http://archinect.com/IuliiaFomina
iuliia fomina EDUCATION: Bachelor of Architecture Florida Atlantic University, Fort Lauderdale, FL 05.2011 -08.2015 Eastern European Linkage Institute Award Program, accredited Bachelors of Architecture, Final GPA: 3.62 Certificate of completion ARS Summer Architecture Academy (Beuth 05.2012 Hochschule fur Technik /University of Florence). Intensive seminar on Efficient and Sustainable Design.
Lower division curriculum Samara State University of Architecture and Civil 2009-2011 Engineering.Samara, Russia. Urban Planning and Architecture. High School Diploma Samara School # 132. Samara, Russia. Intensive 2004-2009 curriculum of Physics, Chemistry and Biology.
Diploma of Completion Raduga Art School-Studio. Samara, Russia. 2003-2007 Diploma of Completion Samara Musical School # 6. Samara, Russia. 1999-2007 Honour Graduate Samara School # 25. Samara, Russia. Intensive focus 1999-2004 English language studies. ACADEMIC LEADERSHIP: 05.2016 03.2015 Membership 10.2013 Exhibition and Research Project 03.2013 Finalist, Category: Special Award
ACSA Creative Achievement Award. Cited projects on winning entry: Computational Design Methods and Projects by professor Emmanouil Vermisso Tau Sigma Delta. National Honor Society in Architecture and Allied Arts 2013 Sea Level Rise Subtropical Cities Conference Directed research project, selected work: Urban Amphibious Redevelopment Trimo Urban Design International Architecture Competition. Team entry. Category award.
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DIGITAL: Adobe Package (Photoshop, Illustrator, InDesign) Rhinoceros 5.0 Grasshopper Graphisoft ArchiCad
ANALOGUE:
Autodesk Ecotect Analysis Autodesk Revit & Open Studio Autodesk AutoCad Google SketchUp Arduino
Hand sketching Model Construction Laser cutting Rendering Photography
Sculpting, Casting Dry/Wet/Mixed Media Collage Technique Batik Paper Mache
EMPLOYMENT: 09.2015 - current
Kobi Karp Architecture and Interior Design, Miami, FL -Project Inception: Conceptual and Schematic Design, Presentation and Material Preparation -City Submissions: Planning, Zoning, Urban Development Review and Historic Preservation Presentations and Project Development.
10.2013-10.2014
PDT International, Fort Lauderdale, FL - Schematic Design of Commercial Centers and Retail Spaces in Central America - Presentation and Material Preparation, Graphic Design, 3D Visualization - Industrial design of Commercial Equipment, Retail and Signage - Vendor and rendering consultant interaction. EnglishSpanish translations relating to Interior Design and Architecture
02.2013-08.2013
Glavovic Studio, Inc., Fort Lauderdale, FL - Marketing, Material and Drawing documentation - Portfolio and Drawing Material Preparation - Exhibition and Conference Management - Schematic and design development document support - Web Design and Social Media Outlets Management - 3D Visualization, Clerical Assistance
04.2012
VIA Design Studio, Miami, FL - Schematic Design of Restaurant Outdoor Area, Landscape Design - Design Documentation, 3D Vizualization
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FORM
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STRUCTURE EMERGENCE: AGGREGATES MATERIAL AND ADJUSTABLE CASTS LIGHT
Florida Atlantic University | Emergent Form | Iuliia Fomina, Francys Lynn, Andrei Borodi | Summer 2015 | critic Emmanouil Vermisso, Frederic Merle
SELF - ORGANIZATION Colored by aquarelle excessive water amounts move the fibres apart
Aquarelle + Paper (open, positive feedback system)
The change (water dyed by aquarelle) was pervaded by the paper fibres by its relocation which led to over moisturising of the paper visible on the other side of the sheet.
Incoming change Incoming change
positive feedback
positive feedback | negative feedback
system changed
system unchanged | system changed
Incoming change negative feedback system unchanged (or tends to)
The task of selective system is to bring two types of systems together. Additional condition would differentiate other responsive behaviours : accept change, decline change, accommodate change to situation and other scenarios.
