Borehole-GPR numerical simulation of full wave field based on convolutional perfect matched layer bo

来源 :Journal of Central South University | 被引量 : 0次 | 上传用户:cchomonkey
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The absorbing boundary is the key in numerical simulation of borehole radar.Perfect match layer(PML) was chosen as the absorbing boundary in numerical simulation of GPR.But CPML(convolutional perfect match layer) approach that we have chosen has the advantage of being media independent.Beginning with the Maxwell equations in a two-dimensional structure,numerical formulas of finite-difference time-domain(FDTD) method with CPML boundary condition for transverse electric(TE) or transverse magnetic(TM) wave are presented in details.Also,there are three models for borehole-GPR simulation.By analyzing the simulation results,the features of targets in GPR are obtained,which can provide a better interpretation of real radar data.The results show that CPML is well suited for the simulation of borehole-GPR. The absorbing boundary is the key in numerical simulation of borehole radar. Perfect match layer (PML) was chosen as the absorbing boundary in numerical simulation of GPR.But CPML (convolutional perfect match layer) approach that we have chosen has the advantage of being media independent.Beginning with the Maxwell equations in a two-dimensional structure, numerical formulas of finite-difference time-domain (FDTD) method with CPML boundary condition for transverse electric (TE) or transverse magnetic (TM) wave are presented in detail. , there are three models for borehole-GPR simulation. Analysis of the simulation results, the features of targets in GPR are obtained, which can provide a better interpretation of real radar data. The results show that CPML is well suited for the simulation of borehole -GPR.
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