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Solar panels for farms in Pontefract

Farm buildings around Pontefract carry broad, shallow roofs that were put up for storage and stock, not for generation. What decides a farm scheme here is the state of the roof sheets and the incoming supply, which is why the survey looks at both before anyone sizes an array.

846 kWh per kWp a year at this latitude, so a 500 kWp array models at about 423,000 kWh. Source: EU PVGIS v5.2, SARAH3, 10 degree pitch, 14 percent system loss.

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96 m phase 1
Drawing Pontefract unit
Roof 96 x 62 m
Array 500 kWp
Yield 423,000 kWh/yr
Scale 1:500 / Rev A / WF8

Illustrative layout for a unit of this size. Your own figures come from the roof survey.

Pontefract / West Yorkshire
Yorkshire farmland below moorland with rooftop solar on farm buildings
Industrial stock of the kind we survey across Yorkshire and The Humber.

Agricultural rooftop solar across West Yorkshire

What a farm roof near Pontefract generates

Modelled irradiation at this latitude is 1083 kWh per square metre a year in the plane of a shallow-pitched roof, which works out at 846 kWh for every kWp installed (EU PVGIS v5.2, SARAH3, 10 degree pitch, 14 percent system loss). That is about 5 percent below the mean across the areas we cover, so the case here rests on using the output on the holding rather than exporting it.

2 roof mounted schemes are on record nearby. Roof arrays under a megawatt frequently never reach that database at all, so the real number of farm roofs generating around Pontefract is higher than the record shows.

Most of the buildings we look at here sit in the WF postcode area.

Wakefield is the planning authority for most holdings here, and it is the authority that decides whether an array on an agricultural building falls inside permitted development.

FIG. 1 What a Pontefract roof makes, month by month

What a Pontefract roof makes, month by month

Modelled output per kWp installed, for a shallow-pitched south-facing array. Source: EU PVGIS v5.2.

0255075100Jan: 20 kWh per kWpJanFeb: 37 kWh per kWpFebMar: 69 kWh per kWpMarApr: 99 kWh per kWpAprMay: 118 kWh per kWpMay118 kWh Jun: 114 kWh per kWpJunJul: 118 kWh per kWpJulAug: 103 kWh per kWpAugSep: 76 kWh per kWpSepOct: 47 kWh per kWpOctNov: 27 kWh per kWpNovDec: 18 kWh per kWpDec

May produces 6.6 times what Dec does on the same roof. A 500 kWp array here models at about 423,000 kWh across the year, but it arrives unevenly, which is why we size against your summer daytime load and then look at whether storage is worth adding for the shoulder months.

Monthly figures as a table
MonthkWh per kWp500 kWp array
Jan2010,000
Feb3718,500
Mar6934,500
Apr9949,500
May11859,000
Jun11457,000
Jul11859,000
Aug10351,500
Sep7638,000
Oct4723,500
Nov2713,500
Dec189,000
Source: EU PVGIS v5.2
FIG. 2 Pontefract against the rest of West Yorkshire
  • Pontefract846
  • Wakefield837
  • Dewsbury835
  • Leeds830
  • Bradford817
  • Ilkley813
  • Halifax812
  • Huddersfield811

Pontefract ranks 1 of 8 towns we cover in West Yorkshire on modelled yield, against a national mean of 886 kWh per kWp. The county runs from 811 to 846, a spread of 35 kWh per kWp. Within West Yorkshire that difference is small enough to ignore: where the building sits is not what decides this scheme, your consumption pattern is.

Bars are zero based, so length is proportional to the figure. Where a county is flat, that is the finding: location is not the lever, consumption is. Source: EU PVGIS v5.2, modelled per town

Solar already consented near WF8

From the government's Renewable Energy Planning Database, Q1 2026. These are the schemes on record in this postcode district, which is a fair guide to how the local network has been treating export applications.

Scheme Operator Capacity Mounting Status
Stuart Road - Solar Panels WM Morrisons Supermarkets Plc 0.39 MW Roof Awaiting Construction
Chep UK, Park Road - Solar Panels Chep UK Limited 0.79 MW Roof Awaiting Construction

Grid connection through Northern Powergrid

Northern Powergrid is the network operator here, and their answer on export capacity shapes the design. Any commercial array above 3.68 kW per phase connects under G99 rather than G98, and the application fixes what you are allowed to push back onto the network. If the local network is tight, limiting export rarely breaks the case here: most of the generation is consumed on site while the building is working.

Across West Yorkshire the planning database records 170 solar schemes totalling 550 MW, of which 8 are operational (REPD Q1 2026).

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Tell us where the unit is and roughly how big the roof is. We come back with what it can carry, what it would generate against your consumption, and the three ways to pay for it.

Lenzie Consulting Ltd arranges the survey and passes your details to our MCS-certified installation partner so they can quote.

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Questions about solar in Pontefract

What would a 500 kWp array produce on a farm near Pontefract?
Yes, and the figure matters more than the sunshine. At 846 kWh per kWp a year, a 500 kWp array on a Pontefract holding models at around 423,000 kWh. What changes the answer is how much of that the farm uses itself. Source: EU PVGIS v5.2, SARAH3, 10 degree pitch, 14 percent system loss.
Which network operator handles the connection around Pontefract?
Applications go to Northern Powergrid, who run the network across West Yorkshire. On a farm the incoming supply matters as much as their answer: a single phase supply caps what can be installed whatever the roof would take.
What does Wakefield require for solar on an agricultural building?
Roof-mounted panels on an agricultural building often fall under permitted development, subject to limits on projection above the roof plane and to the building not being listed or in a conservation area or National Park. We confirm the position with Wakefield before the design is finalised.
Has anyone near WF8 already done this?
The planning database records 0 ground mounted and 2 roof mounted solar schemes in this postcode district. That matters less as proof it works and more as evidence of how the local network has treated export applications. Roof arrays under a megawatt often never appear in the database, so the real figure is higher. Source: Renewable Energy Planning Database, Q1 2026.

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