Project Overview
Project Name: 200m²Commercial/Residential Distributed Solar PV Project in Georgia
Location: Georgia (Eurasia / South Caucasus Region)
Project Type: Distributed Rooftop
Summary:
This project utilizes a 200-square-meter dedicated space to install a high-efficiency distributed solar photovoltaic (PV) system. Located in Georgia, a country with exceptional solar radiance (averaging 2,000–2,500 sunshine hours per year), this system is designed to generate clean, renewable electricity to achieve energy self-sufficiency, offset grid power reliance, and significantly reduce operational energy costs.
📐 Technical Specifications & Key Metrics
| Item (项目) | Estimated Value | Remarks & Notes |
| Total Solar Area | 200 sq.m. (~2,153 sq.ft.) | Rooftop |
| Installed Capacity | ~35 kWp – 40 kWp | Based on high-efficiency Mono-PERC/TopCon solar panels |
| Annual Sunshine Hours | 2,000 – 2,500 Hours | Georgia average solar irradiation |
| Est. Annual Energy Yield | ~42,000 – 52,000 kWh/year | Calculated with 1,200–1,300 peak hours/year |
| Inverter Type | Hybrid Inverter | Supports 220V/380V Grid Integration |
| Energy Storage (Optional) | Lithium Battery (BESS) | Recommended for off-grid or night backup |
✨ Key Advantages in Georgia
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Abundant Solar Irradiation: Georgia’s geographical position offers strong solar potential, delivering high ROI (Return on Investment) and fast payback periods for a 200 sq.m. system.
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Energy Cost Savings & Grid Independence: Helps offset local electricity tariffs during peak hours and reduces vulnerability to seasonal power shortages during winter.
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Support for Net Metering / CfD Policies: Compatible with Georgia’s national net-metering regulations, allowing excess electricity generated during peak summer to feed back into the grid.
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Eco-Friendly & Sustainable: Reduces carbon footprint by approximately 35–40 tons of \text{CO}_2 emissions per year, aligning with regional green energy transition goals.