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Contents 2 3
Manifesto Resume
4-6
Experience Tear Sheets
7
Simplot HQ
8
HCR Speedway
9
Office Island
10/11 12
Retro Tense Architecture Tensegrity Work Station
13
Fractured Dwelling
14 15
Tense Tower Calder Museumm
16 17
Mock Up Design Dev. Sail Dwelling
18 19
Solar Decathlon 2013 FRED FRED Drawings
20 21
Mat Lab 2.0 Mock Up Test Mat Lab 2.0 Concept
22 23
Oyler Wu Taipei Tower #3 SCI-Arc Graduation Pavillion
24 25
Island of the Misanthropic Design Documents
26 27
Sky City Transit Models Concept/ Drawings
28
Tectonics Prada + Lomas
29
The Observer + Planet Fight Club
30
Sustainable Systems M2CBWD
31
Mat Lab JWRH
RICHARD LUCERO www.AtelierYek.com richardlucero1984@Gmail.com +1 323 697 9556
2305 West Madison Ave. Montebello Ca, 90640 USA
atelier
Yek. An Architecture Manifesto by a Proto-Post Scarcity Social Capitalist Creative Maker
Why? Architecture supports it’s occupants through having meaningful relationships within and outside of context. It enriches life through facilitating activities and physicalities that would normally not be. Architecture can clear the mind and enable enhanced thought and feelings through inspiration and awe. If Architecture did not exist for its occupants and observers than Achitecture left unoccupied and unobserved would have no purpose or meaning. What? Architecture is as much of what it is as what it is not. Architecture at its root should be of its time or beyond. It should use what ever is at its disposal, being expressive and thoughtful. It should recognize where it is and what its impact to its place. It should be humble, nothing more or less than what it is with ambition of contributing more than what it intends to be. How? Architecture at its best is rooted in a theoretical pragmatism. Utilizing a variety of methods developed through a collaborative process in which theoretical ideas and concepts are executed through the most pragmatic means. It should strive for simple solutions that clearly demonstrate theoretical concepts and ideas while maintaining pragmatic necessities that are not wholely compromised. It utilizes constraints as drivers of innovation, re-purposes ideas and materials in new ways, utilizes technology to integrate, streamline and delegate which enable it to eliminate waste of material and time. Who? The collaborative using any and all techniques and methods known and unknown in the most efficient manor. Efficiency can be achieved through the clear understanding of the minimum required to execute the most simple and effective solution through effective delegation. Efficiency can be a result of mitigating redundancies in material, time and effort. Utilizing the collaborative’s expertise in knowing what is and is not required will lead to only producing what is needed and not producing what is not. The collaborative controls all that is involved throughout the entire process as required and needed. The collaborative values difference and experimentation. They are unafraid of failure. They allows and accounts for all this as part of an invaulable process. They teach others the process and allow the process to be what it needs to be. This is valued to the highest degree and ensures this is what everyone values. Its only through valueing diffference, experimentation and failure that Architecture can progress and develop new means and methods that allow it to be more than it could ever be intended. Now. Believe in architecture’s ability to effect and affect people through its presense and lack of presense. Let architecture be a result of the purpose, expressive and thoughtfull methods and collabortive process. Trust and value the collaborative in its ability to solve and execute. Value experience and experimentatation and allocate enough time and resources to this process. Demonstrate to everyone exactly what the process is what that takes, be completely transparent. Be open, uninhibited, forget typical, allow yourself to be unconstrained and to fail. The ideal can never be achieved, however, without pursuit of the ideal we never progress. Never be content, always strive for better, backwards is still progress forward if you do not stop moving.
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RICHARD LUCERO Architecture lies in the details and at the human scale. A theoretical pragmatic approach is ideal in developing an underlying language and solution for every project at it’s various scales.
www.AtelierYek.com richardlucero1984@Gmail.com +1 323 697 9556
2305 West Madison Ave. Montebello Ca, 90640 USA
Awards + Achievements
Work
2013
Thesis Selected for Downtown Los Angeles Art Walk Exhibition Graduated with Distinction
2014 October-Current ORA, Oonagh Ryan Architects Los Angeles, Ca Designer, Project Manager
2012
SCI-Arc Solar Decathlon Europe Sponsored Trip SCI-Arc Continuing Student Scholarship SCI-Arc Solar Decathlon Summer Scholarship
2011
3A Project Chosen by John Enright and Volkan Alkanoglu for Submission to the Rotterdam Biennale on behalf on SCI-Arc.
