Ida Basic Portfolio

17
PORTFOLIO Architecture Urban Design Ida Basic

description

Selected works

Transcript of Ida Basic Portfolio

Page 1: Ida Basic Portfolio

PORTFOLIOArchitectureUrban Design

Ida Basic

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Longitudinal SectionCross Section

Elevation East

Elevation SouthElevation North

Elevation West

Architecture Studio - 3rd SemesterMalans, SwitzerlandZurich School of Applied Sciences

Ground Floor

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118-B

First Floor

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118-B

Ground Floor

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Alt Tobel

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Mostgasse

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138-A

143-A

137A

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136A

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150-A

Turnhalle

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160B

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Schermengasse

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Luggagas

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Nuttgasse

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Bovelweg

Luggagasse

Nuttgasse

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Architecture Studio - 4th SemesterVenice, ItalyZurich School of Applied Sciences

Cross Section

Floors 2 & 4

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Floors 1 & 3

Floors 2 & 4 Floor 5

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Architecture Studio - 5th SemesterSt. Gallen, SwitzerlandZurich School of Applied Sciences

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LUFTRAUM

667.10müM

Tor / InduktionsschlaufeB. = 6.75m

HALLE 9.1.2

8 ARENA

HALLE 9.1

HALLE 1.0

HALLE 1.1

F9AUSSENHALLE

HALLE 2.0

HALLE 2.1

HALLE 3.0

HALLE 3.1

P 8 / 9

TemporäresMesselager200 m2

TemporäresGastrolager95 m2

Küche150 m2

Restaurant660 m2

168 Sitzplätze

Messehalle1650 m2

Entrée250 m2

Entrée850 m2

Office Floor

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Parkzone 2. Ebene- 3.10

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Haustechnik1330 m2

HaustechnikParkhaus225 m2

Gastrovorbereitung1285 m2

Lager730 m2

Parkgarage (Anbau)1285 m2

78 neue Parkplätze2 Invaliden- Parkplätze

Ground Floor

Lower Level (Parking and Storage)

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Sitzungsräume265 m2

Lounge Sitzungsräume380 m2

Zwischengeschoss250 m2

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Kongresshalle2600 m2

Büro535 m2

Empfangsraum Kongress635 m2

Empfangsraum Kongress750 m2

Anlieferung

Congress CenterOffice Floor

Detailed Section

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Architecture Studio - 6th SemesterSt. Gallen, SwitzerlandZurich School of Applied Sciences

Facades

Ground Floor

Sections

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Detailed Section

Ground Floor Upper Floor

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Urban Design Studio - 1st SemesterLower East Side, New York, United StatesCity College New York

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Urban Map

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Final Review of the Master of Urban Design ProgramIda Basic

VERTICAL GARDEN HOUSING

Floors 1-4 1_200Greenhouse (300 m2) & Commercial Space (230 m2)

Floors 5-8 1_200Greenhouse (300 m2) & Office Space (320 m2)

Floors 9-12 1_200Greenhouse (300 m2) & Living space (320 m2)

Floors 19-25 1_200Greenhouse (300 m2) & Living space (320 m2)

Floors 13-18 1_200Greenhouse (300 m2) & Living space (320 m2)

MIXED USES IN ONE TOWER

Floor Area 875 m2

Total Floor Area 21‘875 m2

Total Commercial Space 920 m2

Total Office Space 1‘280 m2

Total Greenhouse Space 7‘500 m2

Total Studio Space 1‘060 m2 28 ApartmentsTotal 1 Bdr Space 664 m2 8 ApartmentsTotal 2 Bdr Space 1‘480 m2 20 ApartmentsTotal 3 Bdr Space 1‘640 m2 14 Apartments

20 VERTICAL GARDEN HOUSES

Total Floor Area 437‘500 m2

Total Studio Space 21‘200 m2 560 ApartmentsTotal 1 Bdr Space 13‘280 m2 160 ApartmentsTotal 2 Bdr Space 29‘600 m2 400 ApartmentsTotal 3 Bdr Space 32‘800 m2 280 Apartments TOTAL APARTMENTS 1‘400 APARTMENTS 2‘800 NEW RESIDENTS

ENERGY SCHEME 1_500

Wind turbine for energy production

Wind turbine for pumping of used water and rain water

Generator

Waste water treatment

Rain water treatment

Water cycle

VERTICAL SECTION 1_500

IRRIGATION SCHEME MODULAR SYSTEM SECTION 1_100

Gro Wall Modules

Drip System

ENERGY PRODUCTION

WIND

Located at the top of every tower, two large wind turbinesdirected towards the dominant winds produce electricity fa-ciliated 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.

SUN

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.

WATER REUSE

RAINWATER

After filtration, the rainwater is reused for the facilities of the offices and residences and the wa-tering of the greenhouses. The rainwater of the ur-ban development, from the facades and rooftops of the towers is collected, pumped by the windmachines then stored in tanks at the rooftop.

BLACK WATER

Black water produced by the tower is recycled and purified in order to feed and to fertilize the agri-cultural production of the greenhouses.

VERTICAL GARDEN HOUSING ALONG THE EAST RIVER

Floorplans

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Urban Design Studio - 2nd SemesterIstanbul, TurkeyCity College New York

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20.0

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14.0

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CATCHMENT TANK100 l

NYLON MESH0.3 X 0.3 m200 Dollar/ mesh

CATCHMENT GUTTER

FRAME

Fog catchment is an innovative way to provide more water in countries with water deficiencies. This idea was introduced by the Canadian vo-lonteer 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.

Yeni şehir water needsDaily water amount

Residents (225l/ person/ day) 200'000 4'500'000 lWater from fog catchment 200 l/ foggy day 14'000 lWater from reservoirs 520'700'000 l/ year 21'031'876 lTotal water 520'744'000 l/year 21'045'876 lSurplus 499'698'124 l/ year

Regional Map

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Nolli Plan

Density Map