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Intelligent Operational Decisions for Oil & Gas

We anticipate the behavior of wells, equipment, and facilities under real operating conditions, and recommend concrete operational actions to maximize production and stability.

Validate impact with your own data in a matter of weeks, without disrupting operations.

How we validate impact in your operation

We use historical data from your assets to build models that replicate the actual behavior of wells, equipment, and facilities. This allows us to simulate past operational decisions and measure how much production, stability, or operating costs could have been improved.

Result: a concrete business case before any implementation.

Where it applies

Designed for real assets in oil & gas operations.

🛢️ Well Production

Operational optimization under variable conditions of pressure, flow rate, and fluid composition.

⚙️ Artificial Lift

Adjustment of ESP, gas lift, or rod pump systems to maximize efficiency and recovery.

🔩 Compression & Transport

Optimization of compression networks and flow considering operational constraints.

🏭 Processing Facilities

Stabilization of separation, treatment, and conditioning processes.

Pilot Program (4–6 weeks)

A structured, low-risk way to demonstrate real impact using your own data.

01
Asset Analysis
  • Selection of critical wells, equipment, or processes
  • Review of available data
  • Definition of business objectives
02
Modeling
  • Models built on historical data
  • Conditions → asset behavior relationships
  • Identification of key patterns
03
Simulation
  • Evaluation of past decisions
  • Simulation of alternative scenarios
  • Identification of improvement opportunities
04
Results
  • Estimated economic impact
  • Improvable operational KPIs
  • Implementation plan

Decisions that can be anticipated

Concrete applications on real oil & gas assets.

🛢️
B01 · PRODUCTION

Well Production Optimization

Decisions under variable conditions

Well production depends on multiple variables that change constantly. The system evaluates operational conditions in real time and recommends adjustments to maximize production without compromising asset integrity.

  • Higher production per well
  • Operation within safe limits
  • Adaptation to changing conditions
OPERATIONAL DECISION
Well conditions → expected production → recommended adjustment
🔧
B02 · MAINTENANCE

Predictive Maintenance

Prevention of critical failures

Critical equipment such as compressors, pumps, and artificial lift systems show early signals before failing. The system detects these patterns and recommends interventions at the optimal moment.

  • Fewer unplanned failures
  • Higher asset availability
  • Better operational planning
OPERATIONAL DECISION
Equipment state → failure risk → recommended intervention
🔩
B03 · COMPRESSION

Compression & Network Optimization

Energy efficiency · Operational constraints

Compression networks operate under dynamic conditions that affect costs and availability. The system calculates the optimal compressor configuration considering demand, efficiency, and constraints at each point in the network.

  • Lower energy consumption
  • Higher gas availability
  • Reduced production curtailments
OPERATIONAL DECISION
Network conditions → optimal configuration → compressor operation adjustment
B04 · ENERGY

Energy & Economic Optimization

Value per asset · Beyond efficiency

Energy cost in production facilities is a critical variable often managed reactively. The system continuously calculates the operating point where each kW generates the highest possible economic value.

  • Higher value per barrel produced
  • Efficient energy use in facilities
  • Better balance between output and operating cost
OPERATIONAL DECISION
Current conditions → expected economic value → optimal operating point
🛡️
B05 · INTEGRITY

Asset Integrity & HSE

Early detection · Regulatory compliance

Unsafe conditions in oil and gas installations are typically preceded by detectable signals in operational data. The system identifies risk patterns and integrates regulatory compliance into operational recommendations.

  • Early detection of risk conditions
  • Fewer operational incidents
  • Integrated regulatory compliance
OPERATIONAL DECISION
Risk signals → incident probability → recommended preventive action
🔗
B06 · INTEGRATION

Reservoir–Surface Integration

Aligned decisions · Integrated system

Reservoir and surface decisions are usually optimized separately, creating systemic inefficiencies. The system connects both stages, anticipating how subsurface decisions impact surface facilities and recommending coordinated adjustments.