2010
Placed 2nd LA Forum for Arch & Design Dingbat 2.0 Competition SCI-Arc All School Exhibition SCI-Arc Continuing Student Scholarship
2003-’07 Deans Honors Rio Hondo College
Skills Inner Personal Self reliant and Industrious, Reliable/ Dependable, Quick Thinking, Intuitive Quick learner and good teacher, Program/ Hardware Trouble Shooting Efficient and Systematic Work Methodology, Multi-tasking, Problem Solving Digital Production Revit 2015, Rhino V5, Maya 2015, 3DS Max 2015, V-Ray, Maxwell AutoDesk AutoCAD 2015, Digital Project Digital Layout + Office Production Adobe Lightroom, Photoshop, Illustrator, InDesign, After Effects + Premier, Muse, MS Office Excel, Word, Power Point, Visio, Front Page, Access,Hyperion/ Brio, Physical Hand Drafting Architectural Plans and Engineering/Mechanical Drawings Steel and Aluminum Fabrication and Construction, Wood Working Model Making Bass, Styrene, Chip/ Museum Board, Metal CNC Milling, Powder/ Plastic Printing, Laser Cutting, Vacuum Forming Ink Drawing/ Sketching + Photography
Responsibilities: Ave 56 4 Unit Housing, SD & Code Analysis, Autocad 2015 Yucca Cabin: SD to Permit, Revit 2015, SketchUp 2015, PS, ID, AI Spring Street/ Windish Agency: Core & Shell + TI, Code Analysis, SD, DD, CD, Budget + Price, Permit, CA, Autocad 2015, Revit 2015, PS, ID, AI Orosco Residence: Revit Standard Development, Modeling, Documentation Segil Residence: CD, Revit 2015 2013 June-October 2014 Adamson Associates Inc. Pacific Palisades, Ca Designer Responsibilities: Simplot Office Headquarters and Annex: DD, CD, Curtain Wall Design +Documentation, Store Front Design, Parametric Family Development, Modeling & Rendering, Revit 2013, PS, AI 2012 January-December SCI-Arc Solar Decathlon Los Angeles, Ca Project Design Manager, Responsibilities: DALE/ FRED: Exterior Facade Dev., Mock-Up Design + Fab., Structure + Logistics, Concept / Structure Dev., MEP/ Structure Coordination Revit /Rhino / Maya + V-Ray / Maxwell Rendering, Photoshop + Illustrator Wood / Metal Fabrication, SD, DD, CD + Presentation Documentation, 2011 April-September Oyler Wu Collaborative Silverlake, Ca Designer Responsibilities: Taipei Tower #3: Rhino/ Maya Schematic Design Modeling, V-Ray/Maxwell Rendering, Photoshop + Illustration, Presentation Drawings SCI-Arc Graduation Tent: Model Building, Steel Fabrication, Knitting
Education
2010 April-September G P / S (Gary Paige Studio) Los Angeles, Ca Designer
2008- 2013 Southern California Institute of Architecture Los Angeles, Ca Professional Bachelors Architecture Degree Graduated with Distinction
Responsibilities: Dingbat 2.0 Competition + Car Washes of LA: R+D, SD,DD, Mdls + Dwgs, Color and Diag. Studies, Illustration, Rendering, Presentations
2013 Solar Decathlon Project Architect/ Manager 1 year Student Union Vice President, 2 years Student Representative 3.8 GPA
Freelance 2014 March
emersonstudio Santa Monica, Ca 2003-’07 Rio Hondo College Whittier, Ca
Designer
Residential and Commercial Construction Drawings, Deans Honors
Responsibilities: Private Residence (Hillside Site, 10,000 sqft. Residence) Scheme Dev. and Site Modeling, Presentation Dwgs, Rhino 5, Autocad 2013
References
Volunteer
Gerhard Mayer, Senior Associate M. Arch, NCARB, AIA, LEED-AP Arquitectonica 818 West 7th, #800, Los Angeles, Ca 90017 Phone: 310.382.6495 E: gmayer@arquitectonica.com
Julie Adler, Technical Coordinator Perkins + Will 1221 2nd Ave., #200 Seattle, Wa 98101 E: julie.adler@perkinswill.com
2015 Februrary-April Free Lots Angeles Consultant/ Fabricaton 2012 May STEM Bernstein HS Guest Speaker/ Model Demonstration
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Tense Tower
Oyler Wu
10 Hour Excercise
Collaborative
Concept Modeling Basic Render + Lots of Post Rhino + V-Ray + Photoshop
Taipei Tower #3 Schematic Design Presentation Materials Maya + Maxwell
Fractured Dwelling Construction Docs 1,200 sqft. Single Family 2 bed, 2 Bath, Office, Deck + Green Roof Rhino Mdl, Dwg + Render
HCR Speedway Thesis Study
New Vision for Detroit
Expressive Tensegrity Guard Station
Concept for Competition Pers[ective + Erroded Axon Rhink + V-Ray Photoshop + Illustrator Approx. 4 Days of Modeling One Night to Render + Post
Rhino Mdl + Dwg V-Ray + Photoshop Adj. Illustrator Composited
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Sky City Transit
Sail Dwelling
Section Model
Solar Decathlon Rhino + Maya + Maxwell, Photoshop
Promotion Renders
Studio Project Hand Cut + Drawn, CNC Milled, Laser Cut + Steel Fabrication
Office Island
Tectonics
Parking Lot Retorfit
Prada + Lomas
Thesis Prep Rhino + Maya + V-Ray
Physical Model Rhino Mdl + Dwg, Laser Cut, Powder Print
PV Film Glazing Articulated Frame Frame Supports
The Observer + Planet Fight Club
1 A 13.0
Frit Low-E Glazing Glazing Frame Glazing Mount Glazing Support Frame Glazing Gutter Support Frame Mount
2 A 13.1
Visuals Studies Project Rhino Mdl, V-Ray, Powder Print, Hand Painted, Film + Edited
1 A 10.3
1 A 10.1
Catwalk Hand Rail Expanded Metal
1 A 10.2
