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2013 - TUR(I)NTOGREEN - THE STUDY OF URBAN FARM AND HOUSING - TURIN - IT URBANISM - INTERNATIONAL STUDENT COMPETITION - FA BUT LECTURER - JAN MLÉČKA , ING. ARCH. - TEAM MATE - ONDŘEJ HAMRNÍK

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2 0 13 - T U R ( I ) N T O G R E E N - T H E S T U D Y O F U R B A N F A R M A N D H O U S I N G - T U R I N - I TU R B A N I S M - I N T E R N A T I O N A L S T U D E N T C O M P E T I T I O N - F A B U TL E C T U R E R - J A N M L É Č K A , I N G . A R C H . - T E A M M A T E - O N D Ř E J H A M R N Í K

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Tur(i)nto

PROJECT SCOPE

The area of the FIAT will be the chance to provide Turin with a new model of urban life. Dwellings integrated with food production, housing for low income people and immigrants, with agricultural skills; spaces, services and features to let the younger generation reinvent their own way to work; urban farming that opens towards a new economy, including education, documen-tation, food retailing, agricultural and zoo-technical services.

revolvetion

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symbiosis &

diversity

self -

sustainabilityLIFE

BIRTH

ENERGY

LIFE

SOCIETYLIVING

NATURE

TRADE

EDUCATION

PRODUCTION

COHOUSING

CLOSEDGREENHOUSE

NATURE CORRIDOR

THEINDIVIDUAL

DEATH

synergy

Tur(i)nto

Revolve

tion

green

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THE SITE STORY

wORLD BIOCAPACITY

100% 100%

1,15 gh1,76 gh

100%

wORLD FOOTPRINT 2008

ITALY FOOTPRINT 2008

TURINTOGREEN FOOTPRINT

ITALY BIOCAPACITY ITALY BIOCAPACITY

390%

150%

CONCEPT OF SELF- SUSTAINABLE

PERFORMANCE

Closed self supporting system in maxi-mum extent possible.

Energy linked houses to greenhouse.Polyculture biosystem both in the green-

house and outdoor.Co-housing community system.Co-owning production system.

Market, administration, research and education facilities.

SYMBIOSIS

The concept uses integrated model Symbiosis in design developed by ELSIA (European Lead Sheet Industry Association)with categorization system above.

DIVERSITY

Keeping diversity in every and each category within the system.

HEALTH & HAPPINESS

the individual

CULTURE &ECONOMY

society

SPACE

CONTExT

TIME

. self-sufficient closed greenhouse connected with linked housing

. low or zero materials inputs

. rain and waste water conservation in greatest extent

. material and energy cycles are closed to greatest extent possible

. climate mitigation and adaptation strategies

. polyculture - diversity of plant and animal species

. natural feedback loops - self - sufficiency and endurance

. benefits of natural variations in thermal, lightning and moisture

. maximizing productivity per square meter by stacking in time and space

. natural ecosystems contribution

. production of excess wood and cellulose materials

. animals on top of priority - the part of ecosystem

. the greenhouse is economically viable in short to middle time period

. production of large scale quantities of marketable high quality products

. minimizing undesired and difficult labour

. flexibility in time and space

. support and respond to local food culture

. generating education, retial, recreation, social uses, research and development

. local production and logistics - minimal transportation

. long greenhouse space integrates into landscape - inspiring environment for staff and visitors

. integration of outdoor and indoor farming in connection with communities of co-housing linked

. co-owning models by local residents

. greenhouse and fast growing trees create barrier against highway and junction noise and pollution . safe and healthy environment designed inside of greenhouse and in outdoor natural and agricultural corridor . the polyculture brings low or zero use of chemicals. production of healthy and quality food for locals and wide neigh-bourhood. enjoyment to owners and residents through its role in the community and relevance to the local population. aesthetically pleasing design enriching landscape quality

ENERGY & MATERIALS

energy

ECOSYSTEMS & SPECIES

life

Source: ExCEPT - Integrated Sustainability Consulting & Design - High Performance Polyculture Systems / consulted with Michiel van der Vight MBA MSc - Process Manager

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RECOVERY AND DECONTAMINATIONTHE NEw INFRASTRUCTURE

CLOSED CONTINUOUS GREENHOUSE

CO - HOUSING MODULAR STRUCTURE

GREEN CORRIDOREDUCATION, ADMINISTRATION AND

MARKET FACILITIES

CO - HOUSING MODULAR STRUCTURE

THE CLOSED GREENHOUSE AND LINKED HOUSING ENERGY, MATERIAL, WASTE AND

WATER FLOW

THE HOUSING

THE CO-HOUSING

INFRASTRUCTURE

PRIVATE

PUBLIC

SEMIPRIVATE

COMMUNITY

MODULE 3x3 m SPACE 6x6 SPACE 6x9 SPACE 2x6x9

TURINTOGREEN FOOTPRINT

THE GREENHOUSE PLANTING CONCEPT

. planting modules

. hydroponic crops

. temperate crops in soil

. chickens

. mushrooms

. fish aquaculture

. bees

. vermiculture compost

. support crops

. plant nursery

. logistic centres

tropical cropstall and short

perennial zone(chilled)

mushrooms below, hydroponics above

annual zone (temperate all year)

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A

B

C

B

C

distributiontechnology

school

water

treatment

50m10m

SECTION CC

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MASTER PLAN

A

100m50m

market

place

distribution

research and development

greenhouses

universityfacilities

SECTION AA

SECTION BB

50m

50m

10m

10m

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SYNERGY

Mutually supporting functions in the area.

SYNERGY

Mutually supporting functions in the area.

PRODUCTION

TRADE

wATER

NATURE

LIVING

EDUCATIONSCIENCE

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