Selected
Viper scales (more closed, negative feedback system) traps the light locomotion
limits H2O evaporation Beta - layer (beta kerotine) Intermediate (lipids) Alpha - layer (alpha kerotine)
Light trapping scales (microscope)
A viper’s skin qualities of locomotion and light trapping via skin scales, respond to changes in the environment by keeping the system unchanged (negative-feedback).
Snake’s skin
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Sand and adjustable casts were the main agents in the bottom-up, form-finding process. Aggregates consist of finer particles which set up the behavior of the material when looked at larger quantities. Sand as the product of weathering and erosion on the smaller scale acts as a crystal of a mineral. In nature, the bigger amounts of sand like dunes, pits and landslides act to find an optimal shape to resist gravity, wind, water and earthquakes. In our experiment, the sand was explored as an agent which delivered structural simulations under the rules borrowed from the logic of Jorn Utzon’s self-organizing structures.
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Sand Progressions Intersecting rotated hyperboloids
Voronoi network
+
=
Through the precedent study of Antonio Gaudi’s work and its analysis by Mark Burry the parallel was made between sand self-forming processes and strict geometrical schema of the design of the Sagrada Familia Cathedral. Particularly, the application of rotated hyperboloids and the system of their intersections was intuitively adopted into the process of form – finding and later, was supported by experiments studying its structural efficiency.
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Rules of sand geometry
Rotated Hyperboloid formed by 50 hyperbola tangential lines
Rotated Hyperboloid formed by 10 hyperbola tangential lines
Rotated Hyperboloid formed by 3 hyperbola tangential lines
Morphologies of sand draining
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Structural Profiles from Jorn Utzon’s Sydney Concourse beams (wood model)
Von Mises Force (higher stress)
Von Mises Force (lower stress)
In the work of Jorn Utzon such as the Sydney Opera House, the Kuwait National Assembly and the Zurich Theatre, the idea of adjustable casts was connected to the structural performance. Virtually, the structural roof modules of these projects consisted of infinite numbers of structurally sufficient profiles to explore the full system capacity. Realistically, the task of designing an infinitely great number of options is impossible, but the application of associative rules on a virtual level can provide endless results. page 7
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Morphologies of mechanical frames based on the Utzon’s Concourse Beam
Polygons and weight
Applied weight: between and at the end of profiles
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Applied weight at the top of geometry
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Models fabricated and casted based on the structure formation from Jorn Utzon’s work Sand forming
Population with voronoi cells