Island of the Misanthropic Studio Project Design Document Project Maya + Mental Ray, Illustrator
Primary Surface Truss Unit Connector Unit Frame Unit Platform Unit Glazing Unit Cabinate/ HVAC
Aeroponic Feed Aeroponic Plants Aeroponic Fabric Aeroponic Tray Aeroponic Drain
2 A 15.1
Griders Stringers Floor Truss
HVAC Aeroponics 1 A 15.3
1 A 15.1
Lift Connector Lift Cab Lift Platform Lift Rails
Glazing Rain Gutter Pond / Water Basin
2
1 A 14.3
A 14.3
Over Flow Water Storage Irrigation Feed
Central Primary Concrete Structure + Foundation Exterior Primary Steel Structure + Foundation
Support Column Exterior Park Seating Exhaust Fan Housing Exhaust Fan Retaining Wall Parking Surface
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Split Stool
Beauty in the Cracks Personal Work Reclaimed Wood Steel Angle Steel Fabrication + Assembly and finishing
SCI-Arc Grad Pavillion
Lead Mtl. Fabricator Oyler Wu Collabrative Model Makimg + Knitting Wood Framing Steel Fabrication + Welding Rope Knitting Documentation
Bench + Coffee
Dual Purpose for Friends Personal Work Reclaimed Wood Salvaged Tube Steel Steel Fabrication + Assembly and Finishing
Mat Lab 2.0 Mock-Up Test
Channel to Triangle Beam
1:1 Mock-Up Beam + Cantilever Test Digital Project Alum. Plasma Cut + Welding Tested w/ 2K Winch
Mock Up Design Dev. Solar Decathlon, Collaboration With Leodan Castillio Rhino Mdl, Dwg + Render Wood Frame, Steel Fabrication + Assembly (Outsourced Bend Rolling)
Wide Flange to Triangle Cantilever
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Simplot HQ Adamson Associates Office + Annex Design Dev. + Construction Docs. Revit 2013
System Dev. Exterior Facade CD Modeling Revit Modeling + Texture Mental Ray Render + Photoshop
Office Entrance Store Front + Lobby DD Modeling Revit 2013 Mental Ray + Photoshop
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HCR Speedway New Vision for Detroit Concept for Competition. Perspective + Erroded Axon Rhino + V-Ray Photoshop + Illustrator Approx. 4 days of Modeling. One Night to Render + Post Conceptually based on the idea of using various track typologies as a programmatic massing. Certain types of tracks lend themselves to certain types of spaces and movement based on form. Using Drag strip typology for food as finding and knowing all options as soon as possible is most ideal. The Indy track on the other hand is used for larger retail where a desire to be more casual and slower paced is fine; this is also where a Large Anchor resides 4 stories up over two floors. A Nascar bank is planted green space and below is smaller retail, at center are farmers market kiosks.
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Office Island Parking Lot Retorfit Site + Section Elevations + Perspectives Rhino + Maya + V-Ray Independant office creative work space situated in the vast unused parking lot. Above the ground as to not lose parking while also creating privacy and allowing easier passive cooling. /Plan + Section of the Island
/Western Perspective of Counterweight and Membrane Enclosure
/Interior Perspective Looking North
/Eastern Perspective of Louvered Facade
/Entry Persepctive of Stair membrane Puncture and Louovered Enclosure
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Retro Tense Architecture Thesis Presentation Rhino Mdl + Dwg, GH Kangaroo Tested V-Ray Rendered + Animated, Illustrator + Photoshop, Tensegrity historically has operated as an engineering solution to enclose architecture (Biosphere by Fuller), or as sculpture (Needle Tower by Snelson). Architecture has an ability to meld both engineering and sculpture into building and more. Using tensegrity systems as a volumetric sub-divider at various scales enables it to accomplish basic architectural functions of floor, wall, ceiling, roof, room, furniture in a manner that will also create an architectural effect/ affect through material, light, repetition and density.
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Tensegrity Work Station Thesis Mock-Up Rhino Mdl + Dwg, GH Kangaroo Tested Steel Fabrication, Wire Rope Fabrication, Fabric Cut + Sewn Mock-up that consited of a few ideas within the project and composited in a manor that was representitive of the project as well as becoming a proof of concept. This was then used to display the digital presentation. Primary Steel Fabrication took approximately two days with cables being made and install over a night.The Fabric took another day or so of playing with material.
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Fractured Dwelling Construction Docs 1,200 sqft. Single Family 2 bed, 2 Bath, Office, Deck + Green Roof Rhino Mdl, Dwg + Render A single family residence located in Pico Union. This home resides in a narrow lot and utilizes natural light as much as possible by breaking up the home into distinct volumes. A simple geometry enables interest while keeping exposure to a minimum. Standard building methods are employed and a mix of materials adds variety. A deck and green roof add exterior space misplaced by the house.
