How to use: Based on your farmland size and head height (lift), choose the closest row. The table shows recommended pump power and PV system capacity, with short notes for reference.
Scenario | Farmland Size (ha) | Typical Daily Water Demand (m³/day) | Recommended Pump Power (kW) | Recommended PV Capacity (kW) | Notes / Head Reminder |
---|---|---|---|---|---|
Micro Garden | ≤ 0.1 ha | ≈ 5–15 m³ | 0.5 – 1.5 kW | 1.0 – 2.5 kW | Low head (<20m) surface pump; small storage tank 5–15 m³ recommended |
Small Farm / Greenhouse | 0.1 – 0.5 ha | ≈ 15–100 m³ | 2 – 5 kW | 3 – 7 kW | For head <20m use lower value; 20–40m head → 4–6 kW pump |
Medium Farm | 0.5 – 2 ha | ≈ 100–400 m³ | 5 – 12 kW | 7 – 18 kW | If head 20–40m, increase pump by 20–40%; consider storage to reduce battery needs |
Large Farm / Agricultural Company | 2 – 5 ha | ≈ 400–1500 m³ | 12 – 30 kW | 15 – 40 kW | Deep wells (>40m) or night irrigation → consider multi-stage pumping or backup power |
Very Large / Irrigation Station | > 5 ha | > 1500 m³ | ≥ 30 kW | ≥ 40 kW (scalable) | Often requires multiple pumps, zoning, and hybrid/grid-connected solutions |
Note: This table is a quick reference for solar irrigation system sizing. Actual requirements may vary depending on water source, field layout, and seasonal demand.
🌱 Choosing the right solar pump system can cut your irrigation costs by reducing diesel or grid electricity use, while ensuring stable water supply to boost crop yields.
🔋 With long-lasting solar technology and minimal maintenance, your investment delivers reliable performance for 20+ years.
👉 For a tailored design that maximizes savings and efficiency on your farm, please contact our experts today.
46.66 t / Year
1.48 t / Year
16.8 t / Year
600 jobs / 100MW project
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