代表性论文
1. Z. Wang*. A fully Eulerian multiphysics model for pressure solution. Advances in Water Resources 211: 105252, 2026.
2. Z. Wang*, B. Gilbert. A unified analytical model for pressure solution with fully coupled diffusion and reaction. Geophysical Research Letters 52(4): e2024GL112975, 2025.
3. Z. Wang*, M. Hu, C. Steefel. Pore-scale modeling of reactive transport with coupled mineral dissolution and precipitation. Water Resources Research 60: e2023WR036122, 2024.
4. Z. Wang, I. Battiato*. A deep learning upscaling framework: reactive transport and mineral precipitation in fracture-matrix systems. Advances in Water Resources 183:104588, 2024.
5. Z. Wang, I. Battiato*. Upscaling reactive transport and clogging in shale microcracks by deep learning. Water Resources Research 57: e2020WR029125, 2021.
6. Z. Wang, I. Battiato*. Patch‐based multiscale algorithm for flow and reactive transport in fracture-microcrack systems in shales. Water Resources Research 56: e2019WR025960, 2020.
7. Z. Wang, R. Fink, A. Amann-Hildenbrand, B. Krooss, M. Wang*. Gas permeability calculation of tight rocks based on laboratory measurements with non-ideal gas slippage and pore-elastic effects considered. International Journal of Rock Mechanics and Mining Sciences 112: 16-24, 2018.
8. Z. Wang, M. Wang*, S. Chen. Coupling of high Knudsen number and non-ideal gas effects in microporous media. Journal of Fluid Mechanics 840: 56-73, 2018.
9. Z. Wang, X. Jin, X. Wang, L. Sun, M. Wang*. Pore-scale geometry effects on gas permeability in shale. Journal of Natural Gas Science and Engineering 34: 948-957, 2016.
10. Z. Wang, Y. Guo, M. Wang*. Permeability of high-Kn real gas flow in shale and production prediction by pore-scale modeling. Journal of Natural Gas Science and Engineering 28: 328-337, 2016.