ALEO Gas-to-Power Microgrid Case Study: Converting Associated Gas into Reliable Oilfield Power

Table of Contents

In remote oilfield operations, stable electricity is essential for production, safety systems, water treatment, pumping units, communication equipment, and site accommodation. However, many oilfields are located far from reliable utility grids, while large volumes of associated petroleum gas (APG) are often flared or underutilized.

For this project, ALEO provided an APG gas generator and microgrid solution designed to convert available associated gas into dependable on-site power. Instead of treating flare gas as waste, the system turns it into a practical energy source for continuous oilfield operation.

Project Background

The customer operated a remote oilfield with limited grid access and high daily power demand. Diesel generators were previously considered for primary power, but long-distance fuel transportation, unstable fuel costs, and maintenance pressure created a high operating burden.

At the same time, the site had a steady supply of associated gas from oil production. Much of this gas was not being fully utilized, creating both economic waste and environmental pressure.

The project goal was clear:•Use associated gas as the main fuel source•Reduce diesel consumption and fuel logistics•Provide stable power for continuous oilfield operation•Build a scalable system that can adapt to changing gas flow and load demand•Improve energy efficiency while reducing routine flaring

Key Challenges

1. Variable Associated Gas Quality

Associated petroleum gas is not as stable as pipeline natural gas. Its composition may fluctuate depending on oil well conditions, production stage, and gas treatment quality.

Common challenges include:•Varying methane content•Moisture in the gas stream•Heavy hydrocarbons•Possible hydrogen sulfide or other corrosive components•Pressure fluctuation before entering the generator

These factors can affect combustion stability, engine performance, emissions, and long-term equipment reliability.

2. Remote-Site Reliability Requirements

Oilfield power systems must operate continuously in harsh outdoor environments. Unplanned shutdowns can interrupt production, damage equipment, and increase operational risk.

The customer required a system capable of:•Continuous prime power operation•Stable voltage and frequency output•Automatic load sharing•Fast response to load changes•Easy maintenance by local technicians•Remote monitoring support

3. Matching Power Demand with Gas Availability

Oilfield loads are rarely constant. Pumping systems, treatment equipment, lighting, HVAC, and auxiliary facilities create changing power demand throughout the day.

The power system needed to match load demand while also adapting to available gas volume. This required a coordinated microgrid control strategy rather than a single standalone generator.

ALEO Solution

ALEO designed a gas-to-power microgrid solution based on APG-compatible gas generator sets, gas conditioning equipment, paralleling control, and intelligent power distribution.

The system was configured to use associated gas as the primary fuel for on-site electricity generation, with optional diesel backup depending on site requirements.

System Configuration

The solution included:•APG gas generator sets•Gas pressure regulation and filtration•Moisture removal and gas conditioning•Automatic generator control panel•Synchronization and load-sharing system•Low-voltage or medium-voltage distribution equipment•Remote monitoring interface•Protection system for voltage, frequency, temperature, pressure, and gas abnormality•Containerized or skid-mounted structure for field deployment

How the System Works

Associated gas from the oil production process is first collected and conditioned before entering the generator system. The gas treatment process helps remove moisture, particles, and harmful components to improve combustion reliability.

After conditioning, the gas is supplied to ALEO APG gas generator sets. The generators convert the gas into electricity for oilfield loads. When multiple generator units operate together, the microgrid controller automatically manages synchronization, load sharing, start-stop logic, and system protection.

During periods of lower demand, the system can reduce the number of running units to improve efficiency. During higher demand, additional generator units can start automatically and share the load.

This modular operating strategy helps maintain stable power while avoiding unnecessary fuel consumption and mechanical wear.

Engineering Advantages

Better Use of On-Site Fuel

By using associated gas directly from the oilfield, the project reduces dependence on diesel delivery and makes better use of an existing energy resource.

Lower Operating Cost

Compared with diesel-based continuous power generation, APG power generation can significantly reduce fuel cost where associated gas is already available on site.

Reduced Flaring

Converting associated gas into electricity helps reduce routine flaring and supports a cleaner, more efficient oilfield energy strategy.

Modular Expansion

The system can be expanded by adding generator units as production capacity or site power demand increases.

Improved Power Reliability

Parallel operation and intelligent control improve redundancy. If one unit requires maintenance, other units can continue supplying power to critical loads.

Project Results

After implementation, the customer gained a more stable and economical on-site power source. The associated gas that was previously underused became a valuable fuel for daily operation.

The solution helped the oilfield achieve:•More reliable power supply for remote production•Lower diesel consumption•Reduced fuel transportation pressure•Better utilization of associated gas•Lower routine flaring•Flexible operation under changing load conditions•Improved energy independence for the site

Why ALEO

ALEO provides project-based generator and microgrid solutions for industrial, oilfield, mining, commercial, and remote energy applications. For associated gas projects, ALEO focuses not only on generator supply, but also on fuel adaptability, gas treatment requirements, control logic, electrical integration, and long-term operation.

From technical design to manufacturing, factory testing, delivery, installation guidance, and commissioning support, ALEO helps customers build reliable power systems tailored to real project conditions.

Conclusion

Associated gas should not be treated only as a byproduct or waste stream. With the right gas generator and microgrid system, it can become a dependable power source for remote oilfield operations.

ALEO’s APG gas-to-power solution helps oilfield operators convert available gas into practical electricity, improving reliability, reducing operating costs, and supporting more sustainable energy use on site.

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FAQ

About generator sets

Q1: Why are some generators on the market with the same power rating much cheaper than yours?

