Illustrative image of the activities of Gelecek Enerji
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Gelecek Enerji

From the source to the future.

OUR ACTIVITIES
OVERVIEW

The power of the resource. The value of the whole.

Value in energy is not created at a single point of production. Proper evaluation of the field, processing the resource, continuity of infrastructure and delivering the product where it is needed are parts of the same chain. Gelecek Enerji considers this scope as a whole, from oil production and refining to renewable energy research.

As we establish technical links between production fields, processing operations and supply requirements, we also incorporate developments in solar, wind, energy storage and smart management technologies into our work. We plan operational activities and new technology development according to their respective requirements.

  • Production fields and refining
  • Industrial fuel and product supply
  • Renewable energy projects
  • Storage and critical energy infrastructure

From production to technology: where we operate.

Kyrgyzstan · Batken · Kadamjai

Hydrocarbon production in the Batken region and refining activities in Kadamjai bring field and processing operations together in the same energy chain. The approximately 80-kilometre distance between the production field and the refinery provides the geographical context for storage and dispatch planning.

Türkiye

Research, engineering and investment development work on solar and wind technologies complements our production and refining experience with renewable energy.

OUR ACTIVITIES

Resources, production and supply. One energy chain.

Our activities begin with evaluating the subsurface resource and continue through well improvement, initial processing, refining, storage and dispatch. Research into new energy technologies connects this operational experience with future needs.

Illustrative activity image for Gelecek Enerji
Gelecek EnerjiILLUSTRATIVE IMAGE
01FIELD DEVELOPMENT

Production begins with understanding the reservoir.

Geological and geophysical studies, structural mapping and reservoir evaluation determine well locations, production infrastructure and investment priorities. Bringing new wells into production is considered alongside the long-term behaviour of the existing reservoir. The development programme brings resource characteristics and the field’s technical conditions together in one plan.

Rehabilitation of existing wells covers mechanical removal of deposits from the well casing, casing repair, pump renewal, and chemical or hydraulic stimulation to improve flow. The need for intervention is evaluated alongside observations of flow rate, pressure and equipment. Oil from the wellhead is directed to storage following initial processing to separate water and foreign matter.

Field knowledge
Geology, geophysics, structural mapping and reservoir monitoring.
Production development
Well rehabilitation and improvements to equipment and pumps.
Operations
Initial processing, flow monitoring and evaluation of maintenance requirements.
02FROM PRODUCTION TO PROCESSING

Continuity between the field and the refinery.

Pipelines, pumping systems and tanks are complementary parts of fluid movement within the production field. While pressure, flow rate and pipeline integrity are monitored, stock levels help balance the pace of production with the dispatch schedule. The timing, conditions and transport arrangements for crude oil are planned together to supply the refinery.

Production in Kyrgyzstan’s Batken region and refining activities in Kadamjai demonstrate this close relationship. The oil field’s location approximately 80 kilometres from the refinery allows production and processing plans to be considered within the same regional supply framework.

03REFINERY OPERATIONS

Turning crude oil into practical value.

In refining, crude oil processing is carried out in conjunction with the production schedule, product quality and equipment reliability. Process conditions are monitored throughout distillation and processing. The tank farm, product handling and loading infrastructure connect the facility’s production flow with dispatch.

Product demand and maintenance requirements are considered together when preparing the production plan. Development of process units and storage infrastructure is evaluated through options for new equipment, monitoring and automation. Technical training and engineering collaborations form the operational component of this development work.

04PRODUCTS AND SUPPLY

Different products. Different patterns of use.

Our petroleum product scope includes petrol, diesel, construction bitumen and industrial oils. Continuity of fuel supply is a priority in transport and industrial use, while the seasonal schedule of road and infrastructure works shapes bitumen supply. A product’s intended use directly informs stock and delivery decisions.

Storage accommodates the time gap between refinery production and dispatch. Stock monitoring, loading and movements of crude oil and processed products are considered alongside transport partners’ schedules. Long-term supply requirements and periodic demand call for joint planning of production and distribution.

05ENGINEERING AND OPERATIONS

The technical discipline behind production.

