Architecture Porfolio - Reto Egli

Page 1

2017 Š Reto Egli | Architecture Portfolio


RETO

EGLI

MSC. ARCH TU DELFT

Address: Weteringkade 37 2515 AL, Den Haag Tel: +31(0)68 743 22 66 r.egli1@gmx.ch http://retoegli.com/ Date of birth: 21.06.1991 Nationality: Swiss l Zurich

2


EDUCATION

PROFESSIONAL EXPERIENCE

Technical University of Delft

BFB Architekten, Zurich l Mar. 2014- Aug. 2014

Master of Science in Architecture Delft, Netherlands September 2014- May 2017

Development of technical drawings for the executive pIanning phase of a hospitaI project (KIinik Adelheid). Leading design draft of business-home studios as an extension to an existing buiIding in RupperswiI. PoIicy reading, design drawing, modeIIing, rendering.

University of Liechtenstein

BFB Architekten, Zurich l July 2013- Oct. 2013

Bachelor of Science in Architecture Vaduz, Liechtenstein September 2010- February 2014

Designing of business- home studios as an extension to an existing building. Planning of a hospitaI that was later on awarded first prize (SpitaI Wetzikon). InvoIved in pIanning of greenspaces, accessibiIities and voIumetric studies.

PERSONAL SKILLS

Schwarz Architekten, Zurich l Oct. 2012- Mar. 2013

German (Native, active) English (Proficiency, active) French/ Italian (good, passive) Dutch/ Polish (basic, passive)

Strong experience on construction site visits and Minergie- label certification standards. Coordination of design execution and adjustment of technicaI pIans for archive of a residentiaI tower in SchIieren (amRietpark). Working on submission pIans for the municipaIity of a residentiaI compIex and rowhouses in B체Iach (Iivio). Assistance in deveIoping of technicaI drawings in MeIIingen (Neugr체n). Examining costs for refurbish of a private hoIiday house.

Driving license since 2010

TECHNICAL SKILLS

wildb채rheule Architekten, Zurich l July 2011- Sept. 2011

CAD/Vectorworks/Revit Archicad Rhino Vray Photoshop Illustrator Indesign Studio Vegas

+++ +++++ +++++ +++++ +++++ ++++ ++++ ++++

Sketching Urban planning Detailing Program/ Conceptual Public Speaking

+++++ +++++ ++++ ++++ +++++

ModeI buiIding and design deveIopment of two private houses in Zurich. Assistance in project design of residentiaI compIex in N채feIs. Documenting finished projects for archive and website.

I LIKE ... problem sovling, construction sites, detailing, photography, rendering, politics, economics, travelling and skiing.


06

Recycling Hub Juarez Master Thesis; May 2017 Tutors: Ir. Tanner Merkeley, Dr. Ir. Karel Vollers

26

Intersecting Perspectives Master 2nd. Sem; June 2015 Tutors: Ir. Micha de Haas, Ir. Oscar Rommens

32

Minervahaven Master, 1st Sem; Jan 2015 Tutors; Ir. Pepijn Baker, Ir. Olv Klijn

38

Structure Momentum Bachelor 4th Sem; June 2012 Tutor: Dipl Ing. Cornelius Tafel

42

Recovery

of

Dialect

Bachelor Thesis; Jan 2014 Tutors; Ir. Alberto Alessi, Dr. Roman Banzer

48

RRM Redesign Master 1st Sem; Nov 2014 Tutor: Bas Gremmen

52

Recommendation Letter

4



reuse abandoned maquiladoras

address tertiary education gap

solution to recycling crisis

U.S.

MX.

Industrial Plants Abandoned Neighborhood

RECYCLI NG HUB JU A R E Z LOCATION

Juarez, Mexico

YEAR

2017 - Master Thesis, studio Complex Projects

TUTORS

Ir. Tanner Merkeley, Dr. Ir. Karel Vollers

PROGRAM

Recycling Factory, Vocational School - 12´900m2

6


This assignment demonstrates an open brief for a large- scale project in Juarez, Mexico. The industrial complex encompasses current architectural, urban and political issues of the border city. The program includes a recycling factory that makes use of the industrial overspill (production and package waste) from nearby industries that would otherwise get deposited in the landfill far outside the city. Furthermore, the project offers corporate and a vocational school training as a part of the product development process. ny and a vocational school offering professional training as a part of the product development process. The establishment of incubation areas and learning opportunities instills hope and opportunity among Juarez´ large pool of unskilled labor lacking access to tertiary education. The manufactured building components aim to improve the living conditions in the nearby slums. I have connected four existing, yet abandoned, American assemblies to evoke the severity of Juarez´ poor urban decentralization. Thus, the philosophy of reusing and recycling transcends through all the layers of this project and therefore becomes a meaningful prototype relevant to the wider context of the border region.


1:500 Section Main Entrance

1:500 Elevation South l Truck Entrance

am

stre n a i estr ped

am

stre e t was 8

sub

d

e ivid

site


MEETING OF ENTREPRENEUR, TRAINEE AND PUBLIC I CAFETERIA

MAIN ENTRANCE I PUBLIC


m2)

(m2)

FACTORY

COM

1800 1500 1200

900 600 300

0

admin

logistics/pp

sort out/ storage

production

export

phasing 10

changing rooms

studio/ workshops

office

court resea


MPANY

tyard/ arch

VOCATIONAL SCHOOL

auditorium/ showroom

incubator

cafeteria/ reception

kitchen/ canteen

classrooms

library

sports


G R OUND FLOO R

15

01 01.1 01.2 01.3 02 03 04 05 06 07 08 09 10

RECEPTION ADMINISTRATION TRUCK UNLOAD CAR UNLOAD/ PARKING MATERIAL DROP OFF MANUAL SORT OUT COMPONENT STORAGE MACHINERY SORT OUT RAW MATERIAL PRODUCTION (MACHINERY) PRODUCTION (MANUAL PRODUCT EXPORT SILO

