Sectors
Power
Services
Design & Engineering, Project Management and Safety
Location
Dimona, Ramat Negev, Israel
This 265 MW grid connected ground mounted solar photovoltaic development is located in Dimona in the Ramat Negev region of Israel and has been implemented on a build, operate and transfer basis. The project uses bifacial modules rated at 635 Wp along with Single Axis Tracker technology to maximise generation throughout the day. The plant is supported by an advanced Supervisory Control and Data Acquisition system that works seamlessly with robotic cleaning solutions, ensuring high operational efficiency and reduced soiling losses. The technology combination allows the system to perform reliably in challenging desert conditions while delivering strong long term energy output.
TCE's Scope
TCE served as the engineering consultant for the development, optimising the design across civil, electrical and mechanical disciplines to ensure alignment with performance targets and site constraints. The work involved reviewing all site-specific reports including topographical surveys, geotechnical studies and hydrology assessments to ensure the design was accurately calibrated to local conditions.
TCE carried out the technology selection for the solar photovoltaic system and completed the PQ curve study and basic engineering required for design refinement and accurate Bill of Quantities preparation. The team also provided continuous technical support and coordination with the engineering, procurement and construction partners to ensure the project was delivered with an optimised plant configuration. As part of this optimisation, TCE proposed improved electrical configurations including strategic placement of additional inverters to support reactive power compliance and minimise electrical losses.
Impact
The combination of bifacial modules, Single Axis Tracker systems and robotic cleaning technology strengthened energy generation and reduced operational losses. The project uses a 161 kV air insulated substation to ensure efficient power evacuation and incorporates advanced Supervisory Control and Data Acquisition and security systems for dependable operation. Through careful design optimisation and efficient resource utilisation, the project was commissioned within the planned timeline and now operates as a high performing renewable asset for the region.
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