ALEO: Please be very careful. The industry is rife with “refurbished machines” or “fake brand machines” (especially from certain regions). They repaint used engines to sell as new or pass off standby power as prime power. ALEO guarantees 100% genuine new machines, with serial numbers verifiable in the factory system, and we provide load test videos for verification.

ALEO: Absolutely. This is a core advantage of our EPIOR Gas Generator Sets. Our units have excellent adaptability to Associated Petroleum Gas (APG). Generating electricity from this waste gas brings your fuel cost to near zero and solves environmental emission issues, offering an extremely high ROI.

ALEO: If you need Standby Power for data centers or hospitals to prevent outages, choose Diesel, as it starts quickly and handles load spikes well. If you need Continuous Power for mines or oil fields running 24/7 and have a gas source, choose Gas, as it has extremely low operating costs and a longer lifespan.

ALEO: For data centers, we offer specialized Fast-Start Diesel Gensets. They are optimized for Block Loading, capable of starting and taking load within seconds. Combined with our paralleling system, we can achieve N+1 redundancy, ensuring 99.99% power reliability.

ALEO: Yes. For high-power units above 1000kW, we recommend using High Voltage Generators (10.5kV). This allows direct connection to the HV grid, avoiding high current losses and heating from low-voltage transmission, and saving you the cost of expensive LV cables and transformers.

ALEO: We offer Containerized Generator Sets. They are “plug-and-play” with high protection ratings, featuring built-in cooling, silencing, lighting, and fire suppression systems. You can place them directly on an outdoor concrete pad; they are weatherproof and dustproof, perfect for mines or field sites.

ALEO: Absolutely. We have a dedicated Biogas Series designed with special anti-corrosion treatment for impurities like hydrogen sulfide found in biogas. Combined with a Combined Heat and Power (CHP) system, you can generate electricity and recover waste heat for fermenter insulation, achieving a total thermal efficiency of over 80%.

ALEO: To be honest, high-horsepower imported engines (like Perkins or MTU) are in short supply globally. Typically, the engine lead time alone is 2-3 months, so with assembly and testing, the total delivery time is usually 5-6 months. If a supplier promises immediate stock, it is likely a refurbished machine or old inventory.

ALEO: We recommend a “Solar-Diesel-Storage” Microgrid Solution. Use solar power during the day and battery storage at night, with the diesel generator running only as a backup during cloudy days or when batteries are depleted. Our control system automatically manages these three energy sources to minimize diesel consumption.

ALEO: We can provide Installation Guidance Services. We can dispatch senior engineers to the site or guide your local team via remote video link. Additionally, our designs are highly modular (especially containerized units), requiring only cable and fuel pipe connections onsite, significantly reducing the technical requirements for local installation personnel.

About microgrid

Q1: What is a PV-BESS-Diesel/Gas Hybrid Microgrid System?

ALEO: It is an integrated power solution combining solar PV, battery energy storage, and diesel or gas generators. Solar power reduces fuel consumption during the day, the battery stabilizes power and stores excess energy, while the generator provides backup power when solar and battery capacity are not enough.

ALEO: A traditional diesel-only system consumes fuel continuously. A hybrid microgrid uses solar + battery first, and only starts the diesel generator when necessary. This helps reduce fuel cost, maintenance frequency, noise, emissions, and long-term operating expenses.

ALEO: Yes. ALEO can design off-grid microgrid systems for remote areas, islands, mining sites, farms, telecom stations, factories, and communities where grid power is unavailable or unstable. The system can automatically balance solar power, battery storage, and generator output.

ALEO: The system is controlled by an intelligent EMS / Microgrid Controller. It monitors load demand, solar generation, battery SOC, generator status, and power quality in real time. The controller automatically chooses the most economical and stable power source.

ALEO: Yes, depending on the battery capacity and load demand. ALEO will calculate the required BESS capacity based on your night-time power consumption, backup time requirement, solar resources, and generator configuration to ensure stable power supply.

ALEO: When solar generation drops, the battery will discharge first. If the battery level becomes low or the load is too high, the diesel or gas generator will automatically start. This ensures continuous power supply even in unstable weather conditions.

ALEO: Yes. By using solar energy and battery storage, the generator does not need to run all the time. Fuel savings depend on sunlight conditions, load profile, battery size, and operating strategy. ALEO provides customized system simulation to estimate your expected fuel reduction.

ALEO: It depends on your fuel availability and project conditions. Diesel generators are suitable for flexible backup and areas where diesel supply is easy. Gas generators are ideal for sites with natural gas, biogas, associated petroleum gas, or other available gas sources, especially for long-running power projects.

ALEO: Yes. ALEO can provide containerized microgrid solutions, including PV inverters, BESS, control system, distribution cabinet, diesel or gas generator, fire protection, HVAC, and remote monitoring. Containerized design makes transportation, installation, and commissioning easier.

ALEO: We usually need your load capacity, daily power consumption, peak load, location, sunlight conditions, fuel type, backup time requirement, grid availability, and application scenario. Based on this information, ALEO can provide a customized PV-BESS-Diesel or PV-BESS-Gas hybrid microgrid solution.

ALEO: Yes. ALEO can provide remote monitoring and intelligent operation management. Users can check PV generation, battery SOC, generator running status, load consumption, alarms, and system performance in real time through a monitoring platform. This helps reduce on-site maintenance pressure and improves system reliability.

ALEO: Yes. These are exactly the key application scenarios for ALEO hybrid microgrid solutions. For areas with high fuel transport cost, unstable grid power, or no grid access, ALEO can customize PV-BESS-Diesel Hybrid Microgrid System or PV-BESS-Gas Hybrid Microgrid System to provide stable, economical, and continuous power supply.

 
 

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