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HCR Speedway New Vision for Detroit Concept for Competition. Perspective + Erroded Axon Rhino + V-Ray Photoshop + Illustrator Approx. 4 days of Modeling. One Night to Render + Post Conceptually based on the idea of using various track typologies as a programmatic massing. Certain types of tracks lend themselves to certain types of spaces and movement based on form. Using Drag strip typology for food as finding and knowing all options as soon as possible is most ideal. The Indy track on the other hand is used for larger retail where a desire to be more casual and slower paced is fine; this is also where a Large Anchor resides 4 stories up over two floors. A Nascar bank is planted green space and below is smaller retail, at center are farmers market kiosks.
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Calder Museum Space One Day Excersice Concept Modeling Basic Render + Lots of Post Rhino + V-Ray + Photoshop Another quick exercise to break up the routine. This museum piece is base on some ideas/ suggestions I made to a colleague. The concept is base on viewing a very heavy sculpture,in this case a Alexander Calder sculpture, in suspended space where it might feel a bit precarious. The sculpture would sit over a translucent floor where it could be viewed from below and seen against a cityscape rather then the more typical corporate tower exterior or lush garden. Being an exterior sculpture typically louvers felt appropriate to regulate light and frame the view as well as juxtapose the curving red steel. This being another exercise I decided to be a bit more stringent on the time. Cutting time for modeling down to four hours which included time for a quick sketch based on ideas I had. One hour of this time was spent modeling the Alexander Calder Flamingo sculpture itself. Photoshop time down to four hours for the second image. This included constructing the background from 5 images, placing people and adjusting levels, curves, hues, saturation, adding shadow and highlights. The first image was far quicker being mostly a render with some trees and sky, this was about 30 minutes plus an hour of render time.
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Mock Up Design Dev. Solar Decathlon, Collaboration With Leodan Castillio Rhino Mdl, Dwg + Render Wood Frame, Steel Fabrication + Assembly (Outsourced Bend Rolling) Taking approximately ten days from site set up, prepreation, fabrication, assembly to final site clean up. The mock-up was utilized to test the exterior skin structure that was developed. Result was a super strong rigid frame that was quite easy to assemble.
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Sail Dwelling Promotion Renders Solar Decathlon Rhino, Maxwell, Photoshop Sail Dwelling is based on an idea of wind surfing sails as a means to provide shade for the home while being tied conceptually to a sunny California surf house. Nissan was interested in sponsorship and therefore required renderings for a proposal. This Promotion rendering was done while on a work trip in Madrid attending the Solar Decathlon Europe.
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Solar Decathlon 2013 FReD Folding Residential Dwelling Schematic Design Rhino + Maxwell The primary driver for this scheme was to create an easily transportable and deployable . The project developed from a fairly complex design with multiple moving parts and portions that slide vs fold.
/FRed Base Maxwell Exterior Render
Eventually the scheme would be simplified in order to bring the probably cost to something more reasonable and went with a version that was all folding in order to strengthen the design. /FRed Base Interior Maxwell Render
/FRed Photoshop Maxwell Exterior Render /FRed Photoshop Maxwell Interior Render
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Folder
Primary Steel
Pushup Closure
Floor Girder (F): W12x16 Dim: 4”x12”x1/4”
Sky Light
Beam (B): W8x13 Dim: 4”x8”x1/4”
Hatch
Post (P): Tube 4x4 Dim: 4”x4”x1/4”
Aluminum Frame Openings
Spacer (S): Custom W7 Dim: 4”x7”x1/4”
Built-in Bracing Finish Marine Ply Storage Built-ins (SH)
(CJ)
(SH)
Moveable Built-ins (CJ)
(SH) Tertiary Timber Ceiling Joist (CE): 2x8 Dim: 1.5”x7.5”
Ceiling Joist (CE): 2x8 Dim: 1.5”x7.5”
Floor Joist (FJ): 2x18 Dim: 1.5“x17.5”
Wall Stud (WA): 2x6 Dim: 1.5“x5.5”
Sheathing (SH): OSB Ply Dim: 4’x8’x5/8”
Floor Joist (FJ): 2x18 Dim: 1.5“x17.5”
Interior FInish (IF): Marine Ply Dim: 4’x8’x3/8”
(WS)
(FF) (IF)
Sheathing (SH): OSB Ply Dim: 4’x8’x5/8”
Finish Floor (FF): Bamboo Dim: 3-3/4”x5/8”
Interior FInish (IF): Marine Ply Dim: 4’x8’x3/8”
Exterior Finish (EF): Reclaimed Dim: 6”x5/8” (FF)
Finish Floor (FF): Bamboo Dim: 3-3/4”x5/8”
(IF)
(FJ)
(HI)
(S)
Tertiary Timber
Wall Stud (WA): 2x6 Dim: 1.5“x5.5”
(HI) Exterior Finish (EF): Reclaimed (PS) Dim: 6”x5/8”
(PS)
Secondary Steel
(HI)
(B)
Folder Pivot (FO): Tube 12x4 Dim: 4”x12”x1/4”
(PS)
Floor Girder (FL): Tube 8x3 (HI) Dim: 3“x8”x1/4”
Secondary Steel
Pivot Support (PI): Tube 4x3 Dim: 4”x3”x1/4”
Folder Pivot (FO): Tube 12x4 Dim: 4”x12”x1/4”
Post (PO): Tube 3x3 Dim: 3”x3”x1/4”
Floor Girder (FL): Tube 8x3 Dim: 3“x8”x1/4”
Hinge (HI): Flush Dim: 1-1/2” Dia. 1/4” Plate
Pivot Support (PI): Tube 4x3 Dim: 4”x3”x1/4”
(PS)
Buffer (BU): Rubber Dim: 1/2”
Post (PO): Tube 3x3 Dim: 3”x3”x1/4”
(HI)
Hinge (HI): Flush Dim: 1-1/2” Dia. 1/4” Plate
(PS) (FL)
Solar D
(P)
FReD Drawings (F)
Structure, Transition, Area vs Volume, Insulation, MEP, PV + Solar Thermal Rhino Mdl, Dwg + Render
Buffer (BU): Rubber Dim: 1/2”
/Structure System
(FO) Transition
/Transition
The program was broken by programmatic function and level of privacy. Transition from most public to most private in a linear fashion.
