Enhanced Geothermal Systems
Multistage fracturing is a breakthrough for EGS - dramatically improving energy production per well
ResFrac's fully-coupled fracturing and reservoir simulator is ideal for simulating hydraulic fracturing and long-term circulation in multistage EGS designs
Fracture propagation
3D fracture initiation and propagation, interaction between wells, stress shadowing, proppant transport, complex fluid additives and non-Newtonian flow, diverters, and wellbore dynamics.
Fracture reopening during circulation
Ability to simulate the mechanical opening of fractures, and the associated increases in fracture conductivity, induced by cooling during long-term fluid circulation.
Decision support tools
NPV maximization using ResFrac's economics engine and cloud-based optimization tools.
The ResFrac team offers authentic, deep expertise in multistage fracture design optimization and Enhanced Geothermal Systems
What are Enhanced Geothermal Systems?
Enhanced Geothermal Systems use hydraulic stimulation to produce from high-temperature, low permeability resources
Geothermal production potential is huge across the United States and globally. However, production is limited by insufficient natural permeability in most resources. Analogous to the shale revolution, EGS promises to unlock these resources by enabling much higher flow rates and low power costs.
Multistage stimulation resolves the problems that have historically limited EGS performance
Traditional EGS designs have been performed in a single stage, without proppant. These designs suffer from flow localization, where the fluid flows into a relatively small number of flowing pathways. In formations lacking large, naturally conductive faults, these designs have suffered from insufficient unpropped conductivity. Shale-style ‘plug and perf’ limited-entry completions with resolve both of these problems.
Key technical references
Recent content from the ResFrac blog
Advanced ‘proppant transport in the well’ capabilities are now implemented in ResFrac!
Proppant transport in the well is an intriguing topic that has attracted a lot of interest in recent years [1-8]. Proppant transport processes determine the uniformity of proppant placement, which has a direct impact on productivity. Cipolla et al. estimate that the difference between poor and excellent proppant uniformity is about $2.5M in net present value per well.
Digesting the Bonkers, Incredible, Off-the-Charts, Spectacular Results from the Fervo and FORGE Enhanced Geothermal Projects
I’m out of superlatives – I used them all up in the title. But seriously – Enhanced Geothermal System (EGS) projects have had a really, really good summer. In this article, I summarize the results that have been recently presented by Fervo and FORGE. At their annual Tech Day and in a white paper posted this week (Norbeck et al., 2024), Fervo Energy provided their first update on Project Cape, a Utah project where they are developing 400 MWe of new production over the next two years. So far, fourteen wells have been drilled, and three of them have been stimulated.
What ‘company culture’ means to us
We recently held our annual company retreat. This is an important event because we are a fully remote company, and it gives us the chance to get together in-person and spend quality time. This year, we did the retreat in Houston, following URTeC and our annual symposium. We visited Space Center Houston, went to an Astros game, and ate BBQ and Tex-Mex. As a Houston native, I picked some of my favorite things to do in town! We also held a meeting on ‘company culture.’ I asked the group – how do you perceive our company culture? What do we do well, and what could we do better? Here are the highlights.