Ida Basic Portfolio

Page 1

PORTFOLIO Architecture Urban Design

Ida Basic


Architecture Studio - 3rd Semester Malans, Switzerland Zurich School of Applied Sciences

Elevation East

Cross Section

Longitudinal Section

Elevation North

Elevation South

Elevation West


95400910270

110A

Luggagasse

108-B

116A

95400910269

106

108A

118-B

115

119-A

107

Bovelweg

Luggagasse

119-B

108

119

95400911008

110-A

118

165-A

95400910277

95400910250

127

110

118-B

111-A

165

115A

128A

95400911007 95400911007

128

118

129

130-A

131 111

164 163

130

132

117

166

117-A

116

133

114

166-A

133A

112

Alt Tobel

95400910225

95400910275

141 167

160A

Schermengasse 113

161

95400910249

134-A 160

167-A

95400910274

136

95400910273

136A

160-A

135

168

135-A

95400911007 95400911007

134

Mostgasse

160B

138-A

169

95400910224

95400911006

154

137A

154A

159

138

Nuttgasse

156A

170

130-A

158

154-A

95400910290

156

134A

157

Turnhalle

150-A

171

137

Nuttgasse

152

95400910223

153

156-A

143-A

131

Ground Floor 130

132

118

95400911007 95400911007

130-A

131

First Floor


Architecture Studio - 4th Semester Venice, Italy Zurich School of Applied Sciences

Cross Section


Floors 2 & 4

Floor 5

Floors 1 & 3


Architecture Studio - 5th Semester St. Gallen, Switzerland ±0.00

Temporäres Messelager 200 m2

HALLE 3.1

HALLE 2.1

HALLE 3.0

HALLE 2.0

±0.00

Messehalle 1650 m2

±0.00 ±0.00

Entrée 850 m2

Entrée 250 m2

±0.00

Temporäres Gastrolager 95 m2 ±0.00

HALLE 1.1

±0.00

Restaurant 660 m2 168 Sitzplätze

Küche 150 m2

HALLE 1.0

F9 AUSSENHALLE

LUFTRAUM

Tor / Induktionsschlaufe B. = 6.75m

8 ARENA

HALLE 9.1.2

HALLE 9.1 667.10müM

P 8/9

Ground Floor

Haustechnik 1330 m2 -4.50

Lager 730 m2 -4.50

Gastrovorbereitung 1285 m2 -4.50

Parkgarage (Anbau) 1285 m2 78 neue Parkplätze 2 Invaliden- Parkplätze

öffnung bei Erweiterung 6.00 x 2.10

-4.50

öffnung bei Erweiterung 6.00 x 2.10

Zurich School of Applied Sciences

Parkzone 2. Ebene - 3.10

Haustechnik Parkhaus 225 m2

Lower Level (Parking and Storage)


Anlieferung +6.30

Lounge Sitzungsr채ume 380 m2

Kongresshalle 2600 m2

+4.00

+8.00

Empfangsraum Kongress 750 m2 +8.00

Zwischengeschoss 250 m2 +4.00

Empfangsraum Kongress 635 m2

Sitzungsr채ume 265 m2 +4.00

+8.00

B체ro 535 m2 +8.00

Office Floor

Congress Center

Detailed Section


Architecture Studio - 6th Semester St. Gallen, Switzerland Zurich School of Applied Sciences

Sections

Facades


Ground Floor

Upper Floor

Detailed Section


Urban Design Studio - 1st Semester Lower East Side, New York, United States City College New York


Urban Map


n Design Program

VERTICAL GARDEN HOUSING

ENERGY SCHEME 1_500

Wind turbine for pumping of used water and rain water

Wind turbine for energy production

Generator Waste water treatment

Floors 1-4 1_200

Floors 13-18 1_200

Greenhouse (300 m2) & Commercial Space (230 m2)

Greenhouse (300 m2) & Living space (320 m2)

Rain water treatment

Water cycle

ENERGY PRODUCTION WIND Located at the top of every tower, two large wind turbines directed towards the dominant winds produce electricity faciliated by the height of the tower. The produced electric power is about 200 to 600 kWh per annum. These wind machines are also used as station of pumping in order to ensure the circulation and the reciclyng of rainwater recovered in roof and on the urban development of the complex.

