Site and needs assessment
Site conditions and available infrastructure are reviewed. Production objectives and operating needs establish the technical brief.

TURNKEY GREENHOUSE PROJECTS
Agrotecta brings greenhouse design, engineering, construction, climate control, heating, irrigation, fertigation, lighting and automation together within a single project.
From assessing the land and production objectives to commissioning the systems, the process is managed by ISITMAX İklimlendirme Sistemleri Sanayi ve Ticaret A.Ş.
A turnkey greenhouse brings greenhouse design, construction and technical systems into one coordinated project. Rather than making separate decisions about the structure, heating, irrigation and controls, the investor works from a shared scope based on production objectives. Equipment locations, operating needs and installation sequences are considered together, with the interfaces between suppliers addressed through project management.
A commercial greenhouse project starts with the crop, cultivation method, growing season and site conditions. Ground levels, drainage, access, water supply and energy connections inform the proposed layout. These factors also help identify opportunities for future expansion. Modern greenhouse systems are therefore selected for the intended operation, rather than applied as an identical package regardless of location or production model.
During engineering, the relationships between systems are defined. Heating capacity is reviewed alongside ventilation strategy; irrigation zones must fit the cultivation layout; and fertigation equipment must suit water quality and nutrient preparation requirements. Greenhouse automation brings another set of interfaces: the variables to monitor, sensors to install and equipment to control. Maintenance access and the operator’s daily working practices also form part of the design brief.
During greenhouse construction, manufacturing, site preparation, assembly and system connections follow an agreed sequence. Commissioning checks cover equipment operation, control signals and the interaction between systems. Local permits, infrastructure work, handover information and responsibilities outside the agreed scope are clarified for each project. Agrotecta approaches complete greenhouse solutions through this shared engineering framework, with included work and responsibilities established at proposal stage. The purpose is to make technical decisions and implementation requirements easier to follow throughout delivery.

ONE PROJECT, CONNECTED SYSTEMS
Site conditions and available infrastructure are reviewed. Production objectives and operating needs establish the technical brief.
The layout, structural dimensions and equipment areas are planned together. System interfaces are defined before installation.
The frame and covering are selected for the site conditions. Assembly, maintenance access and equipment connections inform the design.
Heat demand is assessed against climate data and growing conditions. The energy source and distribution arrangement are defined within the project scope.
Irrigation zones reflect the cultivation method and water requirements. Scheduling and controls are coordinated with the production plan.
Nutrient preparation and dosing are considered alongside water quality and cultivation method. Measurement, mixing and distribution connections are planned together.
Temperature and humidity management are assessed alongside the structure and crop objectives. Ventilation and climate equipment are selected for local conditions.
Variables to monitor and equipment to control are identified. Sensors, control panels and the operator interface are planned as a compatible system.
FROM CONCEPT TO PRODUCTION
Location, approximate area and investment expectations establish the initial brief.
Site information, infrastructure and regional conditions are assessed.
The crop, cultivation method, growing season and operating requirements are clarified.
Structural and equipment options are evaluated together to define the scope.
Fabrication, site work and system assembly are coordinated around the approved design.
Equipment, control signals and system connections are checked ahead of operational handover.
The schedule is established after reviewing project size, selected systems, procurement and site conditions.
INTEGRATED GREENHOUSE TECHNOLOGIES
The structure, heating, irrigation, fertigation, LED lighting and climate automation are integrated systems working toward shared production objectives.

Greenhouse Structure: Durable structure tailored to your project.
A single standard design cannot address every site and production requirement. Technical choices are made by considering the following factors together.
Irrigation and climate systems are considered alongside soil conditions and the growing layout.
Nutrient solution, water management and cultivation infrastructure are planned around crop requirements.
Working areas and climate needs are assessed for each production stage.
Monitored variables and control objectives are defined within the project brief.
Compartmentation and measurement needs are assessed against the intended work.
Lighting, climate and nutrient requirements for stacked growing areas are evaluated separately.
Coordinated design of the structure, equipment and controls helps reduce installation conflicts.
Heat, water and nutrients are considered alongside crop requirements; outcomes depend on operating conditions.
Field measurements and equipment controls can be brought into a shared operator interface.
Connection needs for future areas and systems can be considered from the outset.
It coordinates design, structure, installation and the selected technical systems. Heating, irrigation, fertigation and automation are confirmed in the proposal and agreed project scope.
Area, structural type, covering, climate, infrastructure and equipment are assessed together. A fixed price cannot be established responsibly before the technical scope is defined.
Timing depends on size, procurement, permits and site readiness. A workable schedule is developed after reviewing the scope and site conditions.
These systems can be incorporated into the integrated design according to production needs. Capacity, equipment and control levels are specified at proposal stage.
Renovation and additional systems can be assessed following a review of the existing structure and infrastructure. Feasibility depends on their condition and the site.
These methods can be evaluated within the project. Crop, area, water quality, energy and climate requirements need to be clarified before technical design.
International enquiries are considered following a location and scope assessment. Logistics, local implementation conditions and technical support arrangements are reviewed together.
Name, phone number, country/city and project type are required for an initial discussion. Approximate area, crop and existing site information help with technical assessment.
LET’S PLAN YOUR PROJECT
Share your requirements for a new greenhouse or an existing facility. Our technical team will contact you to develop a practical solution plan.