inductance gradient of the rail has been computed and compared with the different rail models using Ansoft Maxwell Eddy current solver which uses finite element technique to calculate the field distribution in a space. The current density, magnetic flux density, repulsive force acting on the rails also computed to analyze the performance of rail gun.
机译:在喷枪系统中,电枢由于洛伦兹力而加速,而洛伦兹力是由电流扩散到铁轨中引起的。整个系统取决于轨道的电感梯度,该电感梯度直接与轨道枪的加速性能和效率相关。因此,对电感梯度的精确分析对于轨道炮的设计极为重要。由于将短时间的电流脉冲施加到导轨上,因此电感梯度的确定非常困难。电感梯度随系统参数(例如,轨道和电枢的尺寸)而变化。并且可以用解析方法和数值方法来计算。在本文中,使用Ansoft Maxwell涡流解算器计算了钢轨的电感梯度,并将其与不同的钢轨模型进行了比较,后者使用有限元技术计算空间中的场分布。还计算了作用在轨道上的电流密度,磁通密度,排斥力,以分析轨道枪的性能。

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