  • Aligned decisions across subsurface and surface
  • Lower facility variability
  • Better resource utilization
OPERATIONAL DECISION
Reservoir decision → surface impact → coordinated system adjustment

How it integrates

Designed to operate with existing infrastructure, without disrupting operations.

📂 Existing data

SCADA, historians, field sensors, and maintenance systems. No new instrumentation required to get started.

🔒 Non-invasive

Operates as a recommendation layer without intervening in control during the initial stage.

🎯 Clear decisions

Concrete operational adjustments — not dashboards. The operator always remains in control.

📈 Scalable

Can evolve to full integration with operational systems once impact is validated.

What we need to get started

Minimum requirements to begin a pilot validation.

🗄️ Historical data

Access to operational data from recent months (production, sensors, or maintenance).

👤 Technical contact

Someone on your team who understands the assets and can validate the operational recommendations.

🎯 Clear objective

Define one priority: production, maintenance, energy, or integrity.

▼   Technical detail by operational area   ▼

AI Solutions by Value Chain Stage

📍

Exploration

Reduce geological uncertainty and improve quality of exploratory investment decisions.

  • Assisted seismic interpretation (computer vision)
  • Facies and lithology classification
  • Automatic structure detection
  • Prospectivity prediction
  • Exploratory area ranking
  • Reduced exploratory risk
  • Improved capital decision quality
🔨

Drilling

Optimize well construction, maximizing efficiency, safety, and operational consistency.

  • Automatic operational event classifier
  • Shift handover assistant
  • Early mechanical instability detector
  • Downhole state estimator (soft sensor)
  • Operating parameters recommender
  • Reduced cost per well
  • Increased sustainable ROP
  • Improved operational safety
💥

Completion (Hydraulic Fracturing)

Maximize effectiveness of hydraulic well stimulation.

  • Fracture stage classifier
  • Fracture efficiency monitor
  • Fracture propagation soft sensor
  • Fracture design recommender
  • Increased initial productivity
  • Reduced cost per stage
  • Greater operational consistency
🛢️

Production

Maximize production and extend well life.

  • Multiphase soft sensor
  • Early well problem detector
  • Artificial lift optimization
  • Increased net production
  • Reduced OPEX
  • Fewer unplanned failures
🗺️

Reservoir Optimization

Maximize hydrocarbon recovery and optimize field development strategies.

  • Automated decline curve analysis
  • EUR estimator
  • Enhanced recovery strategy recommender
  • Spacing and well geometry optimizer
  • Integrated static-dynamic simulator
  • Automatic production allocator
  • Increased recovery factor
  • Reduced CAPEX per barrel produced
  • Improved field NPV
⚙️

Predictive Maintenance

Anticipate failures and improve asset reliability.

  • Equipment failure prediction
  • Asset health index
  • Reduced downtime
  • Lower maintenance costs
  • Increased operational reliability
🦺

HSE & Operational Risk

Reduce incidents through identification of risk conditions and process improvement.

  • Unsafe condition detection (computer vision)
  • Incident pattern analysis
  • Operational assistance system
  • Facility anomaly detector
  • Fewer incidents from unsafe conditions
  • Continuous operational process improvement
  • Increased regulatory compliance
📦

Supply Chain & Costs

Optimize logistics, planning, and cost control.

  • Equipment logistics optimization
  • Per-well cost prediction
  • Workover cost prediction
  • Reduced total costs
  • Increased financial predictability
  • Improved capital efficiency
🧠

Knowledge & People

Capture, scale, and preserve organizational technical knowledge.

  • Domain expert assistants
  • Intelligent training and simulators
  • Improved technical decision quality
  • Reduced dependence on key individuals
  • Accelerated learning curve

Evaluate the impact on your assets

In a few weeks we can show you, using your own data, how much additional value your operation could generate through anticipatory decisions.

Request Pilot Evaluation →
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