Hari Viswanathan
Cited by
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Shale gas and non-aqueous fracturing fluids: Opportunities and challenges for supercritical CO2
RS Middleton, JW Carey, RP Currier, JD Hyman, Q Kang, S Karra, ...
Applied Energy 147, 500-509, 2015
dfnWorks: A discrete fracture network framework for modeling subsurface flow and transport
JD Hyman, S Karra, N Makedonska, CW Gable, SL Painter, ...
Computers & Geosciences 84, 10-19, 2015
Nanoscale simulation of shale transport properties using the lattice Boltzmann method: permeability and diffusivity
L Chen, L Zhang, Q Kang, HS Viswanathan, J Yao, W Tao
Scientific reports 5 (1), 8089, 2015
An Integrated Framework for Optimizing CO2 Sequestration and Enhanced Oil Recovery
Z Dai, R Middleton, H Viswanathan, J Fessenden-Rahn, J Bauman, ...
Environmental Science & Technology Letters 1 (1), 49-54, 2014
The shale gas revolution: Barriers, sustainability, and emerging opportunities
RS Middleton, R Gupta, JD Hyman, HS Viswanathan
Applied energy 199, 88-95, 2017
CO2 Accounting and Risk Analysis for CO2 Sequestration at Enhanced Oil Recovery Sites
Z Dai, H Viswanathan, R Middleton, F Pan, W Ampomah, C Yang, W Jia, ...
Environmental science & technology 50 (14), 7546-7554, 2016
Pore scale modeling of reactive transport involved in geologic CO2 sequestration
Q Kang, PC Lichtner, HS Viswanathan, AI Abdel-Fattah
Transport in porous media 82 (1), 197-213, 2010
Why fracking works
ZP Bažant, M Salviato, VT Chau, H Viswanathan, A Zubelewicz
Journal of Applied Mechanics 81 (10), 101010, 2014
The cross-scale science of CO 2 capture and storage: from pore scale to regional scale
RS Middleton, GN Keating, PH Stauffer, AB Jordan, HS Viswanathan, ...
Energy & Environmental Science 5 (6), 7328-7345, 2012
Development of a Hybrid Process and System Model for the Assessment of Wellbore Leakage at a Geologic CO2 Sequestration Site
HS Viswanathan, RJ Pawar, PH Stauffer, JP Kaszuba, JW Carey, ...
Environmental science & technology 42 (19), 7280-7286, 2008
CO2 as a fracturing fluid: Potential for commercial-scale shale gas production and CO2 sequestration
R Middleton, H Viswanathan, R Currier, R Gupta
Energy Procedia 63, 7780-7784, 2014
Hydraulic fracturing fluid migration in the subsurface: A review and expanded modeling results
DT Birdsell, H Rajaram, D Dempsey, HS Viswanathan
Water Resources Research 51 (9), 7159-7188, 2015
A system model for geologic sequestration of carbon dioxide
PH Stauffer, HS Viswanathan, RJ Pawar, GD Guthrie
Environmental science & technology 43 (3), 565-570, 2009
Fracture-permeability behavior of shale
JW Carey, Z Lei, E Rougier, H Mori, H Viswanathan
Journal of unconventional oil and gas resources 11, 27-43, 2015
Pore-scale study of dissolution-induced changes in permeability and porosity of porous media
Q Kang, L Chen, AJ Valocchi, HS Viswanathan
Journal of Hydrology 517, 1049-1055, 2014
Understanding hydraulic fracturing: a multi-scale problem
JD Hyman, J Jiménez-Martínez, HS Viswanathan, JW Carey, ML Porter, ...
Philosophical Transactions of the Royal Society A: Mathematical, Physical …, 2016
Fracture size and transmissivity correlations: Implications for transport simulations in sparse three‐dimensional discrete fracture networks following a truncated power law …
JD Hyman, G Aldrich, H Viswanathan, N Makedonska, S Karra
Water Resources Research 52 (8), 6472-6489, 2016
Effectiveness of supercritical-CO2 and N2 huff-and-puff methods of enhanced oil recovery in shale fracture networks using microfluidic experiments
P Nguyen, JW Carey, HS Viswanathan, M Porter
Applied energy 230, 160-174, 2018
Generalized lattice Boltzmann model for flow through tight porous media with Klinkenberg's effect
L Chen, W Fang, Q Kang, J De’Haven Hyman, HS Viswanathan, WQ Tao
Physical Review E 91 (3), 033004, 2015
The effect of wettability heterogeneity on relative permeability of two‐phase flow in porous media: A lattice Boltzmann study
J Zhao, Q Kang, J Yao, H Viswanathan, R Pawar, L Zhang, H Sun
Water Resources Research 54 (2), 1295-1311, 2018
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