Hayman House

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The first Passivhaus in North Wales, replacing an existing coach house.
Images Graphs Figures Description Strategies Building

Hayman House : Project images

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CO2 emissionsPrimary energy requirement
Energy target
PassivHaus

Energy and fuel use

Fuel use by type
Primary energy requirement
CO2 emissions
Renewables

Measured data from renewable generation is not yet available.

Fuel use

 Pre-developmentForecastMeasured
Electricity use - - -
Natural gas use- - -
Oil use- - -
LPG use- - -
Wood use- - -
Other Fuel - - -
 Pre-developmentForecastMeasured
Primary energy requirement - - -
Annual CO₂ emissions - - -
Annual space heat demand - 15 kWh/m².yr -

Renewable energy

Electricity generationForecastMeasured
Renewables Technology--
Other Renewables Tech--
Electricity consumed by generation --
Primary energy requirement
offset by renewable generation
--
Annual CO₂ emissions
offset by renewable generation
--

Calculation and targets

Whole house energy calculation method PHPP
Other whole house calculation method-
Energy target PassivHaus
Other energy targets-
Forecast heating load -

Airtightness

 DateResult
Pre-development air permeability test--
Final air permeability test03 May 20160.4m³/m².hr @ 50 Pascals

Project description

StageOccupied
Start date16 August 2015
Occupation date19 August 2016
Location Gresford Wrexham  Wales
Build typeNew build
Building sectorPrivate Residential
Property typeDetached
Construction typeOther
Other construction type140mm concrete block with 250mm EPS insulation & render
Party wall construction
Floor area 185.23
Floor area calculation method Treated Floor Area (PHPP)
Building certification  Passivhaus certified building Passivhaus certified building

Project Team

OrganisationEcoVert Solutions Ltd.
Project lead personTim Hulse
Landlord or ClientBaroness Walmsley and Lord Thomas of Gresford
ArchitectSimmonds Mills
Mechanical & electrical consultant Alan Clarke
Energy consultantAlan Clarke
Structural engineerBJSE
Quantity surveyor
ConsultantTim Martel
ContractorEcoVert Solutions Ltd.

Design strategies

Planned occupancyTwo
Space heating strategyGas system boiler with radiators
Water heating strategyGas system boiler with HW tank
Fuel strategyGas
Renewable energy strategy4kW Roof integrated solar PV with immersion link
Passive Solar strategy
Space cooling strategyNight time purging
Daylighting strategy
Ventilation strategyPaul MVHR
Airtightness strategy ProClima air tightness products
Strategy for minimising thermal bridges
Modelling strategyPHPP
Insulation strategyInsulated raft foundationWarmcel insulation to pitched roof250mm EPS external insulation with render finish from Wetherby Building SystemsGreen Building Store Progression triple glazed windows & doors
Other relevant retrofit strategies
Contextual information

Building services

Occupancy2
Space heatingA-rated mains gas condensing boiler
Hot waterAs above with separate HW storage
VentilationPaul MVHR
ControlsAs above
CookingElectric induction hob and electric oven
LightingAll LED
Appliances
Renewable energy generation system
Strategy for minimising thermal bridges

Building construction

Storeys 2
Volume -
Thermal fabric area -
Roof description
Roof U-value -
Walls description
Walls U-value -
Party walls description
Party walls U-value -
Floor description
Floor U-value -
Glazed doors description
Glazed doors U-value - -
Opaque doors description
Opaque doors U-value - -
Windows description
Windows U-value - -
Windows energy transmittance (G-value) -
Windows light transmittance -
Rooflights description
Rooflights light transmittance -
Rooflights U-value -

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