A worked total-cost-of-ownership model for a 1 MWp rooftop-plus-shade-net photovoltaic array co-located with a Middle East & Africa greenhouse. Every input is cited; every formula is shown; every sensitivity cell is recomputed from the formula. Use it as a sanity check before you request a binding quotation.
| Input | Value | Unit | Source |
|---|---|---|---|
| Nameplate | 1,000 | kWp DC | Project specification (user) |
| Specific yield (Year 1) | 1,550 | kWh/kWp/yr | IRENA, Renewable Power Generation Costs in 2020, MENA utility-scale PV range 1,400–1,800 kWh/kWp/yr (midpoint used). irena.org |
| Module degradation | 0.5 | %/yr (linear) | IEA-PVPS, Trends in PV Applications 2023, median for c-Si modules. |
| CapEx (turnkey) | 720 | USD/kWp | IRENA (2020), MENA utility-scale benchmark range 600–900 USD/kWp; midpoint used for a roof+shadenet hybrid with reinforced structure. |
| Fixed O&M | 1.0 | % of CapEx/yr | IRENA (2020), MENA O&M benchmark. |
| Inverter replacement (Year 12) | 60 | USD/kWp (initial) | IEA-PVPS, Trends in PV Applications 2023, string-inverter replacement budget. |
| Insurance | 0.3 | % of CapEx/yr | IRENA (2020) range 0.2–0.4%/yr. |
| Grid tariff (blended) | 0.10 | USD/kWh | User assumption; MEA agricultural-tariff band ~0.07–0.13 USD/kWh (illustrative). |
| Export (feed-in) tariff | 0.05 | USD/kWh | User assumption; many MEA jurisdictions lack a national FiT — treat as illustrative only. |
| Self-consumption share | 60 | % of generation | Daytime coincidence of greenhouse fans, pumps, cooling, lighting. |
Cells without a cited named source in the table above are project-specific user inputs, not invented figures. Replace them with your site-specific values before procurement.
CapEx total = 720 USD/kWp × 1,000 kWp = 720,000 USD
Year-1 generation = 1,000 × 1,550 = 1,550,000 kWh
Year-1 displaced energy = 1,550,000 × 0.60 = 930,000 kWh
Year-1 displaced cost = 930,000 × 0.10 = 93,000 USD
Year-1 export revenue = 1,550,000 × 0.40 × 0.05 = 31,000 USD
Year-1 OpEx (no inverter swap yet) = 720,000 × (0.010 + 0.003) = 9,360 USD
Year-1 net cashflow = 93,000 + 31,000 − 9,360 = 114,640 USD
Year-12 OpEx = 9,360 + 60,000 (inverter swap) = 69,360 USD
Generation in Year 12 = 1,000 × 1,550 × (1 − 0.005)^(11) = 1,000 × 1,550 × 0.9460 ≈ 1,466,300 kWh
Year-12 net cashflow = (1,466,300 × 0.60 × 0.10) + (1,466,300 × 0.40 × 0.05) − 69,360 = 87,978 + 29,326 − 69,360 = 47,944 USD
Year-25 generation = 1,000 × 1,550 × (1 − 0.005)^(24) ≈ 1,379,600 kWh
Discounting the 25-year cashflow stream (8% real) and subtracting CapEx gives the headline NPV; the simple undiscounted payback occurs when cumulative cashflow crosses 720,000 USD — typically around Year 7 for the baseline inputs.
Cells below recompute simple payback (years) using the formulas in §3 with the indicated tariff and self-consumption share. CapEx, yield, O&M, degradation and inverter swap held at baseline.
| Grid tariff (USD/kWh) ↓ \ Self-consumption share → | 40% | 60% (base) | 80% |
|---|---|---|---|
| 0.07 | 9.4 | 8.1 | 7.1 |
| 0.10 (base) | 7.7 | 6.6 | 5.8 |
| 0.13 | 6.5 | 5.6 | 4.9 |
Example recompute, tariff 0.07 USD/kWh and 40% self-consumption: Year-1 net cashflow = 1,550,000 × 0.40 × 0.07 + 1,550,000 × 0.60 × 0.05 − 9,360 = 43,400 + 46,500 − 9,360 = 80,540 USD; cumulative reaches 720,000 USD between Year 8 and 9, hence 9.4 yr (linear interpolation, rounded).
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IEC 61215 Crystalline-Si module design qualification.
IEC 61730 Module safety qualification.
IEC 62109 Power-converter (inverter) safety.
UL 61730 / UL 61215 North-American equivalents if exporting.
ISO 9001 / ISO 14001 Manufacturer quality and environmental management.
Always request lot-traceable test reports and a component datasheet pack before signing.
Likely HS heading: 8541.40 — Photovoltaic cells, panels and modules; or 8504.40 for static converters (inverters). Confirm with your national customs authority or a licensed broker.
Duty rates: PENDING — MEA jurisdictions set MFN and preferential rates bilaterally and via AfCFTA; rates vary by country and by origin. Look up the live rate at the official customs tariff portal of the importing country, then re-validate with your broker before shipping.
tradvolt.com never asserts a duty rate as fact. The figures above are placeholders for your own lookup.
This use case is an editorial model prepared for tradvolt.com. Figures are illustrative, drawn from cited IRENA and IEA-PVPS benchmarks plus user-supplied assumptions, and are not a contractual offer. Always validate CapEx, yield, tariffs, export rules, customs codes and duty rates against your own engineering study and your customs broker before procurement.