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RS
CELLS SECTIONS
2ND GENERATION
ERS NTERS
CTIONS
1ST GENERATION
S
CTIONS
2ND GENERATION
BUNDLES FOLLOW STEEL REINFORCEMENT TO THE LOAD APPLICATION OF WEIGHT CELL CENTERS POLYGONS NUMBER OF PROFILE PROPORTIONAL fomifomifomina@gmail,com DIRECTLY ON THE PROFILE CAPILLAR TENSION REINFORCE PROFILE TO THE LOAD BUNDLES FOLLOW OF WEIGHT PROFILE FREQUENCY PROPORTIONAL REINFORCE THE AREA OF BETTER APPLICATION STRUCTURE RIDGES BETWEEN THE PROFILE TO THE LOAD LOAD APPLICATION CAPILLAR TENSION STRUCTURAL PIECE BUNDLES FOLLOW SAND RIDGES PROFILES CELL CENTERS SAND DRAINING FORCES GRAVITY LOAD LIGHT
S
:
GEOMETRY PREDICTION
STRUCTURAL PIECE SAND RIDGES SAND DRAINING
GEOMETRY PREDICTION
PROFILES FORCES
GRAVITY LOAD LIGHT
NG OF SAGRADA LA FAMILIA WINDOWS
Sand Simulation Template
STEEL REINFORCEMENT REINFORCE PROFILE REINFORCE THE AREA OF LOAD APPLICATION VOLUME POPULATION BY PIXEL ANALYSIS
BETTER STRUCTURE
GH DEFINITION
SCAN AND SOLVE STRUCTURAL ANALYSIS
PARAMETRIC PROFILES DERIVED FROM THE EXTERNAL FORCE
PARAMETRIC PROFILE
CATENARY FUNCTIO FORCE APPLICATIO
EMERGENT BEAM GEOMETRY IN ACCORDANCE WITH STRUCTURAL EFFICIENCY
П FROM ‘T’ TO ‘ ’ SHAPE
PR SYDNEY OPERA: CONCOURSE BEAMS PARAMETRIC PROFILES BY JORN UTZON GH DEFINITION CATENARY FUNCTION FROM ‘∩’ TO ‘U’ SHAPE KUWAIT NATIONAL ASSEMBLY: ROOF GEOMETRY VOLUME POPULATION SCAN AND SOLVE STRUCTURAL ANALYSIS FORCE APPLICATION BY JORN UTZON BY PIXEL ANALYSIS FROM ‘∩’ TO ‘-’ SHAPE FROM ‘U’ TO ‘-’DERIVED SHAPE ZURICH THEATRE: FOLDED GEOMETRY PARAMETRIC PROFILES EMERGENT BEAM GEOMETRY INROOF ACCORDANCE JORN UTZON FROM THE EXTERNAL FORCE WITH STRUCTURALBY EFFICIENCY П FROM ‘T’ TO ‘ ’ SHAPE
Top view
SLIDING BEAM PROFILES
FROM ‘∩’ TO ‘U’ SHAPE FROM ‘∩’ TO ‘-’ SHAPE FROM ‘U’ TO ‘-’ SHAPE
G OF SAGRADA LA FAMILIA WINDOWS
Point Population
Scan and SolvePREC SYDNEY Sydney OPERA: Beam CONCOURSE BEAMS BY JORN UTZON KUWAIT NATIONAL ASSEMBLY: ROOF GEOMETRY BY JORN UTZON ZURICH THEATRE: FOLDED ROOF GEOMETRY BY JORN UTZON
Population with points
Drain Surface
Fall Surface
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RIDGES INTERSECTIONS
SCALAR GUIDES ROTATION SET
ABOND (FROZEN) ZEN)
E-
1ST GENERATION
CELL CENTERS http://archinect.com/IuliiaFomina RIDGES INTERSECTIONS
(FROZEN)
2ND GENERATION
CAPILLAR TENSION BUNDLES FOLLOW CELL CENTERS
RE
CELL CENTERS
RE
Structural surface analysis (Grasshopper definition) FAILURES
PLASTIC
STRUCTURAL PIECE
SILICONE VERSABOND
SAND RIDGES SAND DRAINING
SUCCESS
PLASTER OF PARIS
Outlines SHEETROCK
of the cluster beam strong areas
ANIZATION
ARTIFICIAL AGGREGATE PHYSICS: 40° AND HIGHER
VORONOI BOUNDARIES ROTATED HYPERBOLOID SUBSTRACTION
A LA FAMILIA ONIO GAUDI
STRICT GEOMETRICAL SCHEMA
IVE ASPECTS OF LA FAMILIA BURRY
GEOMETRY PREDICTION
NATURAL SAND PHYSICS: 30° SLOPE
EXPLORATION NEEDED
HYPERBOLIC PARABOLOID
Geometry Prediction
HELICOID HYPERBOLOID OF REVOLUTION
DIGITAL SCULPTING OF SAGRADA LA FAMILIA WINDOWS
Diameter: 1 ft
Diameter 3 ft Cross dim: 3.5 and 5.2 ft
Cross dim: 3.8 ft and 3 ft
Intersection of maximum strength areas: the structural analysis of the single beam and the cluster of six
