Golf-Course Solar 400 kWp UK — Use-Case & 25-Year TCO

Scope: 400 kWp rooftop + canopy array split across three UK golf-course buildings — the clubhouse, a maintenance barn and a driving-range shading canopy. Model assumes self-consumption of ~70 % of generation, with the balance exported under the SEG. Worked arithmetic shown for every cell.

1. Inputs Table

All cited figures originate from named, publicly retrievable sources. Any row whose source could not be verified during drafting has been removed rather than left as a placeholder.

Inputs — Golf-Course Solar 400 kWp UK (Base Case)
ParameterSymbolValueUnitNamed source
Installed DC capacityP400kWpSystem design (this brief)
Specific yield (UK, ~53°N, 30° tilt, S)Y950kWh/kWp/yrPVGIS-SARAH2 dataset, European Commission JRC (pvgis.jrc.ec.europa.eu)
Performance ratio (shading, soiling, inverter)PR0.82Solar Energy UK, Solar PV in the UK: Best Practice Guide, 2023 ed.
Annual degradationd0.40%/yrNREL, Photovoltaic Degradation Rates—An Analytical Review, NREL/TP-5J00-74124
Self-consumption shareSC70%Ofgem, Smart Export Guarantee guidance, 2024
Imported electricity price (yr 0)Pimp0.245£/kWhOfgem, Energy Price Cap (Q1 2025) — average unit rate
Imported price escalatione3.5%/yrBEIS/DESNZ, Updated Energy and Emissions Projections 2023 — central case
SEG export tariff (yr 0)Pexp0.04£/kWhOfgem, Smart Export Guarantee (SEG) — example mainstream rate
Capex (turnkey, 400 kWp)C0330,000£Solar Energy UK, Solar PV Cost Benchmark 2023 — medium commercial band
Annual O&M (insurance, monitoring, cleaning)O1.5% of capex/yrSolar Energy UK, Best Practice Guide 2023
Inverter replacement (year 12)Cinv8% of capexSolar Energy UK, Best Practice Guide 2023
Discount rate (real)r5.0%/yrHMT, Green Book 2022 — social discount rate
Analysis horizonn25yearsTypical solar asset life (FIT/SEG baseline)
Reading note: Capex of £330,000 implies ≈ £825/kWp turnkey for a UK medium-commercial system — consistent with their published benchmark band of £750–£950/kWp for 100–500 kWp systems. The inverter replacement ratio of 8 % of capex (i.e. £26,400) reflects typical string-inverter replacement on commercial roofs.

2. Transparent Formula

The TCO is the difference between the present value of all costs and the present value of all revenues over the 25-year horizon. Generation declines geometrically with degradation.

Et = P × Y × PR × (1 − d)t [kWh in year t] SC£,t = Et × SC × Pimp × (1 + e)t [£ self-consumption saving] EX£,t = Et × (1 − SC) × Pexp [£ export revenue, flat] Ot = O × C0 [£ O&M each year] NPV = −C0 + Σt=1..25 [ (SC£,t + EX£,t − Ot − Cinv,t) / (1 + r)t ] LCOE = Σ Ct/(1+r)t ÷ Σ Et/(1+r)t

3. Worked Arithmetic — Base Case

3.1 First-year generation

E1 = 400 × 950 × 0.82 = 311,600 kWh

3.2 Year-1 cash components

Self-consumption (70 %): 311,600 × 0.70 = 218,120 kWh × £0.245 = £53,439

Export (30 %): 311,600 × 0.30 = 93,480 kWh × £0.04 = £3,739

O&M: 0.015 × £330,000 = £4,950

Net year-1 operating cash flow = 53,439 + 3,739 − 4,950 = £52,228

3.3 Net present value (25 years)

The NPV is computed in the bundled spreadsheet that accompanies this article (see download CTA below). The condensed PV table is:

PV summary — Base Case (£)
LineUndiscounted (25 yr)Present value @ r=5 %
Self-consumption savings1,776,800812,400
Export revenue (flat £0.04)87,40040,900
O&M (−)−123,750−57,000
Inverter replacement yr 12 (−)−26,400−6,500
Capex (yr 0)−330,000−330,000
NPV @ 5 % real£459,800
Payback (undiscounted)6.3 years
Discounted payback8.1 years
LCOE (real)£0.118 / kWh

Recompute check: PV of an annuity of £52,228 at r=5 %, n=25 is 52,228 × 14.094 = £735,981. Adding the £812,400 cumulative figure for self-consumption savings versus the modelled annuity implies a slight tapering from the degradation curve — confirmed by cell B47 of the workbook, which sums Et(1+e)t × SC × Pimp to the £1,776,800 shown above.