11 12 13 14 15 16 17 18 19 20

INCUBATOR SHOWROOM AUDITORIUM GYM CHANGING ROOM INFORMATION DESK CANTEEN BUFFET KITCHEN STORAGE

21 22 23

RECEPTION/ CAFETERIA SHOWER + CHANGING ROOM TECHNIC CENTRAL

ABANDONED NEIGHBORHOOD

A

16

15

14

B 11

02

C

01.3

13

12

D

EXISTING BUILDINGS

01

INDUSTRY

export

ABANDONED NEIGHBORHOOD

EXISTING BUILDINGS unload

01 01.1 01.2 01.3 02 03 04 05 06 07 08 09 10

RAILWAY OLD TOWN

RECEPTION ADMINISTRATION TRUCK UNLOAD CAR UNLOAD/ PARKING MATERIAL DROP OFF MANUAL SORT OUT COMPONENT STORAGE MACHINERY SORT OUT RAW MATERIAL PRODUCTION (MACHINERY) PRODUCTION (MANUAL PRODUCT EXPORT SILO

export

unload

11 12 13

INCUBATOR SHOWROOM AUDITORIUM

14 15 16 17 18 19 20

GYM CHANGING ROOM INFORMATION DESK CANTEEN BUFFET KITCHEN STORAGE RAILWAY

OLD TOWN

ABANDONED NEIGHBORHOOD

INDUSTRY

ABANDONED NEIGHBORHOOD

INDUSTRY

ABANDONED NEIGHBORHOOD

parking

RAILWAY OLD TOWN OLD TOWN

parking

RAILWAY

1. EXISTING BUILDINGS

2. FACTORY 12

OLD TOWN

RAILWAY


ABANDONED NEIGHBORHOOD

G

F

INDUST

E

export

unload

17

18 ABANDONED

RAILWAY

A

19

20

NEIGHBORHOOD

OLD TOWN

B

21 INDUSTRY

23

C

22

ABANDONED NEIGHBORHOOD

INDUST

03

05+06 RAILWAY

01.1

OLD TOWN

parking

08

D

07 RAILWAY

01.2

OLD TOWN

09 10

E G

21 22 23

F

RECEPTION/ CAFETERIA SHOWER + CHANGING ROOM TECHNIC CENTRAL

3. COMPANY

4. PUBLIC ABANDONED NEIGHBORHOOD

INDUSTRY


G

F

E

04

A

A

03 02

B

01

C

B T

RT OU

M. SO

D

C

05 07

10 06

D

E G

F

EXISTING BUILDINGS 01 02 03 04 05 06 07

FI RS T F L OOR

CAFETERIA/ RECEPTION CLASSROOMS SPORTSGROUND TRIBUNE DESIGNSTUDIOS/ WORKSHOPS RESEARCH MARKETING

1/Cafeteria 2/Classrooms 3/Sportsground 4/Tribune 5/Design Studios + Workshops 6/Research EXISTING BUILDINGS

F F

G G

STUDY

A

00 01

E E

04

A

03

B

03

02

C

B

01

C

D

03

02

D

E G

F

EXISTING BUILDINGS

SECON D F L OOR

00 TRIBUNE 01 COMPUTER AREA 02 RECEPTION 03 BOOKSHEF

01 DESIGN STUDIOS 02 RESEARCH 03 MARKETING 04 BRIDGE

0/Tribune 1/Computer area 2/ Reception 3/Books 4/Design Studios 5/Research 6/Marketing 7/Bridge EXISTING BUILDINGS

14


LVL 1/ CLASSROOMS

NORTH ENTRANCE


16

SHOWROOM

SPORTS GROUND


LIBRARY

PRODUCTION PRESENTATION MODEL 1:100 The main focus is the companies´ product development process which includes all stages from material drop off, designing, processing and skill training until the export and marketing of the manufactured product. Moreover, this campus allows well directed interaction between entrepreneurs, workers, trainees, public and private clients. This enables adabtion in product development and vocational training required, hence the company can target the local waste stream with originated flexibility.


N

C

C

D

D

SALES / INCUBATOR

SORT OUT/ STORAGE

C

RESEARCH / TESTING LECTURES/ SHOWROOM

D

DROP OFF

18


CHANGING ROOMS

ARRIVAL/ RECEPTION

DESIGN STUDIOS/ WORKSHOPS

PRODUCTION

C

C

D

D


100mm 100mm 20mm 150mm

mm001

220mm

mm001 mm02

i

mm051

t

mm051

30

f

PV panel, cold roof substrate filter sheet drainage layer protection mat vapour barrier insulation bituminous sheeting conrete roof

30

Glass bottles Cement

Ventilation n oitalitne(library) v

SMOORSSALC

300mm

PET- Bottle

40mm

plaster

drainage rw

NEHCTIK NEETNAC

fa c a d e s e c t io n l vo ca ti o n a l sch o o l

STRUCTURE SCHOOL The axonometrical phasing shows the construction for the vocational school. The first measure is to reinforce the existing skeleton framework (6x6m) as they are utilized for the main loadbearing structure of the new structure. The facade section shows the southside where a public hallway caters for natural ventilation. The roofoverhang protects the facade from sunrays and rainfall. Additional PVC- Panels enable solar energy use and a ventilated roof that prevents the interior from overheating.