Work with equipment manufacturers, engineering firms and technology providers covers automation, industrial monitoring, preventive maintenance and equipment renewal. Operational training and technical support help incorporate these improvements into day-to-day operations.

Site safety is addressed through inspections, work permits, controlled work procedures, shift handovers and emergency preparedness. Monitoring emissions, waste and resource use is also part of operational evaluation. New well, storage and processing investments are developed in stages based on technical suitability, economic assessment and their connection with existing operations.

06RESEARCH AND DEVELOPMENT

Exploring new possibilities in energy.

Research into solar technologies focuses on how surfaces, area and changing irradiance conditions affect energy use. In wind energy, horizontal-axis, vertical-axis and omnidirectional system approaches are evaluated. Work on heat transfer from the ground, water and air brings different uses of environmental resources into the same research agenda.

Energy storage, smart battery management, IoT monitoring and backup power systems are considered in terms of how production and consumption work together. Our work on emerging technologies such as small modular reactors focuses on research and technology collaborations. We evaluate each area according to its own stage of development and technical requirements.

APPLICATIONS

The relationship between products, use and supply.

Product planning considers both the application and the timing of demand.

The relationship between products, use and supply.
ProductPrimary usePlanning consideration
PetrolTransport and fuel demandAligning production, stock and distribution schedules.
DieselTransport and industrial activityCoordination of stock and dispatch for uses requiring continuity.
Construction bitumenRoad and infrastructure applicationsPeriodic supply linked to the construction season and project schedule.
Industrial oilsIndustrial lubrication needsUsage requirements, product suitability and delivery schedule.
SERVICE SCOPE

Expertise in detail.

Exploration, field evaluation and production

From geological and geophysical data to wellhead operations, we bring together the technical knowledge needed to develop the resource.

  • Reservoir analysis, structural mapping and field evaluation.
  • Cleaning, equipment renewal, reinforcement and pumping improvements at existing wells.
  • Monitoring flow rate, pressure and equipment performance; initial processing and separation of water and impurities.

Refining and petroleum products

We consider crude oil processing together with production planning, process control and product requirements. Refining is the transformation point in the supply chain.

  • Distillation, process monitoring, equipment reliability and quality control.
  • Product supply covering petrol, diesel, bitumen and industrial oils.
  • Production and dispatch planning according to industrial use and seasonal demand.

Storage, terminals and logistics

Continuity between production and consumption depends on managing storage and product movement together. We approach field, refinery and dispatch connections with this understanding.

  • Crude oil and product storage; stock, inventory and loading coordination.
  • On-site pipelines, flow monitoring and assessment of system integrity.
  • Coordination of refinery feedstock, transport partners and long-term supply programmes.

Solar and wind technologies

Our work in renewable energy brings together research into making better use of resources and engineering applications.

  • Efficiency research into surface, light and space utilisation in solar applications.
  • Evaluation of vertical-axis, horizontal-axis and omnidirectional wind turbine approaches.
  • Developing links between engineering, procurement and implementation according to project requirements.

Energy infrastructure and investment development

We evaluate investment alternatives in terms of technical feasibility, economic sustainability and long-term energy demand.

  • Integrated planning of production, pipeline, pump and storage infrastructure.
  • Evaluation of field development steps alongside production targets, reservoir behaviour and operational safety.
  • Development of technical connections between fields and processing facilities.
  • Defining project scope with technology, engineering and investment partners.

Maintenance, automation and operational support

Engineering that supports operational continuity requires equipment, information and working processes to be considered together.

  • Industrial monitoring, automation, maintenance and reliability programmes.
  • Operational training, technical support and equipment improvement work.
  • Equipment inspections, shift handovers, controlled work procedures and emergency preparedness.
  • Assessment of resource consumption, emissions, waste and land use.

Next-generation energy research

We examine the development of storage and distribution technologies alongside the future energy needs of critical infrastructure.

  • Integration of batteries, renewable generation and demand management.
  • Development work on IoT-based energy monitoring, smart grids and backup power systems.
  • Research into heat transfer from the ground, water and air.
  • Research and technology collaborations on future energy systems, including small modular reactors.
RELATED GROUP COMPANIES

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