Calculation method of electromagnetic field response of dipole source at arbitrary position under layered geological conditions
An arbitrary-position, layered geology technology, applied in the field of electromagnetic computing, can solve problems such as insufficient calculation accuracy, and achieve the effects of high calculation accuracy, strong practicability, and strict logic
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[0067] Such as figure 1 As shown, a calculation method for the electromagnetic field response of a dipole source at any position under layered geological conditions includes the following steps:
[0068] Step S100: defining each formation according to the position of the dipole source in the layered medium;
[0069] Step S200: orthogonally decomposing the dipole source;
[0070] Step S300: Deriving the Lorentz vector potential expression of the unit dipole source at the measuring point;
[0071] Step S400: Obtain the electromagnetic field expression according to the Lorentz vector potential of the measuring point;
[0072] Step S500: use the Gaussian extrapolation method to calculate the Bessel function integral in the expression, and obtain the numerical solution of the electromagnetic field at the measuring point;
[0073] Step S600: The numerical solution is multiplied by the dipole moment to obtain the electromagnetic field response of the dipole source.
[0074] detai...
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