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兵工学报 ›› 2025, Vol. 46 ›› Issue (5): 240577-.doi: 10.12382/bgxb.2024.0577

• • 上一篇    

运动磁体感应电场特性分析

刘瑞杰1, 张伽伟2,*(), 谢涛涛2   

  1. 1 海军研究院, 北京 100161
    2 海军工程大学, 湖北 武汉 430033
  • 收稿日期:2024-07-12 上线日期:2025-05-07
  • 通讯作者:
  • 基金资助:
    国家重点研发计划项目(2024YFF0727000)

Characteristic Analysis of Electric Field Induced by Moving Magnetic Object

LIU Ruijie1, ZHANG Jiawei2,*(), XIE Taotao2   

  1. 1 Naval Research Academy, Beijing 100161, China
    2 Naval University of Engineering, Wuhan 430033, Hubei, China
  • Received:2024-07-12 Online:2025-05-07

摘要:

为分析运动磁性物体产生的感应电场,改进现有模型的不足,提出一种更适用于任意方向运动的目标感应电场计算模型。对比现有运动磁体感应电场模型的适用范围及局限性,以磁偶极子的矢量磁位模型为理论基础,推导出运动磁体感应电场的数学模型。通过理论分析和仿真计算验证该模型的适用性,并结合实船磁场特性进行实例计算。理论分析和仿真计算结果表明,该模型适用于沿任意方向运动的磁性物体感应电场计算,且其推导和计算过程较基于库伦定律和毕奥-萨伐定律的传统模型更为简洁。实例计算结果表明,磁性船舶运动产生的感应电场具有明显的区域特性,电场强度量级可达mV/m,是船舶静电场的重要组成部分。新提出的感应电场模型为运动磁性物体的电场探测提供了更准确的理论支持,可有效应用于船舶电场的探测与分析。

关键词: 运动磁性物体, 磁偶极子, 感应电场, 矢量磁位, 船舶, 静电场

Abstract:

To analyze the induced electric fields generated by moving magnetic objects and address the limitations of existing models, this paper proposes a novel model that is more suitable for calculating the induced electric fields by the objects moving in any direction. The applicabilities and limitations of current models for induced electric fields from moving magnetic objects are evaluated. On the basis of evaluation, a mathematical model for the induced electric fields from moving magnetic objects is derived by using a vector potential model of magnetic dipole as the theoretical foundation. The proposed model is verified through theoretical analysis and simulating calculations. And it is further demonstrated through the case studies involving the magnetic field characteristics of actual ships. The results show that the proposed model is suitable for calculating the electric fields induced by the magnetic objects moving in any direction and is more concise in derivation and calculation compared to the traditional models based on Coulomb’s law and the Biot-Savart law. Case study results indicate that the induced electric fields generated by the motion of magnetic ships have distinct regional characteristics, with the electric field strength reaching mV/m level, which constitutes a significant component of the ship’s static electric field. The induced electric field model proposed in this study provides a more accurate theoretical basis for the detection of electric fields from moving magnetic objects and can be effectively applied to the detection and analysis of ship electric fields.

Key words: moving magnetic object, magnetic dipole, induced electric field, magnetic vector potential, ship, static electric field

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