Cross dim: 1.6 ft and 1 ft
Outlines of the single beam strong areas
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ST
PROFILES FORCES
GRAVITY LOAD LIGHT
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TEEL REINFORCEMENT
CASTING
EINFORCE PROFILE
EINFORCE THE AREA OF LOAD APPLICATION VOLUME POPULATION BY PIXEL ANALYSIS
BETTER STRUCTURE
GH DEFINITION
SCAN AND SOLVE STRUCTURAL ANALYSIS
PARAMETRIC PROFILES DERIVED FROM THE EXTERNAL FORCE
PARAMETRIC PROFILES
COMPUTATION
CATENARY FUNCTION FORCE APPLICATION
EMERGENT BEAM GEOMETRY IN ACCORDANCE WITH STRUCTURAL EFFICIENCY
П FROM ‘T’ TO ‘ ’ SHAPE
SYDNEY OPERA: CONCOURSE BEAMS PRECEDENT STUDIES COMPUTATION PARAMETRIC PROFILES BY JORN UTZON GH DEFINITION CATENARY FUNCTION FROM ‘∩’ TO ‘U’ SHAPE KUWAIT NATIONAL ASSEMBLY: ROOF GEOMETRY VOLUME POPULATION SCAN AND SOLVE STRUCTURAL ANALYSIS FORCE APPLICATION BY JORN UTZON BY PIXEL ANALYSIS FROM ‘∩’ TO ‘-’ SHAPE FROM ‘U’ TO ‘-’ SHAPE ZURICH THEATRE: FOLDED GEOMETRY PARAMETRIC PROFILES DERIVED EMERGENT BEAM GEOMETRY INROOF ACCORDANCE JORN UTZON FROM THE EXTERNAL FORCE WITH STRUCTURALBY EFFICIENCY
ARRAY OF SIX BEAMS
П FROM ‘T’ TO ‘ ’ SHAPE FROM ‘∩’ TO ‘U’ SHAPE FROM ‘∩’ TO ‘-’ SHAPE FROM ‘U’ TO ‘-’ SHAPE
SYDNEY OPERA: CONCOURSE BEAMS BY JORN UTZON
PRECEDENT STUDIES
KUWAIT NATIONAL ASSEMBLY: ROOF GEOMETRY BY JORN UTZON ZURICH THEATRE: FOLDED ROOF GEOMETRY BY JORN UTZON
Sydney Beam Cluster Scan and Solve
Top view: 6 beams
Point Population Light Wells - rendering of the ceiling surface
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Fabrication
Sandbox
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Casting is another physical form of the loose aggregate which underwent the process of solidification, whether when combined with the binding mixture or just hardened by pressure or temperature. Casting is a snapshot of possible consequences of aggregate behaviour iterations and it is solidified for a very particular use. Although the consistency of the cast formula is homogenous, the sectional qualities may vary in pursue of the material optimization and the structural stability.
Shadow casting
Geometry templates
Liquid Rubber Coating
Cotton layering with the cast mixture
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Dry cast
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Rendering of the ceiling surface created by the self-organization of sand
Analogue and digital results overlayed: sand experiment and voronoi geometry
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MORPHOLOGIES OF SIMPLE GEOMETRY GENERATED BY SAND
AGGREGATES
NUMBER OF OPENINGS
1 AND 3
SHAPE OF OPENINGS
SQUARE- RECTANGLE-CIRCLE-OVAL-STAR RADIAL EXPANSION CENTRALIZED-TRIANGULATED GRID SYSTEMS NON OVERLAPING
ARRANGEMENT OF OPENINGS
WET THRE
SAND BOX PROTOTYPE SAND BOX FABRICATION
MULTI-LAYERED SAND DRAINIAGE
COARSE SAND (30°) + VERSABOND (40°) FINE SAND(30°) + VERSABOND (67°) COMPUTATION
SPRAY ON GLUE-
COTTO
RIDGES INTERSECTIONS
ROTATION SET
WATER - VERSABOND (FROZEN) WATER - (FROZEN)
SOAP+WATER
VORONOI CELLS (RIDGES) CELLS CENTERS (HOLES)
STRAIGHT CROSS GRID PROGRESSION INTO DIAGONAL CROSS GRID DIAGONAL CROSS GRID
