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Site Location: Site Location: Gap Site at Bath Street and Pitt Street Plot: Plot: 50m x 50m Building Area: Building Area: 4000m 2 maximum Building Height:

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Presentation on theme: "Site Location: Site Location: Gap Site at Bath Street and Pitt Street Plot: Plot: 50m x 50m Building Area: Building Area: 4000m 2 maximum Building Height:"— Presentation transcript:

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2 Site Location: Site Location: Gap Site at Bath Street and Pitt Street Plot: Plot: 50m x 50m Building Area: Building Area: 4000m 2 maximum Building Height: Building Height: 25m maximum Occupancy: Occupancy: 400 People maximum Office Requirement: › General Office Purpose › 70% Open Plan and 30% Cellular Full Disabled Access Materials and Energy should be produced locally

3 Scott Morrison (Structural & Architectural Engineer) Form and Fabric Samantha Dowling (Structural & Architectural Engineer) Materials Renewables Nicolas Levaudel (Mechanical & Aerospace Engineering) Lighting HVAC Website Development Nicolas Soro (Mechanical & Aerospace Engineering) Lighting HVAC Website Development

4 Legend: Mechanical & Aerospace Engineers All EngineersStructural & Architectural Engineers

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6 Previously, site consisted of ‘The Temple Nightclub’ which burned down Existing landscape is extremely overgrown and abandoned Compromises of loose soil and lots of rubble with the vegetation growing through

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8 Image courteous of climatedata.eu

9 Energon Passive Office Building, Germany

10 1 Angel Square, Manchester

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12 Compactness = floor area/volume More compact less heat losses Simple Compact Form Short Dimensions Orientation towards South

13 Open Plan Office Space Atrium Cellular Offices N

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15 High levels of insulation > Walls < 0.15 W/m 2 K 'Thermal bridge free' construction Airtight building fabric > Maximum of 0.6 air changes per hour at 50 Pa (below and above atmospheric pressure) High performance windows with insulated frames > Glazing < 0.8 W/m 2 K Space Heating/Cooling Energy Demand is not to exceed 15kWh/m 2 of net living per year (an additional allowance for dehumidification for cooling) Primary Energy Demand is not too exceed 120kWh/m2 of floor area per year Thermal Comfort must be maintained throughout the year for all living areas at 25 ±2 °C

16 Timber › FSC Certified › No illegal sourced timber / got to be traceable Glazing › Low Emissivity Triple Glazed Transparent PV Glass Panels › PVGU › BIPV Concrete › Low Carbon Concrete › 50% recycled with GGBS › 50% recycled with PFA Steel › Recyclable up to 90% › Use of by-products when manufacturing the steel Insulation › Recycled Material › Natural Material

17 BIPV/PVGU, China

18 Low Carbon Concrete, Australia

19 Sustainability Measures to Consider Biomass and Biofuel Solar Thermal Collector PV CHP Ground/Air Source Heat PumpsGrey Water Harvesting Thermal Mass BEMS Feed-in-Tarriff Green Roof Ventilated Double Skin Facade

20 Lighting LEDFluorescent tube Low 50000 hours 40-90 lm/W High 18000 hours 40-70 lm/W CO2 Emission Lifecycle Efficiency

21 2 sorts of controlled ventilation system could be used : Mechanical Ventilation Heat Recovery (MVHR) :  breathe fresh air in dry rooms and extract air in wet rooms HVAC

22 Single flow with heat pump  water until 55°C HVAC

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