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2.5-D DC Resistivity Modeling Considering Flexibility and Accuracy 被引量:1

2.5-D DC Resistivity Modeling Considering Flexibility and Accuracy
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摘要 We highlighted the flexibility of using unstructured mesh together with the local refinement by a resistivity model with complicated topography. The effect of topography is emphasized. Based on this, we calculated a specific class of layered models and found that the accuracy is not always satisfactory by utilizing the standard approach. As an improvement, we employed the layered earth as the reference model to calculate the wavenumbers. The comparison demonstrates that the accuracy is considerably improved by using this enhanced approach. We highlighted the flexibility of using unstructured mesh together with the local refinement by a resistivity model with complicated topography. The effect of topography is emphasized. Based on this, we calculated a specific class of layered models and found that the accuracy is not always satisfactory by utilizing the standard approach. As an improvement, we employed the layered earth as the reference model to calculate the wavenumbers. The comparison demonstrates that the accuracy is considerably improved by using this enhanced approach.
出处 《Journal of Earth Science》 SCIE CAS CSCD 2011年第1期124-130,共7页 地球科学学刊(英文版)
基金 supported by the National High Technology Research and Development Program of China (863 Program) (No. 2007AA06Z134) the National Natural Science Foundation of China (No. 40874072)
关键词 2-D topography 2.5-D DC resistivity modeling layered earth. 2-D topography, 2.5-D DC resistivity modeling, layered earth.
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