Dig Technology offers subsurface characterization solutions by integrating geological and geophysical data. Their DIG DEEP technology uses rock physics to predict rock properties in areas without well control, improving subsurface model accuracy for exploration and production.
Funding
Funding not disclosed
Founders
Product
Problem
Characterizing subsurface rock properties away from well control presents a significant challenge in geoscience applications. This limitation impacts the accuracy of exploration, resource mapping, and production monitoring, particularly in areas with sparse well data.
Solution
Dig Technology provides subsurface characterization solutions by integrating geological and geophysical expertise. Their proprietary DIG DEEP technology leverages rock physics principles to predict rock properties in areas lacking direct well control. This approach enhances the accuracy of subsurface models across various applications, from frontier exploration to production monitoring in mature fields. The methodology is also adaptable for specialized studies such as CO2 sequestration monitoring, shallow geohazard analysis, and geothermal aquifer assessment, providing critical subsurface insights.
Target Audience
The primary customers are geoscientists and petroleum engineers involved in exploration, reservoir management, and subsurface characterization within the energy sector.
Features
- DIG DEEP technology: A rock physics-based engine for predicting subsurface rock properties.
- Integration of geological and geophysical data: Combines diverse datasets for comprehensive subsurface analysis.
- Application across the field lifecycle: Supports frontier exploration, appraisal, resource mapping, and production monitoring (4D).
- Specialized application modules: Includes capabilities for CO2 monitoring, geohazard analysis, and geothermal aquifer studies.
- Data-driven rock physics analysis: Utilizes empirical relationships to enhance prediction accuracy.
- Quantitative seismic inversion support: Facilitates the interpretation of seismic data for reservoir characterization.