ut zero-energy house

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UT Zero-Energy House “Layer House” University of Tennessee, Knoxville Arc 572 I Spring 2008 CONCEPT: LAYERING THE LAYER HOUSE IS A STUDY OF THE QUALITY AND CONDITIONS OF LIGHT AND SPACE WHICH ARE AFFECTED BY THE LAYERING OF OPERABLE ELEMENTS, FIXED STRUCTURAL ELEMENTS, AND MATERIALITY. THESE OPERABLE ELEMENTS ALSO FUNCTION AS PASSIVE HEATING AND COOLING STRATEGIES. THE IDEA OF LAYERING IS FOUND THROUGHOUT THE SCHEME, BOTH BY THE LAYERING OF SPACES THROUGH PHYSICAL BOUNDARIES, AS WELL AS THE BLENDING OF INTERIOR AND EXTERIOR SPACES. ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETY architecture materials comfort zone market viability kit of parts appliances energy balance engineering lighting hot water materials Concept diagram

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Page 1: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

CONCEPT: LAYERING

THE LAYER HOUSE IS A STUDY OF THE QUALITY AND CONDITIONS OF LIGHT AND SPACE WHICH ARE AFFECTED BY THE LAYERING OF OPERABLE ELEMENTS, FIXED STRUCTURAL ELEMENTS, AND MATERIALITY. THESE OPERABLE ELEMENTS ALSO FUNCTION AS PASSIVE HEATING AND COOLING STRATEGIES. THE IDEA OF LAYERING IS FOUND THROUGHOUT THE SCHEME, BOTH BY THE LAYERING OF SPACES THROUGH PHYSICAL BOUNDARIES, AS WELL AS THE BLENDING OF INTERIOR AND EXTERIOR SPACES.

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

Concept diagram

Page 2: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

SITE PLAN 1:1000

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

PREVAILING WIND DIRECTIONS

SUNCHART: SITE AT 35.8 DEGREES

Page 3: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

EXPLODED AXON

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

CIRCULATION GRID ZONES

Page 4: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

FLOOR PLAN

Page 5: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

NORTHEAST ELEVATION

Page 6: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

NORTHWEST ELEVATION

SOUTHEAST ELEVATION

Page 7: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

LONGITUDINAL ELEVATION

SOUTHWEST ELEVATION

Page 8: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

TRANSVERSE SECTION

Page 9: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

FUNCTIONAL VOLUME SECTION

Page 10: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

FUNCTIONAL VOLUME PLAN

Page 11: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

FUNCTIONAL VOLUME EXPLODED AXON FUNCTIONAL VOLUME SCHEDULE

Page 12: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

DETAIL SECTION

Page 13: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

NORTHWEST ELEVATION

Page 14: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

STEEL I BEAM

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

GLASS

STRUCTURALLY INSULATED PANEL

STEEL H COLUMN SIP WALLS

PRECAST CONCRETE SLABS

Page 15: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

VERTICAL LOUVERS

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

HORIZONTAL LOUVERS

PRECAST CONCRETE SLABS

FUNCTIONAL VOLUME MODULES FUNCTIONAL VOLUME

Page 16: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

CORTEN STEEL

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

TEAK

FUNCTIONAL VOLUME

LAMINATED BEECHWOOD

WOOD OPTIONS:

Page 17: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

PRECAST CONCRETE FLOOR

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

TEAK BEECHWOOD

WOOD OPTIONS:

WENGEWOOD VENEER WALNUT VENEER

CANVAS LIGHT DIFFUSING FIXTURES STAINLESS STEEL

Page 18: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

BED PERSPECTIVE

BEECHWOOD WENGEWOOD VENEER WALNUT VENEER

KITCHEN PERSPECTIVE

STORAGE PERSPECTIVE

DEN PERSPECTIVE

Page 19: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

SHADING CONDITION: APRIL 25, 9 AM

Page 20: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

SHADING CONDITION: APRIL 25, 12 PM

Page 21: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

SHADING CONDITION: APRIL 25, 5 PM

Page 22: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

PHOTOVOLTAICS: PV MEMBRANE

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

THERMAL MASS

SOLID VOLUMES

PRIMARY CIRCULATION WATER COLLECTION

EVACUATED TUBES

CROSS AND STACK VENTILATION

Page 23: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

POSSIBLE CONFIGURATIONS OF BASIC MODULE

ROW HOUSE

3 M

COURTYARD HOUSE

SQUARE

3 M

URBAN INFILL UNITS

Page 24: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

ROW HOUSE UNITS

Page 25: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

PLAN: COOLING STRATEGIES SECTION: COOLING STRATEGIES

Page 26: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

PLAN: DAYLIGHTING SECTION: DAYLIGHTING

Page 27: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

PLAN: HEATING STRATEGIES SECTION: HEATING STRATEGIES

Page 28: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

PLAN: WATER COLLCTION SECTION: WATER COLLECTION

Page 29: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

ENERGY REPORT: TYPICAL SUMMER CONDITIONS, DISPLAYING ALL ELEMENT

GROUPS

Page 30: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

ENERGY REPORT: EXTREME SUMMER CONDITIONS, DISPLAYING ALL ELEMENT

GROUPS

Page 31: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

ENERGY REPORT: TYPICAL SUMMER CONDITIONS, DISPLAYING TOTAL NET HEAT FLOW

Page 32: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

ENERGY REPORT: EXTREME SUMMER CONDITIONS, DISPLAYING TOTAL NET HEAT FLOW

Page 33: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

ENERGY REPORT: TYPICAL WINTER CONDITIONS, DISPLAYING ALL ELEMENT

GROUPS

Page 34: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

ENERGY REPORT: EXTREME WINTER CONDITIONS, DISPLAYING ALL ELEMENT

GROUPS

Page 35: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

ENERGY REPORT: TYPICAL WINTER CONDITIONS, DISPLAYING TOTAL NET HEAT FLOW

Page 36: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

ENERGY REPORT: EXTREME WINTER CONDITIONS, DISPLAYING TOTAL NET HEAT FLOW

Page 37: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

CISTERN SIZING CHART:

Page 38: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

PHOTOVOLTAIC ESTIMATE

Page 39: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

SHADING CRITERIA

Page 40: UT Zero-Energy House

UT Zero-Energy House“Layer House”University of Tennessee, KnoxvilleArc 572 I Spring 2008

ARCHITECTURE I INTERIOR I TECHNOLOGY I SOCIETYarchitecture materials comfort zone market viabilitykit of parts appliances energy balanceengineering lighting hot watermaterials

SHADING CRITERIA