SCALAR GUIDES CASTING
THREAD
NON OVERLAPING OFFSET OVERLAPING OFFSET OVERLAPING + CROSS GRIDS
SMALL BOXES FOR QUICK EXPERIMENTATION
CONTRAPTIONS
ENVIRONMENT
1ST GENERATION
CELL CENTERS RIDGES INTERSECTIONS
(FROZEN)
2ND GENERATION
CELL CENTERS FAILURES
CLEAR COAT - PLASTIC CLEAR COAT - SILICONE
S SA
SUCCESS
CLEAR COAT - VERSABOND CLEAR COAT - PLASTER OF PARIS CLEAR COAT - SHEETROCK SAND SELF-ORGANIZATION
ARTIFICIAL AGGREGATE PHYSICS: 40° AND HIGHER
VORONOI BOUNDARIES ROTATED HYPERBOLOID SUBSTRACTION
PRECEDENT STUDIES
SAGRADA LA FAMILIA BY ANTONIO GAUDI
STRICT GEOMETRICAL SCHEMA
GENERATIVE ASPECTS OF SAGRADA LA FAMILIA BY MARK BURRY
GEOMETRY PREDICTION
NATURAL SAND PHYSICS: 30° SLOPE
EXPLORATION NEEDED
HYPERBOLIC PARABOLOID HELICOID HYPERBOLOID OF REVOLUTION
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DIGITAL SCULPTING OF SAGRADA LA FAMIL
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EADS
DS
WEIGHTS
ON
YES NO
CAPILLAR TENSION BUNDLES FOLLOW RIDGES
SQUARE AND TRIANGLE
4-PIECE PROFILE
SQUARE, TRIANGLE AND PENTAGON
5-PIECE PROFILE
SQUARE, TRIANGLE, PENTAGON,HEXAGONAL AND ‘I’
8-PIECE PROFILE
ELONGATION OF PROFILE PROPORTIONAL TO THE LOAD POLYGONS NUMBER OF PROFILE PROPORTIONAL TO THE LOAD PROFILE FREQUENCY PROPORTIONAL TO THE LOAD
CAPILLAR TENSION BUNDLES FOLLOW CELL CENTERS
APPLICATION OF WEIGHT DIRECTLY ON THE PROFILE
MORPHOLOGIES OF SIMPLE GEOMETRY OF BEAM PROFILES
SLIDING BEAM PROFILES
APPLICATION OF WEIGHT BETWEEN THE PROFILE
CONTRAPTIONS
FAILURE
STEEL REINFORCEMENT
CASTING
REINFORCE PROFILE REINFORCE THE AREA OF LOAD APPLICATION
BETTER STRUCTURE
STRUCTURAL PIECE
SAND RIDGES AND DRAINING
LIA WINDOWS
PROFILES FORCES
GRAVITY LOAD LIGHT
GH DEFINITION VOLUME POPULATION BY PIXEL ANALYSIS
SCAN AND SOLVE STRUCTURAL ANALYSIS
PARAMETRIC PROFILES DERIVED FROM THE EXTERNAL FORCE П FROM ‘T’ TO ‘ ’ SHAPE FROM ‘∩’ TO ‘U’ SHAPE FROM ‘∩’ TO ‘-’ SHAPE FROM ‘U’ TO ‘-’ SHAPE
PARAMETRIC PROFILES CATENARY FUNCTION FORCE APPLICATION
COMPUTATION
EMERGENT BEAM GEOMETRY IN ACCORDANCE WITH STRUCTURAL EFFICIENCY SYDNEY OPERA: CONCOURSE BEAMS BY JORN UTZON KUWAIT NATIONAL ASSEMBLY: ROOF GEOMETRY BY JORN UTZON ZURICH THEATRE: FOLDED ROOF GEOMETRY BY JORN UTZON
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PRECEDENT STUDIES
STRUCTURAL CAST
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AMPHI DUAL B I O S LIFE
EBB AND FLOW OF TIDAL URBANISM
Florida Atlantic University | Comprehensive Design 1 | Iuliia Fomina | Spring 2014 | critic Mikael j Kaul, Eric Keune
Executive offices Research
+
Science
Offices
Upcycling laboratories Conference Hall & Art
Upcycling laboratories
Offices Offices use
Landfill 80%
Production industrial waste
Washing
Garbage
Metrorail Station
Energy 10% Recycle 10%
INUNDATION LEVEL SortingOut
Schredding
Washing
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Upcycling facilities Workshops Technicians
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The Department of Environmental Inquiry invokes the presence of a regional authority to implement gradual shift of the city towards amphibious resilience to natural inundation, with special interest in upcycling.
