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首页> 外文期刊>Journal of Electromagnetic Analysis and Applications >Pulsed Magnetic Field Measurement Outside Finite Length Solenoid: Experimental Results & Mathematical Verification
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Pulsed Magnetic Field Measurement Outside Finite Length Solenoid: Experimental Results & Mathematical Verification

机译:有限长度螺线管外部的脉冲磁场测量:实验结果和数学验证

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The paper deals with magnetic field mapping outside a finite length solenoid electromagnet, by an in-house designed and calibrated inductive pick-up or search coil. The search coil is calibrated in a unique methodology based on the azimuthal magnetic field component generated by a straight wire. This unique calibration technique helps us to avoid additional circuitry to integrate the signal obtained from search coil. The methodology proves advantageous in diffusion, implosion studies where the signal frequency changes with dimension and material of experimental job-piece (hollow metal tube). Remedial measures have been taken to avoid electrostatic capacitive pick-up (which eventually exacerbates with integration) keeping measurement simple and accurate. The experimentally measured field values have also been compared with electromagnetic field results obtained from mathematical calculations and finite element based simulations. Two different mathematical approaches have been demonstrated for field computation based on Biot-Savart Law. Both the methods have taken into account the exact geometry of the solenoid, including the inter-turn gaps. The methods use appropriate combination of closed-form mathematical expression and numerical integration techniques and are capable of determining all the vector components of magnetic field anywhere around the finite length solenoid. The mathematical computations are equally significant contributions in the paper especially because exact determination of magnetic fields outside finite length solenoids has not been discussed in sufficient specific details in already existing literature. The mathematical computations, finite element simulations and experimental verification together provide a holistic solution to magnetic field determination problems in pulse power applications that have not been discussed in available literature or books in specific details.
机译:本文通过内部设计和校准的感应式拾音器或搜索线圈来处理有限长度螺线管电磁铁外部的磁场映射。基于由直线产生的方位磁场分量,以独特的方法对搜索线圈进行校准。这种独特的校准技术可帮助我们避免额外的电路来整合从搜索线圈获得的信号。该方法在扩散,内爆研究中被证明是有利的,在这些研究中,信号频率随实验工件(空心金属管)的尺寸和材料而变化。已经采取了补救措施来避免静电电容的拾取(最终会加剧集成),从而使测量变得简单而准确。实验测量的场值也已与从数学计算和基于有限元模拟获得的电磁场结果进行了比较。已经证明了两种不同的数学方法用于基于Biot-Savart定律的现场计算。两种方法都考虑了螺线管的精确几何形状,包括匝间间隙。这些方法使用闭式数学表达式和数值积分技术的适当组合,并且能够确定有限长度螺线管周围任何位置的磁场的所有矢量分量。数学计算在论文中同样具有重要意义,特别是因为有限长度螺线管外部磁场的精确确定尚未在现有文献中进行足够详细的讨论。数学计算,有限元模拟和实验验证共同为脉冲功率应用中的磁场确定问题提供了整体解决方案,在现有文献或书籍中尚未对此进行详细讨论。

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