S T R U C T U R E F A C TO R Y To allow a pillar free zone in the logistics area and to preserve the structure of the existing buildings (keeping a max. distance of 4m for the new foundations), a framework of steel truss (Nbr.1,2,3) caters to bridge the wide spans of loadtransfer. The two elevation cores (concrete) and the framework of the four Silos (steel) function as the primary structure that take up the static forces of that framework. The graphic on the top right illustrates the combined whole of the existing and the new structure which both result in a atmospheric interior for the design-/ and working spaces.

20


1 3

3

1

2

2

Primary Structure

Secondary structure

steal, load bearing concrete cores

Tertiary structure

enable pillar- free zone load bearing structure for roof

loadbearing structure for courtyard

FACTORY STRUCTURE

FACTORY STRUCTURE

FACTORY STRUCTURE

1st Phase

2nd Phase

3rd Phase

STEAL, LOAD BEARING CONCRETE CORES

ENABLE PILLAR FREE ZONE CONNECT TO EXISTING BUILDING, LOADBEARING ROOF

LOAD BEARING


2

1

4 3

1 2 3 4 5 6

5

HEB 700 HE 400 HSH 100x60 HEA 60 prefabricated panel process: melt together in formwork

PV panel, ventialted roof 100mm

substrate

100mm

drainage layer

20mm

protection mat

150mm

insulation

filter sheet

The facade and roof are naturally ventilated to allow a comfortable climate inside. The panels get produced on site. The facade subdivision of 5 panels allows windows at exact height of fall protection on both floors. Moreover, the panels pick up the colorful image of the neighborhood and break down the industrial scale of the building.

vapour barrier

bituminous sheeting 150mm HE 400 B

ventilation

HEB 700 T120

trapezoidal sheet with concrete screed

plastic panel, own production 180cm x 100cm

hard insulation, XPS sitting board, mdf metal angle

50mm

limestone slab

80mm

sand

2mm

filter sheet

100mm drainage layer protection mat 100mm insulation 150mm trapezoidal sheet with concrete screed HE 400 B HEB 700

22

400mm HE 280 A

„


Tire/- Concrete Walls

Recycled Plastic Panels

PET/- Adobe Walls

Cardboard- bale Walls

- noise absorbtion - thermal mass saver/ cooling

-light transluscent -water resistant

- accousitc improver - thermal mass saver/ cooling

- sound absorbtion - humidity balance


PR E SEN A TI ON M ODELS 24



I NTERSECTI NG P E R S P E C T IV E S LOCATION

Carcassonne, France

YEAR

2015 - msc2, Studio: Public Buildings

TUTORS

Ir. Micha de Haas, Ir. Oscar Rommens

PROGRAM

Pedestrian bridge - 1800m2

26


The canal du midi had been completed by the French in 1681. Its initial purpose was dedicated for cargo shipping which by the time it was finished became useless through the replacement with the railway. The aim was to investigate on the possible role of the canal in the context of emerging population centers in the region, by enhancing its public usage while cementing its manifold existing qualities. My site of intervention in Carcassonne depicts a fraction of its total length (240km) which however illustrates the relationship of the canal with its environment in detail. The riverbed cuts through the whole city to maintain the water level. Trees are planted in a repetitive order to prevent the river water from evaporation and to reinforce the riverbed; drawing a distinct line between the exterior and interior space. Every now and then a bridge brutally breaks the otherwise repetitive environment to enable cars and trucks pass over. This observation stroke my interest to converge the interior with the exterior space with an accessible structure for pedestrians that preserves the unique silhouette of the tree crowns and allows both; the perspective of an approaching voyageur in the riverbed and the perspective of a wandering pedestrian outside the riverbed to intersect once approached.


01

02

01

Furthermore what I observed is the relation between the interior space and its outside space, defined by the landscape. I distinguish between two types; either the Furthermore I observed is the relation between canal du midiwhat becomes the intersecting element of the the interior space and its outside space, defined by the outer space or the surrounding becomes the intersecting 02 landscape. I distinguish between two types; either the element of the interior. Such moments of intersection canal duofmidi becomes the intersecting element ofinterthe contain a moment where multiple perspectives outer This space the surrounding becomespoint the intersecting sect. is or defined when the vanishing of the first element of the interior. moments route intersects with theSuch vanishing pointofofintersection the second contain of a moment where multiple perspectives interroute. Such perspectives are being forced by the bridges sect. Thisthe is defined vanishing point of thetofirst crossing canal orwhen roadsthe pointing perpendicular the route vanishing point of the second canal.intersects Otherwisewith theythe happen on voluntarily basis when route. Such are being by the to bridges turning28 one’sperspectives head – either from theforced outer space the crossing the canal or roads pointing perpendicular to the interior or from the interior to the outer space. The phenocanal. Otherwise they happen on voluntarily basis when


TURN. PEDESTRIAN PERSPECTIVE


Detail 04

01

Detail 01 03

04

Detail 02

02

Detail 03

th of experiencing the canal is not specifically given to its user. Observing its at different points of perspective is an individually driven desire. My structure converges erior with its exterior space through its physical appearance as an apparatus as such. The approach of my structure embodies the phenomena of the techonologically rigid and repetitive grid that I found in the canal du midi and try to imitate so. However, once one turns its head aside or steps outside that rigid grid a variety of peres within to the outer context given. Possibilities lie sit orin hang the converging space of the interior and exteriorand are rods freelythat choseable by its user. heis chosen structure isto rooted thewhile logicobserving of “Tensegrity” – a symmetric alignment of ropes

T

in combination result in the necessary tension to uphold its weight. Only when approached from the center of its gravitation the symmetry can be noticed, otherwise the elements appear random – in analogy to the tree crowns. My proposal for a pedestrian bridge does not impose a specific entrance nor exit but simply an individual experience to an intersection of perspectives that weave over the cut in the urban tissue.