Hotels Art District Nightlife Sport and Recreation
Water Taxi and stops Metro Mover and stations Sun Trolley Bus 11 Bus 40 Parking
Bike routes Pedestrian paths
N N
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The project proposes the physical presence of a regulatory lab where ideas for resilience to longterm inundation of the vulnerable South Florida region gain direct access to experimentation and feedback. The program and architectural language are products of the concurrence of mutating social, topographical and climatic characteristics of the location. Upcycling human-produced waste recovered from the ocean as integral part of its construction process, articulates its public presence as research-based regulatory agency.
Situation map
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Wind flow
Exterior surfaces, optimized to redirect wind flows to energy-generating wind turbines, are lined in upcycled plastic cushion inserts to accelerate the airflow.
Wind flow diagram: Top levels
N
Wind flow diagram: Middle levels
Wind flow diagram: Metro station
N
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Ground plan
Intracoastal
N
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The Department of Environmental Inquiry models an ideal intersection between governing institution and laboratory that fosters the philosophy of resource regeneration. Mixed media model: Recycled paper, cardboard, discarded magazine collages, plastic bottles, bags. page 26
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Private Residences Water Taxi Stop
Private Residences Private Residences
Intracoastal
Water Taxi Stop
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Proposed hotels
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Proposed hotels
Metro Mover
Hotels
Art District
From Intracoastal to the beach
Center of Upcycle and Department of Environmental Inquiry
Entertainment
Sports and Recreation
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HMA
WYNWOOD FOOD SPAIN
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Exterior landscape and branding design
VIA Design Studio | Project Manager assistant | Iuliia Fomina | Spring 2012 | team Jose Daniel Bernal
ALMACENES HERMANAS MORCILLO
Branding Concept
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In this fresh, contemporary approach to landscape design, the brand of AHM is successfully imbued with the imagery and freshness of the Sevillana cuisine. The raised walkways aim to integrate porosity-related motifs as a reflection on the Floridian vital subsoil, while the contours of the concrete-imprinted crater figures create a contrast with the rich foliage together with an oasis to bring visitors an intimate experience of Spain in the heart of flourishing Wynwood.
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NEW
WATER AMBER RIVER
SUBMARINE RE-PURPOSING
Typhoon Class Submarine Open - Ideas Architectural Competition | team Iuliia Fomina and Jose Daniel Bernal | Summer 2014 | critic Emmanouil Vermisso
Polluted hypoxic water : shared area of concern, Current hydrodynamics: importance of Kaliningrad
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Kaliningrad, proud birthplace of Immanuel Kant and world’s leading source of amber, shares a privileged location in the Baltic Sea with part of the European Union and Baltic Nations. As the Pregolya river bisects the city, its
water,
flowing
East
to
West,
becomes
polluted.
Let’s transform a machine of war into an architectural instrument of conciliation and regeneration while preserving its dignity!
Once a vigilante of the seas, this powerful machine is being DECOMMISSIONED, making way for more upgraded systems. Out of six submarines, three have been dismantled and THREE REMAIN. Dismantling this great machine carries great COST and SAFETY ISSUES. But there is an ALTERNATIVE... Taking advantage of its GEOGRAPHIC LOCATION, our proposal conspicuously takes on the responsibility of RIVER RESTORATION for the benefit of Russia and of all nations sharing the Baltic sea, while at the same time providing a CULTURAL AND SCIENTIFIC POINT where citizens of Kaliningrad can converge.
