ISSN 1004-4140
CN 11-3017/P

层状介质中水平磁偶极子电磁场空间分布特征

Electromagnetic Field's Spatial Distribution of a Horizontal Magnetic-dipole in Layered Media

  • 摘要: 针对岩层中介电常数和磁导率随深度变化的情况,给出水平磁偶极子源电磁场的水平或垂直空间分布特征及相应的变化规律。采用Kong给出的汉克尔(Hankel)J0变换线性滤波器(241点)和汉克尔J1变换线性滤波器(241点)算法,选用均匀大地和两层地电模型,讨论介质的介电常数和磁导率变化时的水平磁偶极子电磁场空间分布特征。计算结果表明,磁场的Hx分量幅值与磁导率反相关;磁场Hz和电场Ey分量随着磁导率的增大而增大;低频电磁测深中介电常数变化时对电磁场基本没有影响。

     

    Abstract: In allusion to the case that dielectric constant and magnetic permeability vary with the depth of rock stratum, this paper presents the horizontal or vertical spatial distribution feature and corresponding variation law of electromagnetic field of a horizontal magnetic-dipole source. Taking advantage of the algorithm of Hankel J0 transform linear filters (241 points) and Hankel J1 transform linear filters (241 points) suggested by Kong, we discuss the spatial distribution characteristic of a horizontal magnetic-dipole source as media dielectric constant and magnetic permeability make changes in the homogeneous earth and two layers geoelectric structure. The result indicates a negative correlation between the amplitude of magnetic field component Hx and magnetic permeability, while a positive correlation between Hz (Ey) and magnetic permeability; meanwhile, the change of dielectric constant scarcely affects magnetic field in the low frequency electromagnetic sounding.

     

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