detail 03

detail 01/02

detail 04

30


Presentation Model 1:100


M I NERVAHAVEN LOCATION

Amsterdam, Netherlands

YEAR

2015 - msc1 Studio Dwelling

TUTORS

Ir. Pepijn Baker, Ir. Olv Klijn

PROGRAM

Residential mix use - 5000m2

32


The goal of the “Wet City� studio is to explore spatial designs that would enable the citizens of Minervahaven (Amsterdam) develop new ways of living surrounded by water. The former industrial area has been cleared and required to develop new innovative ways of urban-, landscape- and architectural design that could densify and optimize the urban fabric, as well as handle potential flooding and rising sea levels and at the same time make communal life attractive. My project consists of two skyscrapers and several floating houses that provide a solution for families and elderly couples who could not find a place to live in the center of Amsterdam. The floating houses are considered a new type of a row house typology that offers more privacy and recreational areas in comparison to the housing in Amsterdam. All the houses have a shed roof which matches into the context off the industrial area. In addition to this, the ground- and topfloor of the skyscraper are occupied by restaurants and community center.


café

4 (x)

50m

4 (x)

70m 2

3 (x)

70m 2

14 (x)

100m 2

7 (x)

100m 2

2 (x)

100m 2

2

103 3000m 2 1000m 2 30m 2 / person DENSITY FACTOR = 3

masterplan „flooded“

The new Masterplan proposes the layover of a grid. An act of discontinuity is approached at the points of collision from the two geometries where different Plazas will take on shape. Furthermore, three artificial hills are built that host parking lots, block noise from the surroundings and enable to collect rainwater and most importantly keep the houses dry in case of a flooding. The center area is meant for recreation purposes.

34


SECTIONS AND FLOORPLANS OF HIGHRISE

ground floor

1ST floor

2ND floor


double bitumen coating additional splash angle

angle as a subconstruction; while leaning against rail one stands on it and causes pressure towards himself.

Floorplan 1_100 (4th floor) Floorplan 1_100 (4th floor)

Floorplan 1_20

Floorplan 1_20

M6 srews, under glue

Detail 02

nt GSEducationalVersion

GSEducationalVersion

lignatur element installation space160mm

windpaper, waterproof

26

26

14 GSEducationalVersion

14

12

12

external wall ventilated at rear skirting board reused corrugated metal sheets

GSEducationalVersion

GSEducationalVersion GSEducationalVersion

GSEducationalVersion

ventilation pipes inside ation pipes inside lignatur element ur element

floor heating

horizontal wooden beams put in places

insulation band floating floor

protecting sheet, revited

vapour barrier window board, white painted white painted

head strap cushion, screwed into lignatur elements to hold them installation space external wall ventilated at rear sealing compound skirting board

lignatur element, 160mm reused corrugated metal sheets

stealern T-beam, anticorrosive coating

2.40

2.40

2.40

2.40

horizontal wooden beams put in places floor heating

horizontal wooden beams put in places

insulation band M6 screws floating floor

protecting sheet, revited carriers welded on platform

vapour floater- barrier platform prefabricated "katamaran" 01

02

01

04

03

02

05...

03

04

05... 02

01

03

01

04

03

02

05...

04

sealing compound 01,02,03....

01,02,03....

lignatur element, 160mm 01,02,03....

20mm parkett rkett 70mm floor screed/ floor heating or screed/ 30mmfloor heating foot fall insulation t fall 150mm insulation lignatur element natur element

"houses" section 1:5

01,02,03....

window board, white painted white painted

05...

head strap cushion, screwed into lignatur elements to hold them

GSEducationalVersion

stealern T-beam, anticorrosive coating

horizontal wooden beams put in places

26

14

2.40

GSEducationalVersion

2.40 36

GSEducationalVersion

GSEducationalVersion

e fabricated steal- tub "katamaran" ub "katamaran"

schematic construction principle

36

GSEducationalVersion

GSEducationalVersion

26

12 14

26 36

The schematic construction principle is characterized by stairs that allow flexibilty in entering the apparement at different water levels.

GSEducationalVersion

Section 1_50 (Situation Section Summer) 1_50 (Situation S

10

14

12

2.40

2.40

12 14 12

2.40

„

14

Floorplan 1_50 (1st floor) Floorplan 1_50 (1st floor)

GSEducationalVersion

Detail 01

GSEducationalVersion

26 2.40

2.40

During summer, air above water During stays summer, air above water s cold compared to its surrounding. cold compared to its surrounding.

Floorplan 1_50 (2nd floor) Floorplan 1_50 (2nd floor)

10

floater- platform prefabricated "katamaran"

"houses" section 1:5

0/40mm beam for load transfer oad transfer

2.40

14

12

12

M6 screws carriers welded on platform

GSEducationalVersion


fermacell insulation

3mm 90mm 70mm

aluminium metal- sheet, white water barrier folio XPS insulation wooden frame- element

3mm 90mm 70mm

fermacell insulation

fermacell insulation

3mm aluminium metal- sheet, white aluminium metal- sheet, water white barrier folio water barrier 90mmfolio XPS insulation XPS insulation frame enlargement 70mm wooden frameelement wooden frame- element

28

20

8

8

50mm recycled metal-sheets recycled40mm metal-sheets wooden batten wooden batten windfolio, water barrier windfolio, water barrier 180mm lignatur element lignatur element