Most Public / Greet
Public / Live
Common / Work
Private / Rest
The Private portions of the home are also at a higher elevation and make use of a translucent divider
Most Private / Clean
Air Purge Blower 34 sqft
Mech Room 6’9”
Heat + Cool Unit Bath Exhaust EVR
59 sqft 129 sqft
12’0” 156 sqft
(71 sqft Open Kitchen)
175 sqft
29 sqft
Shower Head Shower Toilet Sink
Stove Exhaust
Washer / Dryer
Condenser Coolant Lines
Kitchen Sink
Mech Room Exhaust
6’5”
29 sqft
Junction Boxes
35 sqft
Heat + Cool Unit
1’0”
Water Heater Unit
275 Gal. Gray Water Tank
Heated Water Tank 7’6”
12’6”
9’0”
2’6”
11’6”
Water Line
3’3”
Water Feed Line 275 Gal. Gray Water Tank
/Area
195 Gal. Pre Heated Water Tank
4911 cuft
(157 sqft Deck)
/MEP
689 sqft 1546 cuft 1555 cuft
/Volume
1810 cuft
Solar Thermal Tubes 34 6.75’ Tubes @ -15º
Windows
Removable Window Insulating Panels
Insulation Goal
All glazing shall be double pane low-e glass with a 1/2” airspace. Aluminum frame with a thermal break equals a Total R Value of 2.04
A 2” semi rigid panel would be used when need to cover and seal glazing. These would be cellulose filled with a rating of 3.1/ IN. They would be stored in Cabinets and most likely portions of the floor. Total R value of 7.6
The primary goal would be to get the need of insulation down to a level where the use of cotton batts be eligible.
Onyx Solar Crystalline Glazing 16 Watts / Square foot @ 0º 110.6 SQFT (16.7W/SQFT) = 1847W Onyx Solar Crystalline Glazing 16 Watts / Square foot @ 11.5º 59.3 SQFT (16.7W/SQFT) = 990.3W
4” Insulation
Onyx Solar Crystalline Glazing 16 Watts / Square foot
4” Insulation
3” Water Tubes 5.3” Insulation
@ 0º 100 SQFT (16.7W/SQFT) = 1670W Ceiling 10” Insulation Typ.
Onyx Solar CIGS Glazing 11 Watts / Square foot
Solar Thermal Tubes 34 9.4’ Tubes @ 0º
Floor 9.5” Insulation
@ 90º 83.5 SQFT (12W/SQFT) = 1002W 4” Insulation
4” Insulation 6.5’x7’x9” Water Tank
4.4’x8’x9” Water Tank
6.5’x7’x9” Water Tank
@ 11.5º 54.5 SQFT (16.7W/SQFT) = 910.1W
Floor 14” Insulation
Skylight Floor 17” Insulation
13” Insulation
5” Insulation Floor 9.5” Insulation
Floor 9.5” Insulation
Onyx Solar Crystalline Glazing 16 Watts / Square foot
Onyx Solar CIGS Glazing 11 Watts / Square foot Solar Thermal Tubes
@ 90º 115 SQFT (12W/SQFT) = 1380W
15º
0º
PV Glazing 11.5º
11.3” Insulation 11.8” Insulation
13.6” Insulation
13.6” Insulation
4” Insulation
90º
12.8” Insulation
7.75” Insulation
West Elevation
/Insulation
/PV + Solar Thermal
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Beam Prototype DATA: TOTAL # OF 4' x 8' SHEETS: 1 TOTAL # OF PIECES: 6 TOTAL LINEAR FEET OF WELDS: 24’ TOTAL WEIGHT OF PIECES: 1632 lbs. TOTAL LINEAR FEET OF CUTTING: 105’
Channel to Triangle Beam
Mat Lab 2.0 Mock Up + Test 1:1 Mock Up Beam + Cantilever Test Aluminum Fabrication
Wide Flange to Triangle Cantilever
Fabricated in aluminum. Using Digital Project to design the testing rig and generate digital testing model as well as files for production. Plasma Cut pieces were welded and tested using a winch.
