ARC20001_2020_Flutter

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flutter

shanally thanthrimudali + peter gatt mietta charlwood + rebecca king

ARCHITECTURAL DESIGN STUDIO 2 (CONSTRUCTION) SEMESTER 1 2020


KEY: CURRENT FOOT TRAFFIC

TRAIN LINE

MAJOR ROADS

site analysis

AD BUILDING SWINBURNE UNIVERSITY OF TECHNOLOGY (HAWTHORN CAMPUS)


site overview

KEY: CURRENT FOOT TRAFFIC

TRAIN LINE

FOCUS AREA


focus area

KEY: CURRENT FOOT TRAFFIC

FOCUS AREA

PROPOSED INCREASED FOOT TRAFFIC


proposed form

BACK ELEVATION

SIDE ELEVATION


changes to site


renovated site

KEY: PROPOSED INCREASED FOOT TRAFFIC

PROPOSED FORM


construction strategy (precedents)

c

a

a b c

b that inspired;

lincoln park pavilion - studio gang architects continuous wave that makes such a structured form, the way the wood joins to other members aspen museum - shigeru ban the sandwhich structure that features a wave existing in a grid and the shadows created center pompidou - shigeru ban free-form overall structure, the way it molded around existing buildings


conceptual form

1 - CREATE SURFACES BOUNDARY PANELS FROM CURVES

2 - CREATE ROUGH SURFACE

3 - SMOOTH SURFACE

4 - OFFSET SURFACE TO CREATE SANDWHICH


applied tectonic system


breakdown of layers TOP LAYER

1 - Start with Base Surfaces.

2 -Divide Surfaces into points.

3 - Create Curves through points.

4 - Repeat for other direction.

5 - Extrude Beams.

2 -Divide Surfaces into points.

3 -Interpolate Curves between points.

4 - Repeat for other direction.

5 - Extrude Beams.

MIDDLE LAYER

1 - Start with Base Surface and Offset Surface.

BOTTOM LAYER

1 -Start with Offset Surface.

2 - Divide Surfaces into points.

3 - Create Curves through points.

4 - Extrude Beams.


exploded axonometric

PLEXIGLASS (OUTSIDE)

TOP LAYER

MIDDLE LAYER

COMPLETE CONSTRUCTION METHOD

BOTTOM LAYER


BOTTOM TO MIDDLE


MIDDLE TO TOP GRID


TOP GRID


connection details PLEXIGLASS ROOFING


density study

1000 X 1000

650 X 650

450 X 450


materials study CLADDING

5 mm PLEXIGLASS

GREY BOX EUCALYPTUS TIMBER MEMBERS PLEXIGLASS

TOP LAYER

WIDTH 100mm THICKNESS 35mm GLUE LAMINATED BECAUSE OF EXTREME BENDING, LITTLE TWISTING

GLUE LAMINATED

MIDDLE LAYER

WIDTH 40mm THICKNESS 50mm CNC ROUTERED BECAUSE EACH MEMBER IS FLAT

CNC ROUTRED

BOTTOM LAYER

WIDTH 35mm THICKNESS 100mm STEAM BEND BECAUSE EXTREME BENDING AND TWISTING

STEAM BEND



concept on site




floor plans

GROUND FLOORPLAN 1:100 @ A3


FIRST FLOORPLAN 1:100 @ A3


elevations

EAST ELEVATION

WEST ELEVATION


sections

SECTION A:A


SECTION B:B


connection details to existing site TO EXISTING WALLS


TO INTERNAL ROOF


renders





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