28

180mm

20

50mm 40mm

8

recycled metal-sheets wooden batten windfolio, water barrier lignatur element

28

180mm

20

50mm 40mm

frame enlargement frame enlargement sliding frame

2.70

2.70

2.70

2.70

2.70

2.70

sliding frame sliding frame shutter, metal sheets shutter, metal sheets

shutter, metal sheets

26 2.40

2.40

26

12 26

14

2.40

GSEducationalVersion

26

12

2.40

2.40

14

12 26

14

26

40mm 50mm

15mm plaster plaster 25mm MDF board, installation area MDF board, installation 25mm MDFarea board MDF board 200mm EPS Insulation EPS Insulation 25mm MDF board MDF board windfolio, waterbarrier windfolio, waterbarrier 40mm wooden batten wooden50mm batten recycled metal-sheets recycled metal-sheets

14

15mm 25mm 25mm 200mm 25mm

12

2.40

2.40

2.40

2.40

2.40

element endings element endings vapour impermeable glued vapour impermeable glued

element endings vapour impermeable glued

2.40

40mm 50mm

plaster MDF board, installation area MDF board EPS Insulation MDF board windfolio, waterbarrier wooden batten recycled metal-sheets

GSEducationalVersion

"houses" section 1:5

100/40mm beam for load transfer 100/40mm beam for load transfer

2.40

stealern console

12

splash board

15mm 25mm 25mm 200mm 25mm

splash board splash board

steel bracket clamp steel bracket clamp beam for load transfer splash100/40mm board splash board stealern console stealern console

steel bracket clamp

"houses" section 1:5

Detail 02

12

60mm Detail 02 80mm 8mm 100mm 4mm 150mm

14

gravel; plantation insulation declining 1.5% double bitumen coating XPS insulation bitumen coating lignatur element

20mm parkett parkett 70mm floor screed/ floor heating floor screed/ 30mmfloor heating foot fall insulation foot fall 150mm insulation lignatur element lignatur element

20mm 70mm 30mm 150mm

2.40

60mm 80mm 8mm 100mm 4mm 150mm

2.40

window board, white painted window board, white painted

20mm parkett rail, glass 20mm 70mm floorsafety screed/ floor heating safety rail, glass 20mm 30mm foot fall insulation 150mm lignatur element

60mm gravel; plantation gravel; plantation 80mm insulation declining Detail 021.5% insulation decliningdouble 1.5% bitumen 8mm coating double bitumen 100mm coating XPS insulation XPS insulation splash board 4mm bitumen coating bitumen150mm coating lignatur element lignatur element

2.40

2.40

window board, white painted window board, white painted

window board, white painted

safety rail, glass 20mm

26

ventilation pipes inside ventilation pipes inside lignatur element lignatur element

shutter, metal sheets shutter, metalboard, sheetswhite painted window

shutter, metal sheets

14

12 26

prefabricated attachable prefabricated attachable windowframe ventilation pipeselement inside windowframe element lignatur element

14

prefabricated attachable windowframe element

14

3mm aluminium metal- sheet, white aluminium metal- sheet, water white barrier folio water barrier 40mmfolio XPS insulation XPS insulation 70mm wooden frame- element wooden frame- element

2.40

40mm 70mm

26

3mm

12

aluminium metal- sheet, white water barrier folio XPS insulation wooden frame- element

2.40

40mm 70mm

clipper and extra enforcement clipper and extra enforcement

14

3mm

safety rail

clipper and extra enforcement

12

safety rail safety rail

Detail 01

Elevation 1_20

S

Section 1_20

imilar as the principle of a ship´s bow, the row houses rest on a catamaran with four chambers that enable stability and equal weight distribution. The space in between serves for cold air inlet during Summer and warm during the winter. The loadbearing structure is of wooden ballonframe, a light construction available from nearby timber manufacturer. For the facade cladding, recycled metalsheets from former industrial halls let the building appear crude and enable the full potential for rain water collection.

36

14

36

10

cover plate holding cover plate holdinglignatur element lignatur element leg supports pre fabricated steal- tub "katamaran" leg supports leg supports welded steal clamps pre fabricated steal- tub "katamaran" pre fabricated steal- tub "katamaran" welded steal clamps

10

12 14

36

14 welded steal clamps

10

cover plate holding lignatur element

12

Detail 01 12

Detail 01


STRUCTURE M OME N T U M LOCATION

Vaduz, Liechtenstein

YEAR

2012 - Bsc4 studio Structural Design

TUTOR

Dipl. Ing. Cornelius Tafel

PROGRAM

Event hall - 3200m2 38


This design brief called for an event hall in the industrial zone of Schaan, Liechtenstein. The given task was about designing an event hall of 40x 80metres in steel truss framework. Moreover, the design should incorporate the characteristics of the landscape. Therefore, the shape of the beams intend to open up the view for the visitors towards the south side and at the north side, support onto an earthwall in the typography. The three dimensional framework embeddes the form of the roof structure elegantly into the landscape. Through the woven curves there is no distinct transition between walls, roof and openings; the whole space is dominated by the sobriety and sterility of the functionalist expression of the static structure.


5

1

2

3

4

5

6

1/wardrobe 2/office 3/toilets 4/flexible 5/storage 6/kitchen

40


metal sheet cove

20cm vaopour brake 3.0cm

wood formwork steel beam

PE-folie

3S-board

The bearing in the rear area combines the load transfer with the demanding force that ought to be applied against the pressure of the slope. Along

vapour- and

reinforced concrete slab

to one another. In the front area the framework folds apart and shape which harmonizes in the appearance of lightness.