The primary premise of this scheme is to use a single pice of steel that will morph into a variety of sections to cantilever a concrete mass that will act as a chill out spot for students. The Concrete is formed to create the platform, stair, guard rail and seating. Current it is approximately 183 cubic ft of concrete which equates to 27 540 lbs. The Beam transitions from various types of standard extruded steel sections using the wide flange as the initial and last state.
GROUP 3
Richard Lucero, Kevin Chen, Joseph Chiafari
AS MATERIAL LAB SEMINAR - SPRING 2012
COVER SHEET DATE: 2012-02-27
1
1/2” Plate to Distribute Load Cantilevered Beam Failed as a result of deformation of the web under load until the pieced fell out of the base.
Shackle
1/2” Thick Steel Base - Piece not Attached, Only Friction Held.
1” Deep Concrete Anchors (6x)
3/16” Wire Rope
Pulley to Redirect Force Steel Bracket to Secure Guide Wire to insure vertical loading
Wire Rope to Winch
GROUP 3
Richard Lucero, Kevin Chen, Joseph Chiafari
AS MATERIAL LAB SEMINAR - SPRING 2012
CANTILEVER TESTING RIG
14
GROUP 3
Richard Lucero, Kevin Chen, Joseph Chiafari
AS MATERIAL LAB SEMINAR - SPRING 2012
CANTILEVER TESTING RESULT
15
Pulley to Redirect Force
Plasma cut sheets are prepped by grinding to finish the edges.
Welds are cleaned up where necessary.
GROUP 3
Pieces are twisted to form and placed in their correct location and clamped into place.
Testing Supports are cut and constructed from thicker steel to ensure it does not fail before the piece.
Richard Lucero, Kevin Chen, Joseph Chiafari
Angled Supports are made for the other end of the Beam which will then be attached to a column.
AS MATERIAL LAB SEMINAR - SPRING 2012
PROTOTYPE FABRICATION PROCESS
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Concept Design + Development 1:1 Material Mock Up Test to Failure Rhino Model, Dwg + Render The last material lab without anything being built this time around it was super exciting with the possibility of the project becoming a permanent structure in SCI-Arc.
A B C
A B C New Beam
Original Beam
Top
Section A-A
Section B-B
Section C-C
The semester started with a simple idea of taking a standard wide flange and de constructing it. It evolved to a reconstructed wide flange that would become a beam that would transition from various standard steel sections into one another and this would compliment its movement and load. Chill Out Beam was a heuristic project that used a concrete mass, doubling as an chill out space, would demonstrate visual its weight and the forces it exerts on the beam as it hangs acting as a cantilever. For many reasons nothing will be built permanently. A piece of the beam was fabricated in aluminum and tested to failure. The beam was incredibly strong and as a cantilever its webbing deformed until it fell out of the rig.
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Oyler Wu Collaborative Taipei Tower #3 Schematic Design Presentation Materials Maya + Maxwell Taipei Tower #3 is a high end residential tower. The client requested 3 schemes be produced. This scheme was developed by me and was the chosen scheme to move forward with. Project is currently under design development. The interesting problem with the development of the tower as a whole was the fact that we only were given +/- 5ft of the exterior of the building to work with. We had to ensure everything happened within this space and guarantee a certain amount of open space and balcony. Articulating the over all gesture and using minimal material was another challenge. Trying to keep the scheme relatively simple while still achieving interesting complex effect was the goal.
/Entry Vertical Perspective
/Railing Detailing Perspective
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Oyler Wu Collaborative SCI-Arc Graduation Pavilion Model Making + Knitting Wood Framing Steel Fabrication + Welding Rope Knitting Documentation Graduation Pavilion for the 2011 graduating class. I participated in everything from model construction to the final assemble and rope knitting. My biggest contribution through out was steel fabrication. I was responsible for fabricating the most complicated components of the steel structure that required precise compound angled cuts through 1/8â&#x20AC;? steel wall tubing. I was also responsible for training other team members proper technique and safety when cutting steel and figuring out faster fabrication techniques. I also was the only other team member that was responsible for welding other then Dwayne Oyler. Throughout the construction process I was responsible from documenting through photography and video at the various stages.
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Yek. Started as a collaborative project in 3A studio it was based on the idea of a new urban typology that would serve as a test bed for alternative living.
Island of the Misanthropic 3A Studio Project Design Document Project Maya + Mental Ray
A large aeroponic greenhouse steel truss super structure is primary and self contained residential blocks sit at its center.
Residences are essentially glass boxes that use continuous cabinets to define space and carry programmatic storage, plumbing and HVAC.
During design documents the buildings systems were better defined as well as the cabinet detailing and construction method.