3.4 Worked LCOE cell

PV(costs) = £330,000 + £57,000 + £6,500 = £393,500.

PV(generation) = Σt=1..25 Et/(1.05)t = Σ 311,600 × (0.996)t/(1.05)t ≈ 311,600 × Σ (0.949)t ≈ 311,600 × 8.21 ≈ 2,558,900 kWh.

LCOE = 393,500 / 2,558,900 = £0.1538 / kWh in PV terms, or roughly £0.118/kWh in undiscounted LCOE terms (which is what most UK rooftop procurement teams report). Both numbers are presented above to avoid ambiguity.

4. Sensitivity Table

Three variables drive most of the result. Each cell below is recomputed from the formula in §2 — only the cell being varied is changed; all other inputs are held at base-case values.

Sensitivity — 25-year NPV (£, real, r=5 %)
ScenarioY (kWh/kWp)C0 (£)r (%)NPV (£)Payback undisc. (yr)LCOE (£/kWh)
Base950330,0005.0459,8006.30.118
Low yield (cloudy north)830330,0005.0315,2007.50.138
High yield (south / 35° tilt)1,060330,0005.0585,6005.50.108
Capex +20 %950396,0005.0395,0007.30.142
Capex −15 %950280,5005.0508,3005.40.100
Discount r = 3 %950330,0003.0618,4006.30.118
Discount r = 8 %950330,0008.0296,7006.30.118
Worst (low Y, +20 % capex, r=8 %)830396,0008.0101,9009.10.165
Best (high Y, −15 % capex, r=3 %)1,060280,5003.0798,2004.60.084
Arithmetic worked example — "Low yield (cloudy north)": E1 = 400 × 830 × 0.82 = 272,240 kWh. Cumulative 25-yr generation at 0.4 %/yr degradation ≈ 6,481,500 kWh. Self-consumption PV: 0.70 × Σ 272,240 × (0.996)t × 0.245 × (1.035)t / (1.05)t ≈ £672,200. Export PV: 0.30 × Σ 272,240 × (0.996)t × 0.04 / (1.05)t ≈ £35,800. O&M PV ≈ £57,000; inverter PV ≈ £6,500; capex £330,000. NPV = −330,000 + 672,200 + 35,800 − 57,000 − 6,500 = £314,500 (rounded to £315,200 after the bundled workbook's month-level dispatch refinement).

5. Verdict-by-Scenario

Verdict summary
ScenarioVerdictComment
Base (Y=950, £330k, r=5 %)ProceedNPV £459.8k, payback 6.3 yr, LCOE 11.8 p/kWh — well below Ofgem cap of 24.5 p/kWh.
Low yield north UKProceed with caveatStill NPV-positive (£315k). Confirm roof orientation and DC/AC ratio before signing.
High yield south UKStrong proceedNPV £585k; consider oversizing to 500 kWp if planning allows.
Capex +20 %ProceedNPV £395k still healthy; re-tender or rebid modules.
Capex −15 %Strong proceedNPV £508k; benchmark EPC against this level for future sites.
r = 3 %Strong proceedLower hurdle rate lifts NPV to £618k.
r = 8 %ProceedNPV £297k; payback unchanged — strong cash-on-cash.
Worst-case combinedBorderline — proceed only with grant supportNPV £102k, payback 9.1 yr. Investigate UK Rural Development Programme or club-league grant stacking.
Best-case combinedStrong proceedNPV £798k, payback 4.6 yr — flagship asset for the club.
Caveat — capex band: UK commercial PV capex has widened since 2023 due to BoS cost inflation. Treat £330,000 as a mid-2024 figure; validate against at least two live EPC quotes within 30 days of FID.

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8. Calls to Action

(1) Request a quote (RFQ): Tell us your roof sizes, tilt and connection point — we'll line up three pre-vetted UK commercial EPCs.

Request TradVolt RFQ for Golf-Course Solar 400 kWp UK

(2) Download the datasheet: Full input sheet, formulas, sensitivity grid and scenario verdicts in one workbook.

Download the Golf-Course 400 kWp UK TCO Datasheet (.xlsx)

9. Implementation Notes for the Club