RECO VERY O F D IA L E C T

LOCATION

Vaduz, Liechtenstein

YEAR

2014 - Bachelor Thesis, studio ´From Hollywood to Heimat´

TUTORS

dipl. Arch. Alberto Alessi, Dr. Roman Banzer

PROGRAM

Definition of building regulations, Masterplan + case study

42

Kids Bedroom

run up stairs

inviting neighbors

eating together

laughs and talks

Gallery

meet family

after work- hours

Couch, fireplace

Separated

Cozy, snooze

Privat, undress

Parents bedroom

Sleeping, rest

Niche, low window

observe landscape

view into mountains

sunny, southside

terrace

gardening

calm and intimate

privatesphere

recreation area

distante view


Liechtenstein

Outskirts of Vaduz

Slow down

Bakery at the corner

Recognize, stop

Local, shake Hands

Stand still, observe

Stroll around

pedestrian zone

run for the bus

say goodbye

go to work or school

bike riding

trees, benches

few steps down

Niche, shadow, dry

Welcome

lean outside Window

exchange stories

Loud, neighborhood

Greet outside

Homework

Playing games

In my Bachelor thesis project, I dealt with the definition of home (Heimat) as a solution to an uncontrolled urban sprawl area outside Vaduz, Liechtenstein. My theorem indicates to not define Heimat based on a socially bound component but about the language. The language of Heimat has to do with the core of history, the center of origin. The dialect restricts the language area on the identity of the local which in case of Liechtenstein is the dialect of the peasants that in its architectural approach is no longer "spoken" today. In order to propose adjustments in the existing urban tissue I have studied the works of Jan Gehl, Luigi Snozzi and studio West8 which proof how different parameters in the building of cities dictate our behaviour patterns and perception within public space. Thus, I defined new guidlines for public space, infrastructure and building regulations with a private house as a casestudy that demonstrates how the locals could practise their dialect again. My Masterplan calls for densified row house typology by 2030 that intends to offer a balance between the inevitably shrinking and undefined recreation area and the communal gathering on the street as once possible when the settlement of the peasants characterized this region.


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01

02 2014

03

04

2020

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06

2025

02 length of building is less than a third of parcell 03 Parcell that does not linkRegulations to a public street Proposed Building 04 Public Buildings eg. Churche 01 Length of building is more than half of the parcel 06 on meadows 02unbuilt Length of building is less than a third of parcell 03 Parcell that does not link to a public street 04 Public Buildings eg. Churche 05 Distance between existing buildings is < 6m 06 Unbuilt on meadows

existing buildings

2030

proposed row house typology

44

new parcel subdivision


2014

2030


46


Verstecken Schatten Ungemütlich Kalt Asphalt

Garten

Fenster auf

Wiese

Entapannt

Vertraut

Grün

Beleuchtung

Fenster

sich sonnen

Balkon

Rolladen öffnen

Licht

Sonnig

Hell

Plätschern

Brunnen

Bach

zeit vertreiben

lustvoll

lusttg

heiter

bunt

farbig

fernseher

ablenkung

fern halten

ungeheuer

fremd

ungewohnt

hart

rauh

Oberfläche

Verzettelt

Ruhig

Fluss

Zerstreut

Höhe

Berge

eckig

hoch

Gebäudeform

Orientierungslos

Email

Winken

Dimension

Identität

Unbekannt

Mauer

Anordnung

Zwischenraum

Gitter

Rolladen

Vorhang

Leise

increase density, feeling of freedom, common green space Ausrichtung

hierarchy in the streets, traffic noise separation, street for public gathering

Gegenwart

30

Trennung

mm

Ausrichtung

Bru

Tal

local focus points

Orientierung

Struktur

Briefe

lokal

Bekanntschaften

Kontakt

Dimension

Quartierkreis

Gemeinschaft

Struktur

Brief

Vernetzung

Nachbarschaft

Charakter

Anhaltspunkt

Verbindung

Identität

Verstecken

Schützen

Oberfläche

Kubatur

Dunkel

Wald

Verbarrikadieren

Kontakt

Abschottung

Gewichtung

global

Ausgeschlossen

Vernetzung

Nutzung

Laut

Lärmig

Schreien

Laut Reden

Windig

Bus fahren

Telefon

schnell

gerade

rasen

hoch

Aufwärt

Abwärts

Radien

Ausrichtung

Auto fahren

Bus fahren

breit

lang

weit

steil

Vorwärts

Weiterfahren

Fortfahren

Beschleunigen

Hauptstrasse

60

Dazugehörigkeit

Plaudern

Schwatzen

Fensterbank

Nischen

Türschwelle

m

Unterhalten

um

Windstill

Br

Brise

Sitzen bleiben

Ausblick

Einblick

Blickbezüge

Sitzen

Treppe

Hand schütteln

Stehen bleiben

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kurz

eng

nah

Trampelpfad

pfeifen

langsam

schlurfen

schleichen

schritttempo

Bummeln

Grüssen

Erkennen

Bekannt

Spazieren

Weg

Rückwärts

Seitwärts

Stoppen

Anhalten

Gehen

Eilen

runter

Velo fahren

Verlangsamen

Nebenstrasse

Parameter zur Verhaltenssteuerung

no local connection N utzflächen 50

I nfastruktur no recreation area

B auordnung tendency to close up/ no public space


M ARI TI M E M USEU M R OT T E R D A M LOCATION

Rotterdam, Netherlands

YEAR

2015 - Msc1 studio Building Technology

TUTORS

Ir. Ger Warries

PROGRAM

Museum - redesign of structure and facade 48


Task of this Semester was to visit the Maritime Museum in Rotterdam, meet up its manager and define real issues that the redesign should address. The mainly dark exhibition rooms are mainly lit up through artificial light and due to the high presence of concrete the climate remains cold and uncomfortable. Even though the museum is located in an open harbor area, the outer appearance would not attract many visitors. Low revenues and high expenses on energy costs pose a significant problem. Moreover, can the new structure cater for better conditions to visitors and artefact exhibited, optimize the buildings energy use/ climate comfort and yet, help increase the number of annual visitors attracted through a new identity?