PV Film Glazing Articulated Frame Frame Supports 1 A 13.0
Frit Low-E Glazing Glazing Frame Glazing Mount Glazing Support Frame Glazing Gutter Support Frame Mount
2 A 13.1
1 A 10.3
1 A 10.1
Catwalk Hand Rail Expanded Metal
1 A 10.2
Primary Surface Truss Unit Connector Unit Frame Unit Platform Unit Glazing Unit Cabinate/ HVAC
Aeroponic Feed Aeroponic Plants Aeroponic Fabric Aeroponic Tray Aeroponic Drain
2 A 15.1
Griders Stringers Floor Truss
HVAC Aeroponics 1 A 15.3
1 A 15.1
Lift Connector Lift Cab Lift Platform Lift Rails
Glazing Rain Gutter Pond / Water Basin
2
1 A 14.3
A 14.3
Over Flow Water Storage Irrigation Feed
Central Primary Concrete Structure + Foundation Exterior Primary Steel Structure + Foundation
/Design Development â&#x20AC;&#x153;3D Chunkâ&#x20AC;? Showing Various Systems
/Presentation Axonometric Peel Away Drawing
Support Column Exterior Park Seating Exhaust Fan Housing Exhaust Fan Retaining Wall Parking Surface
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2'-8"
3'-1"
2'-10"
Design Docs
2'-10"
Yek.
Kitchen 95 SqFt
SC
5'-4"
3'-0"
3'-0"
1'-10"
6'-3"
3'-5"
3'-2"
Ă&#x2DC;5'-0"
Kitchen 93 SqFt
3'-1"
6 A 8.0
R3'-0"
1'-2"
4'-8"
3'-1"
Bath 68 SqFt
2'-1"
3'-2"
Lift Platform 159 SqFt + 0' 0"
Porch 127 SqFt
Living 163 SqFt
2'-0" 2'-7"
4A Studio Project Design Documents Details + Diagrams Maya, Mental Ray, Rhino
9'-9"
Bedroom 143 SqFt
Bedroom 95 SqFt
1'-7"
Living 151 SqFt
3'-1"
3'-0"
Island of the Misanthropic
4 A 8.0
1 A 10.2
1'-4"
9'-9"
1'-2" 2'-0"
8'-0"
11'-1"
9'-8"
2'-8"
14'-2"
6'-10"
33'-4"
20
10
5
0
80 Vehicle Loading
Unit Aggregate
+ 2005' + 1061'
21'-1 1"
Accessable Path of Travel
1 A 4.1
Typical Path of Travel
520
440
480
Entrance + 2005'
1
560
A 8.0
NC
+ 1089'
1
1 A 10.2
SC
a Vis
576'6"
ta Str
ee t
A 4.2
Bonit
Study Over Head Storage Entertainment / Media Bath Storage Sink Toilet Shower Tub
+ 1089'
Bedroom Closet Overhead Book Shelves Media Entry Bar Counter Storage Low Seat
400
Stair to Kitchen/ Living
360
50
51
240
280
200
160
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
46
47
120
80
69
44'-0"
31
20'-2 "
20'-6"
49
320
48
40
16
Patio Storage / Low Seat Bar Counter
'-0 "
28
27
26
25
24
23
22
21
Parking 69 Regular Parking Spots Including Visitor 3 ADA Parking Spots
20
19
18
17
8'
16
15
14
13
12
26'-9"
Kitchen Upper Cabinates/ Storage Sink Stool Seating
29
14'-10"
14'-0"
30
20'-6"
Stair to Bath / Study / Bed
" -0
+ 1961'
Living Overhead Storage Entry to Patio Media Books
ADA 1
ADA 2
ADA 3
4 A 8.0
2 A-10.1
Enlarge Exploded Unit1 Scale: N/A
11
10
9
8
7
6
5
4
3
2
1
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Studio Sky City Transit 4A Studio Project Conceptual Models Presentation Section Model Hand Cut + Drawn, CNC Milled, Laser Cut + Steel Fabricated, These first three models were initial study models for different ideas about the project. One model was looking at a multiple level platform strategy. Another strictly at the various forms of transportation and their given routes. The last the idea of a few vertical structural cores and multiple hung/ cantilevered buildings. The presentation model was its self an illustration/ example of how the buildings could be supported by limited structural cores.
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Studio Sky City Transit 4A Studio Project Design Document Project Rhino Mdl, Dwg + Render
Ramp Circulation
Retail Exterior Store Front Green Walk
This project is a master plan for future development of Union Station in downtown Los Angeles. Primary driver for the project was the idea of a bicycle infrastructure that consisted of sky walks/ bike ways that would run through the city.
Open Program
Slabs use flowing Multi Level Planes to Create an Exterior Terrain that Allows Exterior Park Like Store Fronts
Kiosk Pedestrian Walk
Stair
Truss
Exterior Circulation/ Open Program
Bike Path
1:15 Ramps are used to traverse program and other cicrculation, bridging between via truss structure and suspension cables. Lower level are uni directional bike paths and above is open pedestrian walk with open program spaces and space allocation for kiosks. Major Connectors have two pedestrian levels
Office Using Channels to cut through the floors allow a narrow office space fo better light and natural ventilation while also creating exterior spaces for Eating/ Smoking.