Floors 5-8 1_200

Floors 19-25 1_200

SUN

Greenhouse (300 m2) & Office Space (320 m2)

Greenhouse (300 m2) & Living space (320 m2)

4‘500 m2 of photovoltaic panels south-facing included into the facades and the roof generate electricity from solar energy at the rate of 700‘000 to 1 million kWh per annum. Competed with the wind turbines, this vertical garden houses are self sufficient buildings.

Drip System

MIXED USES IN ONE TOWER Floor Area Total Floor Area

875 m2 21‘875 m2

Total Commercial Space Total Office Space Total Greenhouse Space

920 m2 1‘280 m2 7‘500 m2

Total Studio Space Total 1 Bdr Space Total 2 Bdr Space Total 3 Bdr Space

1‘060 m2 664 m2 1‘480 m2 1‘640 m2

28 Apartments 8 Apartments 20 Apartments 14 Apartments

Gro Wall Modules

20 VERTICAL GARDEN HOUSES Total Floor Area

Total Total Total Total TOTAL

Floors 9-12 1_200 Greenhouse (300 m2) & Living space (320 m2)

Studio Space 1 Bdr Space 2 Bdr Space 3 Bdr Space APARTMENTS

437‘500 m2

21‘200 13‘280 29‘600 32‘800

m2 m2 m2 m2

560 160 400 280 1‘400 2‘800

Apartments Apartments Apartments Apartments APARTMENTS NEW RESIDENTS

MODULAR SYSTEM SECTION 1_100

VERTICAL GARDEN HOUSING ALONG THE EAST RIVER

VERTICAL SECTION 1_500 WATER REUSE RAINWATER After filtration, the rainwater is reused for the facilities of the offices and residences and the watering of the greenhouses. The rainwater of the urban development, from the facades and rooftops of the towers is collected, pumped by the windmachines then stored in tanks at the rooftop.

Floorplans

BLACK WATER Black water produced by the tower is recycled and purified in order to feed and to fertilize the agricultural production of the greenhouses.

IRRIGATION SCHEME



Urban Design Studio - 2nd Semester Istanbul, Turkey City College New York



Regional Map

Yeni şehir water needs Residents (225l/ person/ day) Water from fog catchment Water from reservoirs Total water Surplus

200'000 200 l/ foggy day 520'700'000 l/ year 520'744'000 l/year 499'698'124 l/ year

Daily water amount 4'500'000 l 14'000 l 21'031'876 l 21'045'876 l

32.0

NYLON MESH 0.3 X 0.3 m 200 Dollar/ mesh

20.00

14.0

FRAME

CATCHMENT GUTTER

CATCHMENT TANK 100 l

Fog catchment is an innovative way to provide more water in countries with water deficiencies. This idea was introduced by the Canadian volonteer organization Fog Quest which operates since 1987.  The idea is to buy very inexpensive meshes which are made from recycled nylon from all over the world and spann it into a frame with a gutter and either spann the whole construction between trees or put it like a sign in an area known for a lot of foggy days. The fog is being caught in the mesh and the fresh water drops down the mesh to the catchment gutter which is connected with a catchment tank. Each mesh can catch around 200 liters of water on a foggy day. Because Istanbul is known for a lot of fog (around 240 days per year) I thought it might be very helpful to use this system in the natural forest surrounding my city and produce around 5‘000‘000 additional liters of water annually that can be either cleaned for drinking or used for agriculture or domestic use. With 100 meshes spanned between trees in the forest, the whole system would cost only 20‘000 Dollars.


Nolli Plan

Density Map


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