Onshore

Effective completion of new and existing wells

Fishbones Branching Technologies are ideally suited for onshore developments and have been successfully deployed in land wells across four continents, demonstrating their versatility across a wide range of reservoir types and operating environments.

Description

By creating multiple branches from a single wellbore, Fishbones technologies increase connectivity to the reservoir, expose a larger rock volume, and improve communication between layers with limited vertical permeability. This enables operators to achieve greater reservoir contact without the cost and complexity of drilling additional wells.

In naturally fractured reservoirs, Fishbones technologies enhance connectivity to existing fracture networks, improving fluid flow and reservoir drainage. In carbonate formations, the technology enables deep and uniform distribution of acid treatments, resulting in more effective stimulation, improved productivity, and enhanced injectivity.

Onshore projects benefit from the ability to maximize production from existing well slots, reduce field development costs, and minimize environmental impact through a smaller surface footprint. Whether applied in conventional oil and gas fields, geothermal projects, or mineral extraction wells, Fishbones Branching Technologies help operators increase reservoir exposure, improve well performance, and achieve greater recovery from each well drilled.

Key highlights
  • Increases connectivity between reservoir layers with limited vertical permeability
  • Enhances connectivity to natural fracture networks
  • Improves productivity, injectivity, and reservoir drainage
  • Enables deep and uniform acid placement in carbonate formations
  • Reduces the need for additional wells and well slots
  • Lowers field development costs and surface footprint
Our services

Specialized well services across the full lifecycle

We support offshore operations with our expertise. Our team delivers safe, efficient, and tailored solutions designed to meet operational challenges and maximize long-term well performance.