Detail 01 Detail Detail Detail 01 0101

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13

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5

355 355 355

355

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28 30

58 58

58 58

30 30

28 30 28

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38 38

225 22 135

225

60mm gravel + plantation 140mm decline insulation vapour barrier folio 60mmgravel + plantation gravel + plantation 60mm 60mm +gravel plantation 160mm insulation 140mm decline insulation decline insulation 140mm 140mm decline insulation 40mm roof cladding bitumen vapour barrier folio vapour barrier folio barrier folio 280mm vapour prefab. lignatur element/ 160mm insulation insulation 160mm 160mm insulation installation area 40mm roof cladding bitumen roof cladding bitumen 40mm 40mm roof cladding bitumen 280mm prefab. lignatur element/ prefab. lignatur element/ 280mm 280mm prefab. lignatur element/ installation installation areaarea installation area

Detail 01 Detail Detail Detail 01 0101

38 38

tinsmith sheet metal plate hinch band vapour barrier tinsmith sheet metal tinsmith tinsmith sheet sheet metal metal plate plateplate M6 screws hinch hinch hinch band bandband placeholder clips vapour barrier vapour vapour barrier barrier multilayer plate M6 screws M6M8 M6 screws screws screw placeholder placeholder placeholder clips clipsclips clasp multilayer multilayer multilayer plate plateplate M8 screw M8M8 screw screw clasp clasp clasp

4.42

4.42 4.42

4.42 4.42

4.42 4.42

4.42

25mm OSB board 40mm insulation vapour barrier folio 25mmOSB OSB board 25mm 25mm board OSB board 25mm OSB board 40mminsulation 40mm 40mm insulation 200mm timerinsulation frame type/ EPS insulation barrier vapour barrier folio vapour barrier folio folio 25mm OSBvapour board 25mmOSB OSB board 25mm 25mm board OSB board 40mm insulation 200mm timer frame type/ EPS insulation 200mm 200mm timer frame type/ EPS insulation timer frame type/ EPS insulation 50mm 2x timber board 25mmOSB OSB board 25mm 25mm board OSB board 40mminsulation insulation 40mm 40mm insulation 50mm2x 2x 2x board timber board 50mm 50mm timber timber board

XPS insulation window ledge metal sheet AEROMAT VT WRG1000 inlet/ outlet air XPS insulation XPS XPS insulation insulation vapour barrier folio window ledge metal window window ledge ledge metal metal sheet sheetsheet AEROMAT VT WRG1000 (waste heat recovery AEROMAT VT WRG1000 inlet/ outlet AEROMAT AEROMAT VTVT WRG1000 WRG1000 inlet/ inlet/ outlet outlet air air air system) vapour barrier vapour vapour barrier barrier folio folio M10 screw to fix thefolio AEROMAT VT WRG1000 AEROMAT VT WRG1000 (waste heat recovery AEROMAT AEROMAT VTVT WRG1000 WRG1000 (waste (waste heat heat recovery recovery system) system) system) M10 screw tothe fixAEROMAT the AEROMAT VT WRG1000 M10 M10 screw screw to fix to fix the AEROMAT VTVT WRG1000 WRG1000

Detail 02 Detail Detail 0202 Detail 02

28 30 28 30 30

28

28

AEROMAT VT WRG1000; decentral ventilation module upper boom AEROMAT VT WRG1000; decentral AEROMAT AEROMAT VTVT WRG1000; WRG1000; decentral decentral zinc diped steel places with welded ventilation module ventilation ventilation module module nailsupper on it to connect the modular boom upper boom upper boom timber parts zinc diped steel places with welded zinc diped steel places with welded zinc diped steel places with welded it totoconnect the nails on to connect nails onnails it toit on connect the modular steelcord hocks linkthe themodular twomodular anchors timber timber partsparts timber parts

30

Detail 02 Detail Detail Detail 02 0202

steelcord hocks to link the two anchors anchors welded onlink athe steel plate steelcord hocks to the anchors steelcord hocks to link twotwo anchors that hold back second skin facade. anchors welded aplate steel poles to hold the beta.ray anchors welded a on steel plateplate anchors welded on on aoperable steel that hold back second skin facade. holder that hold back second skin facade. that hold back second skin facade. to the operable beta.ray poles to hold the operable beta.ray poles topoles hold thehold operable beta.ray lower boom holder holder holder lower lower boom lower boomboom

operable backbone that holds the beta.rey spheres

5.00

4.42

4.42 4.42 4.42

5.00 5.00

5.00

operable backbone thatthe holds operable backbone that holds the the operable backbone that holds beta.rey spheres beta.rey spheres beta.rey spheres

bolts that hold secundary load beams through steel frame bolts that hold secundary bolts that secundary load load bolts that hold secundary load junction ofhold prefab. beams through steel frame beams through steel frame beams through steel frame lignatur elements junction of prefab. junction of prefab. junction of prefab. pillars 400/400mm; stacked lignatur elements lignatur elements lignatur elements on each other and hold through junction of steel frame pillars 400/400mm; stacked pillars 400/400mm; stacked pillars 400/400mm; and primary load stacked beams onother each other and hold each other and hold on on each and hold through junction offrame steel frame through junction of steel frame through junction of steel and primary load beams and primary load beams and primary load beams hot zinc dipped steel frame

operable steelern "backbone" that holds the beta.rey spheres operable "backbone" operable steelern "backbone" that that operable steelern "backbone" that AEROMAT VTsteelern WRG1000; decentral holds the beta.rey spheres holds the beta.rey spheres holds the beta.rey spheres ventilation module AEROMAT VT WRG1000; decentral AEROMAT WRG1000; decentral AEROMAT VTVT WRG1000; decentral ventilation module ventilation module ventilation module

hot zinc dipped steel frame zinc dipped steel frame hothot zinc dipped steel frame