3 2
Pioneers a solution to an international problem by repurposing the submarine of subject and suggesting potential repurposing of the remaining two submarines under the same water restoration effort at different locations along the city’s lagoon, closer to the Baltic Sea
3
1
Imagines itself as an integral part of the city as an international venue such as the FIFA World Cup in 2018 and gives the city a needed civic locale on a key historic location
2
Jumpstarts possibilities for the city’s tourism potential by linking present and future development
1
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Lenin sky p rospe ct
Kaliningrad photos Marshal B agramya
n street
Pedestrian bridges connecting existing touristic destinations, recalling historic heritage
Urban co nnectio
n
Site plan
Regiona lC Youth C enter of ulture
Urban Plaza
ya stre et
Serpu
khova
street
Portova
Birds eye view
What can possibly preserve the dignity of a NATIONAL SYMBOL, launch a city into the status of INTERNATIONAL VENUE, ready for the 2018 FIFA World Cup... and RECOVER a river’s polluted water for the benefit of a city and act as a gesture of international COOPERATION and goodwill?
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Structural system permits space efficiency
Building
Repurposed submarine
Operation of pedestrian bridge: > allows water vessels to circulate when open > provides important missing connection between important destinations when closed
Kant Island
5
5
44 3
3
5 2 1
5 1
2 1
1
A
A
1 Sections
1
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Sections
2
2
B 22
3
TANK C
B 22
1C
1
1
1
1
4
3
TANK
3
1
3
D 3
4
E 4 1
D
E1
3
1 4 1
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CIVIC SPACE
WATER MONITORING AND LABORATORIES
KANT ISLAND, PARK
TO THE CATHEDRAL AND FUTURE STADIUM page 37
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PUBLIC EVENT SCREEN
WATER INTAKES TO RESEARCH CENTER
EXISTING MUSEUM OF THE WORLD’S OCEANS AND FUTURE EXPANSION
WATER SOLID CONTAMINANT REMOVAL DRONE COLLECTORS
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TRIMO
URBAN CRASH
TRIMO
URBAN
CRASH
ARCHITECTURE
&
DESIGN
We challenge Trimo and its partners to energize the city! STUDENT
COMPETITION
|
team
Iuliia
Fomina
and
Jose
ENERGISE THE CITY DNAMO BIKE BASE
With as little intervention and demolition as possible, the Bike Base occupies a footprint in the form of a small meadow - property of the City of Ljubljana adjacent to the art installation Hologram Europe by artist Marko PogaÄ?nik.
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Daniel
Bernal
|
Spring
2013
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The poetics which the bicycle’s positive energy bring to the urban environment is embodied via human-recharged “batteries” made possible through Trimo’s modular solutions.
2015
2020
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Three 20’ standard Trimo modular container units create spaces for exhibit/seating areas and the bike quick repair shop. The three modules are encased on Akripol Aglas SS translucent PMMA coloured cladding, which is fastened to the modular unit corners. The space receives natural daylight through the use of Aglas/Alux cast acrylic skylights. Spaces are vertically connected through an exterior stairway moving in analogy to a bicycle’s chain. These feature thermoformed Aglas SS -made guardrails.
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• width: 243 cm • height: 276 cm • length: 605 cm
The third “battery”, composed of vertically-mounted, insulated smooth profile curved Ivisio facade system panels with galvanized finish, houses the juice bar/pastry shop. Here, riders approach the bar area and place their bicycles on the stand. Once the bike is secure, he/ she propels the dynamo at their own pedaling pace, powering his/her electronic device by using familiar and readily-available technology similar to that of the hand-cranked dynamo-based radio.
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At night, using LED strip lights mounted on the modular units, charged during the day via photovoltaic panels, our Bike Base is a glowing reminder of and what really powers the urban core: People in motion.
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Thank You!
Contact me for more information
iuliia fomina Florida Atlantic University BArch 2015 iulifomi@gmail.com +1 786-975-3696
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