globalchange  > 气候变化事实与影响
DOI: 10.5194/hess-18-4349-2014
Scopus记录号: 2-s2.0-84908682158
论文题名:
Large-scale 3-D modeling by integration of resistivity models and borehole data through inversion
作者: Foged N; , Marker P; A; , Christansen A; V; , Bauer-Gottwein P; , Jørgensen F; , Høyer A; -S; , Auken E
刊名: Hydrology and Earth System Sciences
ISSN: 10275606
出版年: 2014
卷: 18, 期:11
起始页码: 4349
结束页码: 4362
语种: 英语
英文摘要: We present an automatic method for parameterization of a 3-D model of the subsurface, integrating lithological information from boreholes with resistivity models through an inverse optimization, with the objective of further detailing of geological models, or as direct input into groundwater models. The parameter of interest is the clay fraction, expressed as the relative length of clay units in a depth interval. The clay fraction is obtained from lithological logs and the clay fraction from the resistivity is obtained by establishing a simple petrophysical relationship, a translator function, between resistivity and the clay fraction. Through inversion we use the lithological data and the resistivity data to determine the optimum spatially distributed translator function. Applying the translator function we get a 3-D clay fraction model, which holds information from the resistivity data set and the borehole data set in one variable. Finally, we use k-means clustering to generate a 3-D model of the subsurface structures. We apply the procedure to the Norsminde survey in Denmark, integrating approximately 700 boreholes and more than 100 000 resistivity models from an airborne survey in the parameterization of the 3-D model covering 156 km2. The final five-cluster 3-D model differentiates between clay materials and different high-resistivity materials from information held in the resistivity model and borehole observations, respectively.
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/78090
Appears in Collections:气候变化事实与影响

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作者单位: HydroGeophysics Group, Department of Geoscience, Aarhus University, Denmark; Department of Environmental Engineering, Technical University of Denmark, Denmark; Geological Survey of Denmark and Greenland, Groundwater and Quaternary Geology Mapping, Denmark

Recommended Citation:
Foged N,, Marker P,A,et al. Large-scale 3-D modeling by integration of resistivity models and borehole data through inversion[J]. Hydrology and Earth System Sciences,2014-01-01,18(11)
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