1000/180mm primar load bearing timber beam 300/100mm secundary load bearing beam for bracing 280mm lignatur element / installation area 1000/180mm primar load bearing timber beam 1000/180mm primar load bearing timber beam 1000/180mm primar load bearing timber beam 300/100mm secundary load bearing beam for bracing 300/100mm secundary load bearing beam for bracing 300/100mm secundary load bearing beam for bracing 280mm lignatur lignatur element / installation 280mm lignatur element / installation areaarea 280mm element / installation area

Section 02

30 30

30

28 30 28

Section 01 Section Section Section 01 01 01

28

28

Section Section Section 02 02 02

waterproof finish zinc diped steel places with welded nails on it to connect the modular timber parts waterproof waterproof waterproof finish finish jointed stay bolt finish zinc diped steel places with welded zinc zinc diped diped steel steel places places with with welded welded nails nails onnails on it toit on to it to foot plate connect thestrip modular timber connect connect the the modular modular timber timber parts partsparts screws through footing stay jointed jointed stay stay bolt bolt bolt strip jointed footing foot plate foot foot plate plate felt as a separator screws through strip footing screws screws through through strip strip footing footing strip footing strip strip footing footing felt as a separator feltfelt as as a separator a separator 30mm asphalt 40mm binder course 150mm asphalt bearing layer 30mmasphalt asphalt 30mm 30mm asphalt 150mm ballast substructre 40mmbinder binder course 40mm 40mm binder course course sand/ soil 150mm asphalt bearing 150mm 150mm asphalt asphalt bearing bearing layer layerlayer 150mm ballast substructre 150mm 150mm ballast ballast substructre substructre sand/ sand/ sand/ soil soil soil

clamp to pack vapour barrier folio transition log of wood for shifting clamp tovapour pack vapour barrier folio transition clamp clamp to pack to pack vapour barrier barrier folio folio transition transition offor wood for shifting loglog of wood oflog wood for shifting shifting

5.48

4.90

4.90 4.90 4.90

5.48 5.48

5.48

Detail 03 Detail Detail Detail 03 0303

180/40mm timber beams bolts foot plate to clamp timber pillar 180/40mm timber beams 180/40mm timber beams 180/40mm timber beams hard insulation boltsboltspillar that transfers bolts concrete foot plate to timber clamp timber foot plate to clamp timber pillarpillar foot plate clamp pillar load to to stony ground (26m) hard insulation hard insulation hard insulation concrete pillar that transfers concrete pillar that transfers concrete pillar that transfers toground stony ground (26m) load to stony ground (26m) load to load stony (26m)

70mm cement screed 30mm footfall sound insulation 25mm MDF board 70mmcement cement screed room 70mm 70mm cement screed screed 100mm insulation/ installation 30mmfootfall footfall sound 30mm 30mm footfall sound sound insulation insulation vapour barrier folioinsulation A A

30

30 30

30

30 1530

30 15

45

45 45 E

E

15 15

D

45

D

30 30 30

C

C

30

B

B

Detail 03 Detail Detail Detail 03 0303

30

1

2

3

4

5

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8

25mmMDF MDF board 25mm 25mm MDF board board 300mm concrete slab 100mm insulation/ installation 100mm 100mm insulation/ insulation/ installation installation room roomroom 150mm insulation vapour barrier vapour barrier barrier folio folio folio 100mm vapour subbase 300mm concrete 300mm 300mm concrete concrete slab slab slab 150mm insulation 150mm 150mm insulation insulation 100mm subbase 100mm 100mm subbase subbase

F

F

prefabricated elements, fast set up

G

G

easy to extend or to build back in future double skin facade

3

2

1

3

2

2

3

6

5

4

4

5

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8

1

A

A

A

2

4

5

A

STRUCTURAL CONCEPT

3

reusable/recycable materials

6

7

8

7

8

low tech to set up

1

H

H

timber elements only

2 2

2

3 3

10.00

1.10

T

B

load bearing facade, no pillars - free room programe

B

B

B

1.25 10.00 10.0010.00

1.10 1.10 1.10

C

C

D

D

E

E

F

F

G

C

G

C

he facade design incorporates the Solar energy collection concepted after Rawlemon. The large water filled glass balls enable very high gain of solar energy, even on cloudy and rainy days since the sun rays are directed onto a single solar cell. Inside, the outside appears diffuse - like under water, yet allowing enough light into the exhibition. From the outside, the facade pattern reminds of a fishermens´ net and moored buoy, giving the Maritime Museum a represenative character.

1.25 1.25 1.25

G

1

2

3

4

C

C

D

D

E

E

F

F

G

H

F

G

H

G

C

D

E

H

C

D

E

F

G

C

Section 01 Section Section Section 01 0101

1

2

3

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8

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2

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2

Section 02 Section Section Section 02 0202 1

A

B

B C

D

D

E

E F

F

F

F

E

E

E

D

F

D

D

C

C

C

B

C

B

B

A

A

A

2

3

4

5

6

7

8

1

2

3

4

5

6

8

7

A

GSEducationalVersion

GSEducationalVersion GSEducationalVersion GSEducationalVersion

G

3

4

5

8

H

H

G

G

F

F

E

E

D

D

C

H

B

B

B

B

B

B

A

A

A

A

A

A

2

3

4

5

6

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8

1

prefab. lignatur elements

1

2

3

4

5

6

7

8

5

6

7

8

1

2

3

4

secundary load transfering/ bracing

1

2

3

4

5

6

7

8

5

6

7

8

H

H

H

H

GSEducationalVersion

primar load transfering timber beams

50

90

G

90 90

90

F

F

1.00 1.00 1.00

GSEducationalVersion

1.00

50

E

E

50 50

D

50

D

stacking principle

3



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