Dissolution-Assisted Pattern Formation During Olivine Carbonation H. Lisabeth, Zhu, W. , Xing, T. , and De Andrade, V. , “Dissolution-Assisted Pattern Formation During Olivine Carbonation”, Geophysical Research Letters, vol. 44, no. 19, pp. 9622 - 9631, 2017. Read more about Dissolution-Assisted Pattern Formation During Olivine CarbonationGoogle ScholarDOI
Experimental evidence of reaction-induced fracturing during olivine carbonation W. Zhu, Fusseis, F. , Lisabeth, H. , Xing, T. , Xiao, X. , De Andrade, V. , and Karato, S. -ichiro, “Experimental evidence of reaction-induced fracturing during olivine carbonation”, Geophysical Research Letters, vol. 43, no. 18, pp. 9535 - 9543, 2016. Read more about Experimental evidence of reaction-induced fracturing during olivine carbonationGoogle ScholarDOI
Strengthening Effect of High Pore Pressure on the Frictional Behavior of Serpentine Gouge T. Xing, Zhu, W. , French, M. E. , and Belzer, B. , “Strengthening Effect of High Pore Pressure on the Frictional Behavior of Serpentine Gouge”, American Geophysical Union, Fall Meeting. American Geophysical Union, Washington, DC, 2018. Read more about Strengthening Effect of High Pore Pressure on the Frictional Behavior of Serpentine GougeGoogle Scholar
Generating porosity during olivine carbonation via dissolution channels and expansion cracks T. Xing, Zhu, W. , Fusseis, F. , and Lisabeth, H. , “Generating porosity during olivine carbonation via dissolution channels and expansion cracks”, Solid Earth, vol. 9, no. 4, pp. 879 - 896, 2018. Read more about Generating porosity during olivine carbonation via dissolution channels and expansion cracksGoogle ScholarDOI
Hydrogeologic modeling supported by geologic mapping in three dimensions: Do the details really matter? C. R. Medina, Letsinger, S. L. , and Olyphant, G. A. , “Hydrogeologic modeling supported by geologic mapping in three dimensions: Do the details really matter?”, in Quaternary Glaciation of the Great Lakes Region: Process, Landforms, Sediments, and Chronology, Geological Society of America, 2018. Read more about Hydrogeologic modeling supported by geologic mapping in three dimensions: Do the details really matter?Google ScholarDOI
Pore system characterization of Cambrian-Ordovician carbonates using a new mercury porosimetry-based petrofacies classification system: application to carbon sequestration reservoirs C. R. Medina, Mastalerz, M. , and Rupp, J. A. , “Pore system characterization of Cambrian-Ordovician carbonates using a new mercury porosimetry-based petrofacies classification system: application to carbon sequestration reservoirs”, Greenhouse Gases: Science and Technology, vol. 8, no. 5, pp. 932 - 953, 2018. Read more about Pore system characterization of Cambrian-Ordovician carbonates using a new mercury porosimetry-based petrofacies classification system: application to carbon sequestration reservoirsGoogle ScholarDOI
Evaluation of Geologic Carbon Storage Resource Estimates (SREs) of Cambrian Ordovician Units within the CarbonSAFE Prefeasibility Study Region Subtasks 4.2 and 4.3 – Topical Report C. R. Medina, Ellett, K. , and Rupp, J. , “Evaluation of Geologic Carbon Storage Resource Estimates (SREs) of Cambrian Ordovician Units within the CarbonSAFE Prefeasibility Study Region Subtasks 4.2 and 4.3 – Topical Report”. Indiana Geological & Water Survey (IGWS), 2019. Read more about Evaluation of Geologic Carbon Storage Resource Estimates (SREs) of Cambrian Ordovician Units within the CarbonSAFE Prefeasibility Study Region Subtasks 4.2 and 4.3 – Topical ReportGoogle Scholar
Experimental investigation on the effective pressure coefficient for permeability and deformation in the tight sandstone W. Xiao, Zhang, J. , Bernabe, Y. , Mok, U. , Evans, B. , Zhao, J. , and Zheng, L. , “Experimental investigation on the effective pressure coefficient for permeability and deformation in the tight sandstone”, in American Geophysical Union Fall Meeting, Washington, DC, 2018. Read more about Experimental investigation on the effective pressure coefficient for permeability and deformation in the tight sandstoneGoogle Scholar
Klinkenberg Effect and Effective Pressure for Gas Permeability of Tight Sandstones W. Xiao, Bernabe, Y. , Evans, B. , Mok, U. , Zhao, J. , Ren, X. , and Chen, M. , “Klinkenberg Effect and Effective Pressure for Gas Permeability of Tight Sandstones”, Journal of Geophysical Research: Solid Earth, vol. 124, no. 281, pp. 1412 - 1429, 2019. Read more about Klinkenberg Effect and Effective Pressure for Gas Permeability of Tight SandstonesGoogle ScholarDOI
Stress‐Induced Anomalous Transport in Natural Fracture Networks P. K. Kang, Lei, Q. , Dentz, M. , and Juanes, R. , “Stress‐Induced Anomalous Transport in Natural Fracture Networks”, Water Resources Research, no. 55, pp. 4163-4185, 2019. Read more about Stress‐Induced Anomalous Transport in Natural Fracture NetworksGoogle ScholarDOI