Abstract
Orientation and completion for well pairs that have been subjected to multi-zonal stimulation play a critical role in the long-term performance of an Enhanced Geothermal Reservoir. Here we present the development of a methodology to rapidly and efficiently numerically simulate mixed fracture-matrix flow systems for evaluation of well design and completion options. The methodology is based on a loose coupling framework, allowing the fracture and matrix systems to be meshed separately. The fracture system includes the integration of fracture growth and aperture data from well stimulation simulations of stochastically generated fracture networks. Automatic mesh refinement is used in the matrix simulation to resolve heat transfer near the fracture network. This simulation framework is used to efficiently determine optimal production and injection well placement using adaptive sampling.
| Original language | English |
|---|---|
| State | Published - Nov 22 2021 |
| Event | Forge Talk - Idaho Falls, United States Duration: Nov 22 2021 → … |
Conference
| Conference | Forge Talk |
|---|---|
| Country/Territory | United States |
| City | Idaho Falls |
| Period | 11/22/21 → … |
Keywords
- FORGE
INL Publication Number
- INL/MIS-21-65199
- 105048
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