Energía Eólica en Lublin
Rendimiento anual
6002
kWh/year
Período de amortización
not reached
Reducción CO₂
4.5
t CO₂/year
Ejemplo: instalación 10 kW, valores medios del país
Preguntas frecuentes sobre Lublin
¿Cuánta electricidad produce un aerogenerador de 10 kW en Lublin?
Con un factor de capacidad del 7 %, un aerogenerador de 10 kW en Lublin produce aproximadamente 6002 kWh al año.
¿Cuánto cuesta un pequeño aerogenerador en Lublin?
Un aerogenerador de 10 kW en Lublin cuesta aproximadamente 40,000 € instalación incluida.
¿Cuál es el periodo de amortización de un aerogenerador en Lublin?
Given local wind conditions, the investment is not paid back within the 20-year horizon of this example calculation.
¿Cuánto CO₂ ahorra un aerogenerador en Lublin al año?
Un aerogenerador de 10 kW en Lublin evita aproximadamente 4.5 t de CO₂ al año.
Assumptions and provenance
This example calculation is disclosed in full. Every quantity below enters the figures above exactly as stated — a specialist can recompute them or substitute their own assumptions.
- Payback (cumulative)
- not reached in 20 years
- Payback (discounted)
- not reached in 20 years
- Payback (static)
- —
Sum of the nominal annual net benefits, including degradation, price escalation and replacement costs — not discounted. This is the figure shown above.
The same cash flows, discounted at the nominal rate the net present value uses. Always the later of the two.
Investment divided by the first year's benefit — without price escalation, degradation or replacement costs. Many quotes use this; depending on the assumptions it comes out shorter or longer.
| Quantity | Value | Source / note |
|---|---|---|
| System size | 10 kW | Example system of this page |
| Investment | 40.000 € (4000 €/kW) | IEA Wind TCP Task 27 / WindEurope: 3.000–6.000 €/kW installiert für Kleinwind, Mittelwert bei 10 kW |
| Operating cost | 1200 €/a | — |
| Electricity price | 0,190 EUR/kWh | Eurostat nrg_pc_204, Band DC, 2025-S2 |
| Feed-in tariff | 0,0590 EUR/kWh | — |
| Self-consumption share | 20 % | Wind generates at night and in winter — the share is structurally below that of solar. |
| Degradation | 0,5 %/a | — |
| Price escalation | 2,0 %/a | — |
| Discount rate | 3,0 %/a | Nominal, matching the nominally escalating revenues |
| Horizon | 20 years | — |
| Grid CO₂ factor | 758 g/kWh | EEA, greenhouse gas emission intensity of electricity generation (seed), 2023 |
| Wind speed (data source) | 5,37 m/s | Annual mean at 50 m reference height |
| Wind speed (hub height) | 4,03 m/s | Logarithmic wind profile, converted to 15 m |
| Hub height | 15 m | — |
| Terrain | Suburban | z₀ = 0.4 m |
| Weibull shape parameter k | 2,00 | — |
| Air density | 1,247 kg/m³ | — |
| Capacity factor | 6,9 % net | Gross 8,2 %, less 16 % losses |
Data source: New European Wind Atlas (NEWA) · version Mesoscale Atlas v1 · as of 2019 (release), model years 2005–2018 · licence: CC BY 4.0
Non-binding initial assessment for an example system, not professional advice. Small wind requires an on-site wind measurement before any investment decision.