Hari Viswanathan
flowchart A[Hari Viswanathan] AC["Associated Concepts (21)"] AW["Authored Works (10)"] CA["Linked Co-Authors (10)"] CI["Linked Collaborating Institutions (11)"] A== dcterms:relation ==>AC AW== author ==>A AW== author ==>CA AW== affil ==>CI click AC "#associated-concepts" click AW "#authored-works" click CA "#co-authors" click CI "#collaborating-institutions" NI["add incoming edge"] NO["add outgoing edge"] NI-- ? -->A A-- ? -->NO click NI "#add-incoming-edge" click NO "#add-outgoing-edge" style NI stroke-width:2px,stroke-dasharray: 5 5 style NO stroke-width:2px,stroke-dasharray: 5 5
- ORCiD
- https://orcid.org/0000-0002-1178-9647
- OpenAlex ID
- https://openalex.org/A5073783714 (API record)
Associated Concepts [?]
- Engineering
- Geology
- Physics
- Biology
- Chemistry
- Materials science
- Quantum mechanics
- Geotechnical engineering
- Computer science
- Mathematics
- Organic chemistry
- Paleontology
- Composite material
- Thermodynamics
- Mechanics
- Environmental science
- Petroleum engineering
- Geography
- Waste management
- Ecology
- Geometry
Authored Works
sorted by decreasing year, and then by display-name
- Uncertainty Quantification of Gas Transport in Fractured Rocks Resulting from Underground Nuclear Explosions: Exploring the Damage-Permeability Relationship
- SMARTFracs: Recent advances in fracture characterization
- Prediction of Concentration Fields in Porous Media Using a Multiscale Neural Network
- Physics-Informed Machine Learning with Differentiable Programming for Heterogeneous Underground Reservoir Pressure Management
- Embedding Hard Physical Constraints in Convolutional Neural Networks for Improved Electric Current Prediction in Porous Media
- A Geo-structurally Based Correction Factor for Apparent Dissolution Rates in Fractured Media
- Scale-bridging using machine-learning: nanoconfinement effects in porous media
- Learning from a Big Dataset of Digital Rock Simulations
- Combined Effects of Stress and Variable Network Properties in Discrete Fracture Networks on Flow and Transport
- A framework for data-driven solution of linear poroelasticity using continuous conditional generative adversarial networks
Linked Co-Authors
- Aleksandra Pachalieva
- Dylan R. Harp
- Elizabeth Andrews
- Eric Guiltinan
- Hongkyu Yoon
- J. William Carey
- James E. McClure
- Jeffrey D. Hyman
- Maša Prodanović
- Satish Karra
Linked Collaborating Institutions
- Colorado School of Mines
- Cornell University, New York
- Imperial College, London
- Lawrence Livermore National Laboratory, California
- Los Alamos National Laboratory, New Mexico
- Sandia National Laboratories, New Mexico
- Technical University of Turin, Italy
- University of Oklahoma, Norman
- University of Puerto Rico, Mayaguez
- University of Texas, Austin
- Virginia Polytechnic Institute and State University
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