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Integration of spatially variable riverbed hydraulic conductivity from Electrical Resistivity Tomography (ERT) and Induced Polarization (IP) into a groundwater flow model using multiple-point geostatistics

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Chicago
Huysmans, Marijke, Gert Ghysels, Sien Benoit, Kevin Gommers, Thomas Hermans, and Frédéric Nguyen. 2018. “Integration of Spatially Variable Riverbed Hydraulic Conductivity from Electrical Resistivity Tomography (ERT) and Induced Polarization (IP) into a Groundwater Flow Model Using Multiple-point Geostatistics.” In Computational Methods in Water Resources, Abstracts.
APA
Huysmans, Marijke, Ghysels, G., Benoit, S., Gommers, K., Hermans, T., & Nguyen, F. (2018). Integration of spatially variable riverbed hydraulic conductivity from Electrical Resistivity Tomography (ERT) and Induced Polarization (IP) into a groundwater flow model using multiple-point geostatistics. Computational Methods in Water Resources, Abstracts. Presented at the Computational Methods in Water Resources XXII (CMWR 2018).
Vancouver
1.
Huysmans M, Ghysels G, Benoit S, Gommers K, Hermans T, Nguyen F. Integration of spatially variable riverbed hydraulic conductivity from Electrical Resistivity Tomography (ERT) and Induced Polarization (IP) into a groundwater flow model using multiple-point geostatistics. Computational Methods in Water Resources, Abstracts. 2018.
MLA
Huysmans, Marijke, Gert Ghysels, Sien Benoit, et al. “Integration of Spatially Variable Riverbed Hydraulic Conductivity from Electrical Resistivity Tomography (ERT) and Induced Polarization (IP) into a Groundwater Flow Model Using Multiple-point Geostatistics.” Computational Methods in Water Resources, Abstracts. 2018. Print.
@inproceedings{8564645,
  author       = {Huysmans, Marijke and Ghysels, Gert and Benoit, Sien  and Gommers, Kevin and Hermans, Thomas and Nguyen, Fr{\'e}d{\'e}ric},
  booktitle    = {Computational Methods in Water Resources, Abstracts},
  language     = {eng},
  location     = {Saint-Malo, France},
  title        = {Integration of spatially variable riverbed hydraulic conductivity from Electrical Resistivity Tomography (ERT) and Induced Polarization (IP) into a groundwater flow model using multiple-point geostatistics},
  year         = {2018},
}