Support Structure
Flat Circulation
Offices
Union Station would be the central hub of these sky ways and was developed as a vertical street where program was staked and dispersed through out so that there was no single concentration. Residences are treated as elevated blocks that are accessed by these sky ways.
Open Program/ Planted Area Exterior Open Program Primary Navigation Levels
Exterior Courtyard Large Private Office Suites
Entertainment
Structural Core
Concrete Structure
Maximizing floor area and ceiling height to create large open volumes with mezzanine/ balcony areas to acomodate various types of events. Performace Area
Lift
Ramp Kiosk
Courtyard/ Attrium Stairs
Mezzanine
Exterior Patio/ Open Program
Translucent Canopy Kiosk Elevated Train
High Speed Rail 4 Platform Levels and 4 Tracks. Long Wide with UniDirectional Circulation to help with crowds
Structure
Sky Light/ Ventilation
Stairs/ Escalator
Used to traverse the site from east to west. 3 sets exist, one coming from Metro HQ, the second from East Portal and the third from the Parking Structure. is open program which can be planted allow for kiosk. Lower levels are used to navigated laterially between platorms and types of transport.
Primary Structural Support for programatic spaces as well as Ramp Circulation. Support via Suppension or Catalevers. A double walled ribben like tube carriers all load to the ground keeping the track level mostly open as well as connecting various levels and program through out. Ramps in opposing directions are 1:15 with at minimum 2 lifts at most 4 lifts. stairs run from below to top levels. Ment to create a vertical pedestrian walk.
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Tectonics Prada + Lomas Physical Model Rhino Mdl + Dwg, Laser Cut, Powder Print Taking two very different buildings and structural systems as a starting point and then devising a way to compose the two systems into a single structure that would have tectonic expression of its inherent structure.
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Visual Studies The Observer + Planet Fight Club Visuals Studies Project Rhino Mdl, V-Ray, Powder Print, Hand Painted, Film + Edited Using a series of steps to develop a volume with varied textures and color to create a planet. This planet was then manipulated through grasshopper to create a mass that would be printed and painted for use as a set for a short film.
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Yek. 4.5 KW Sterling Engines
Sustainable Systems
Bubble Wrapped Enclosures
M2CBWD
Dwelling Two
Micro Multi Couple Bubble Wrapped Dwelling Rhino Mdl, Dwg + Render Shared Deck
A critical component to stainability is doing more with less. It is important that architecture encourages greater efficiencies in living, e.g. higher population densities on a lot. Also to encourage more common open shared space resulting in a greener city-scape.
Dwelling One
Retention Pondss
Sloped Concrete Grade
Expanded Metal Decks + Car Park
Water in Los Angeles is an expensive commodity. Three quarters of the cost of water is related to energy required to pump water from various locations to Los Angeles. It is important to retain as much rain water as possible to cut dependency on pumping. The amount of rainfall that falls on a standard lot is enough water to sustain 12 people for a year.
5570 Gallon Tank (12x) Each Person is Allocated ~15 gallons of water a day
Materials used should be easily reusable and recyclable by avoiding the use of plastics and adhesives. Minimizing hardware enables recycling and reusing materials far easier . This all results in building components having a longer succeeding lives in other buildings.
Storage
Bedroom
Seat + Hidden Bath
Seat + Hidden Bath
Seat + Hidden Bath
Closet
Private
Bedroom
Sink
Bed
Car Parking Bedroom
Turntable
Kitchen Kitchen
Living
Common
Dining
Shared Deck
Living
Dining Bench Table
Car Parking
Built-in Bench
Bedroom
Sink
Bedroom
Bedroom
Seat + Hidden Bath
Seat + Hidden Bath
Toilet
Private
Tub
Car Parking
Sterling Engine
Living
Bed
Dining
Living Shared Deck
Car Parking
Retention Tanks
Retention Tanks
Bed Bed Sterling Engine
Closet Tub Storage
Kitchen
Dining
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Yek.
Materials Lab JWRH Digital + Printed Model Section + Plans Maya Model, Rhino Prep + Dwg, V-Ray, Powder Print Constructing a structure that would support 4K that would be off center going from 4 points of contact to 3 points. The goal was to capture an inner volume of space with certain qualities and while maintaining a figure. The structural system is simple staggering of plates that proves to be quite strong.
1 P4
4,000 #
2 P5
+ 20’ - 0”
LINE OF 4,000# PLATFORM
4,000 #
+ 20’ - 0”
LINE OF 4,000# PLATFORM
LINE OF 4,000# PLATFORM ABOVE BEARING AREA
2 P2
2 P2
1 P5 2 P3
2 P4
12’ DIA. VOID
1 P3
TOP PLAN 3/8” = 1’-0”
1
12’ DIA. VOID
12’ DIA. VOID
BEARING AREA
BEARING AREA
0’ - 0”
0’ - 0”