891 to 900 of 1,740 Results
Oct 10, 2021 - Surface roughness effect: Subpore-scale trapping mechanisms following imbibition
Sun, Zhonghao; Mehmani, Ayaz; Torres-Verdín, Carlos, 2021, "Data for figures", https://doi.org/10.18738/T8/IT3CTN, Texas Data Repository, V1
Datasets for figure 5c, 8a, 9b, 10b Figure 5c: Comparison of surface profiles along the line AB in (a) before (blue line) and after (red line) imbibition of liquid. Figure 8a: Relationship between capillary number and trapped air saturation. The data point at Ca = 6.2 x10-5 is sp... |
Oct 10, 2021 - Surface roughness effect: Subpore-scale trapping mechanisms following imbibition
Sun, Zhonghao; Mehmani, Ayaz; Torres-Verdín, Carlos, 2021, "Surface profile--figure 2b", https://doi.org/10.18738/T8/Z9LGCY, Texas Data Repository, V1
Surface profile measurements for Figure 2b. Need to be opened by MultifileAnalyzer, Keyence |
Oct 10, 2021 - Surface roughness effect: Subpore-scale trapping mechanisms following imbibition
Sun, Zhonghao; Mehmani, Ayaz; Torres-Verdín, Carlos, 2021, "Spontaneous imbibition measurements: images", https://doi.org/10.18738/T8/ZYNCVO, Texas Data Repository, V1
Experimental images to generate figure 10b |
Oct 10, 2021 - Surface roughness effect: Subpore-scale trapping mechanisms following imbibition
Sun, Zhonghao, 2021, "Surface profile--Figure 11a", https://doi.org/10.18738/T8/67AEW2, Texas Data Repository, V1
Surface profile for Figure 11a, need to be opened with MultiFileAnalyzer, Keyence. |
Oct 10, 2021 - Data for Pore-Scale Investigation of the Electrical Resistivity of Saturated Porous Media: Flow Patterns and Porosity Efficiency
Sun, Zhonghao; Mehmani, Ayaz; Torres-Verdín, Carlos, 2021, "Datasets for figures", https://doi.org/10.18738/T8/RUEZQV, Texas Data Repository, V1, UNF:6:PYcXr45d4euHP+8LZi7nbw== [fileUNF]
Datasets for figure 2--two-pore model Datasets for figures 5 & 9 --experiments Datasets for figures 3, 6, 7, 8, & 10 --simulations Datasets for figures 11 & 12 --discussion |
Oct 10, 2021 - Data for Pore-Scale Investigation of the Electrical Resistivity of Saturated Porous Media: Flow Patterns and Porosity Efficiency
Sun, Zhonghao, 2021, "Pore network and flow pattern--figure 3", https://doi.org/10.18738/T8/R4ZSCX, Texas Data Repository, V1
Pore network and flow pattern presented in figure 3 |
Oct 10, 2021 - Data for Pore-Scale Investigation of the Electrical Resistivity of Saturated Porous Media: Flow Patterns and Porosity Efficiency
Sun, Zhonghao, 2021, "Pore network and flow pattern--figure 6", https://doi.org/10.18738/T8/DOPVBK, Texas Data Repository, V1
Pore network and flow pattern presented in figure 6 |
Oct 10, 2021 - Data for Pore-Scale Investigation of the Electrical Resistivity of Saturated Porous Media: Flow Patterns and Porosity Efficiency
Sun, Zhonghao, 2021, "Pore network and flow pattern--figure 7", https://doi.org/10.18738/T8/29NLUW, Texas Data Repository, V1
Pore network and flow pattern presented in figure 7 |
Oct 10, 2021 - Data for Pore-Scale Investigation of the Electrical Resistivity of Saturated Porous Media: Flow Patterns and Porosity Efficiency
Sun, Zhonghao, 2021, "Pore network and flow pattern--figure 10", https://doi.org/10.18738/T8/I0U3OP, Texas Data Repository, V1
Pore network and flow pattern presented in figure 10 |
Oct 10, 2021
Datasets for "Pore-Scale Investigation of the Electrical Resistivity of Saturated Porous Media: Flow Patterns and Porosity Efficiency" submitted to Journal of Geophysical Research: Solid Earth |