Discover Enerji provides engineering, implementation and site coordination services for solar, wind and hydroelectric energy projects, transmission lines, switchyards and energy infrastructure projects.
We develop project-specific solutions for energy investments of different scales, from renewable generation facilities to electricity transmission and infrastructure projects.
Renewable energy projects are an important part of our services, but we also provide services for electricity transmission and energy infrastructure projects such as transmission lines, transformers and switchyard infrastructure.
Depending on the project, support can be provided during preliminary assessment, technical planning, engineering, site preparation, implementation, coordination, testing and commissioning.
You can share your project details with us using the contact or quotation form on our website. Our team will review your request and get in touch with you.
Solar Energy
Solar potential, shading conditions, land or roof structure, electrical infrastructure, connection possibilities, target installed capacity and equipment are evaluated before the project begins.
Accurate site analysis directly affects panel placement, energy production performance, mounting systems and project costs. Therefore, a technical assessment before implementation is important.
Panel selection is not based on power rating alone. Efficiency, temperature coefficient, durability, warranty conditions and site characteristics should be evaluated together.
It converts direct current electricity generated by solar panels into alternating current that can be used in facilities and the power grid. The inverter also plays an important role in monitoring system performance.
Installed capacity is determined through technical calculations that consider available area, energy consumption, connection capacity, solar irradiation values and investment targets.
Wind and Hydroelectric Energy
Wind potential is one of the key criteria. However, site access, terrain, grid connection, turbine placement and transmission infrastructure must also be evaluated together.
Wind measurements determine average speed, direction, continuity and turbulence characteristics in the region. These data are important for production forecasting and turbine selection.
The potential or kinetic energy of water is used to rotate turbines. Turbine movement is transferred to the generator, where mechanical energy is converted into electrical energy.
Depending on the project, components may include water conveyance systems, turbines, generators, transformers, switchgear, control systems and transmission lines.
Each energy source has different technical requirements. Terrain, climate, transportation, connection points and environmental conditions can directly affect system design and implementation methods.
Energy Transmission Lines
Energy transmission lines are electrical transmission infrastructure that carry electricity safely and efficiently from generation facilities to substations or consumption areas.
High voltage levels are used to reduce losses that may occur while transmitting electrical energy over long distances.
Depending on voltage level and technical design, towers, conductors, insulators, grounding systems, protection equipment and connection components may be used.
Regular inspection and maintenance help detect equipment faults early, reduce the risk of power interruptions and keep the system operating safely.
Switchyards and Energy Infrastructure
A switchyard is energy infrastructure where electrical energy is controlled, routed, protected and distributed to different lines. It is an important connection point between generation, transmission and distribution systems.
Switchyards may include circuit breakers, disconnectors, busbars, instrument transformers, surge arresters, protection relays, grounding systems and various control equipment.
Substations are used to increase or decrease the voltage level of electrical energy so that it becomes suitable for transmission or use conditions.
Protection relays detect short circuits, overcurrent and other electrical faults, trigger the relevant breakers and help limit the fault from spreading to other parts of the system.
Grounding is one of the fundamental protection systems used to improve human and equipment safety during electrical faults. Correct design is critical in switchyard and energy infrastructure applications.
Engineering and Implementation Process
Depending on project scope, work may include site inspection, technical needs analysis, capacity assessment, connection condition review, equipment selection and implementation planning.
A site survey allows the physical and technical conditions of the implementation area to be assessed directly, enabling solutions that match actual site conditions.
Correct engineering is critical for system safety, energy efficiency, equipment compatibility, operational continuity and compliance with technical requirements.
It means managing material supply, team schedules, installation work, electrical connections, tests and other implementation steps in a coordinated manner.
Depending on project scope, technical checks and required tests can be performed and commissioning can proceed after safe operating conditions have been verified.
Quotation and Project Application
You can request a quotation by sharing basic information about your project type, location, capacity and requirements through the quotation or contact form on our website.
Sharing the project location, energy type, estimated capacity, current site status and any available technical documents helps the preliminary assessment proceed more effectively.
Yes. If your project is still at the idea or preliminary assessment stage, you can share the information currently available and discuss technical requirements with our team.
Yes. Project-based solutions can be developed for industrial facilities, investors and energy projects of different scales according to technical requirements and site conditions.
Depending on project scope, integrated services covering engineering, implementation, energy infrastructure and site coordination can be provided. The detailed scope is defined after project evaluation.