Global greenhouse engineering specialists, delivering integrated solutions from concept to commercial production.
Orgil Profiline Greenhouses Int specializes in the development of modern greenhouse projects worldwide, providing integrated solutions from feasibility studies and engineering design to implementation and operational production support.
With experience in greenhouse developments across diverse climate regions, the company focuses on creating stable and controlled production environments for high-value crops. Greenhouse systems are designed to perform efficiently in a wide range of climates, including hot and dry regions, humid tropical zones, temperate climates, and semi-arid areas.
The company follows a Tailor-Made engineering approach, where greenhouse structures, climate control strategies, irrigation systems, and automation technologies are designed as one integrated production system. This means that no two Orgil Profiline projects are identical — each is engineered from the ground up to match the specific climate, crop requirements, and commercial objectives of that project.
Through this integrated methodology, Orgil Profiline Greenhouses Int delivers greenhouse solutions that support efficient, stable, and profitable agricultural production.
Orgil Profiline Greenhouses Int has delivered successful greenhouse projects across Israel, Georgia, Mexico, Congo, Ethiopia, Azerbaijan, and Guatemala — spanning tropical, temperate, arid, and semi-arid climate zones. This breadth of experience informs every new project design.
Every greenhouse project delivered by Orgil Profiline Greenhouses Int is built on a foundation of engineering precision, material quality, and long-term operational performance. We remain engaged with our clients through the full project cycle — from the first feasibility assessment through to commercial production — ensuring that the system performs as designed.
Every project is uniquely engineered for its specific climate, crop, and commercial goals.
Structure, climate, water, and automation work as one coordinated production platform.
Engineering designed in accordance with international standards and adapted to local conditions.
Agronomic and operational engagement from construction through ongoing production.