Enhance reservoir productivity with engineered stimulation solutions
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Complete stimulation from design to stable production


Design and execute engineered proppant and acid frac treatments for unconventional, tight and complex reservoirs, supported by real-time monitoring and controlled fluid systems.


Restore or enhance near-wellbore productivity with treatment designs tailored to carbonate and clastic formations, validated through laboratory testing and modelling.


Ensure efficient post-stimulation cleanup and capture high-quality reservoir and well performance data to guide production optimisation and future designs.
Reservoir potential restricted by low permeability and formation damage
Even technically sound wells can underperform when permeability is low or near-wellbore damage restricts flow. Tight formations, drilling-induced impairment, scale, fines and other forms of damage reduce initial production, extend payout periods and weaken project economics.
At the same time, stimulation operations are technically demanding and capital-intensive. Poor design, unsuitable fluids or execution issues can damage the reservoir, waste proppant and miss production targets. Operators need stimulation that balances performance, risk and cost.


Integrated stimulation from design to stable production
Abraj delivers stimulation as a coordinated lifecycle, not a standalone pumping event. Our teams link design, execution, cleanup and testing into one workflow so treatments support both short-term production uplift and long-term reservoir performance.
This integrated approach includes:
- Laboratory-validated designs matched to reservoir conditions
- Precise execution using controlled fluids, proppants and pressure management
- Efficient post-treatment cleanup through optimised flowback strategies
- Comprehensive well testing to quantify treatment effectiveness and reservoir response
By unifying the full stimulation sequence, operators gain more predictable outcomes, improved production stability and better data for planning future wells.
Higher production and more predictable performance
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