ASSIGNMENT 1 (A)
Analyze 3 buildings, one from each of the following different assembly system types. LAYERED WALL SYSTEM MONOLITHIC WALL SYSTEM CURTAIN WALL SYSTEM Choose buildings that broaden your range of knowledge.
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Sports Hall La Minais
Bohuon Bertic Architectes
Layered Wall System
Built in 2021 and designed by Bohuon Bertic Architectes, the Sports Hall La Minais is a 37000 SF sports facility in Sainte-Luce-sur-Loire, France. As it sits on the edge of the city, the design come up from the ground in tiers eventually leading to its largest space at 130 feet. Its use of soft tones creates a welcome environment both inside and outside.1
The construction is made of metal frames with a triple-skin facade with external insulation. The metal cladding varies between perforated and opaque and wraps horizontally around the building. Its southwest facade has a balcony facing the Parc de la Minais and its beautiful pond. Its northeast facade is largely glazing to enjoy the views towards farmlands to the east.1
Northeast Perspective1 Entrance Perspective1
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Austin Webster Detailing and
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Austin
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Austin Webster Detailing and Construction Documents
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Detailing and Construction Documents
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Mary Polites FINAL BOOKLET
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Austin
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Austin Webster Detailing and Construction Documents
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Scale: 1/32” = 1’ 0”
Scale: 1/32” = 1’ 0”
Austin Webster Detailing and
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Construction
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Austin
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Austin Webster Detailing and Construction Documents
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Detailing and Construction Documents
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Mary Polites FINAL BOOKLET
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Tozzer Anthropology Building
Kennedey & Violich
The new Tozzer Anthropology Building is a 35,000 square foot transformation of an existing library building which houses faculty and graduate student o ces, a library, classroom and seminar spaces, and provides accessibility to an adjacent museum complex. The building is located at the end Divinity Avenue across the Street from Divinity Hall and in the middle of University Museum, a large courtyard building made up of the Peabody Museum of Archaeology and Ethnology and the Harvard Museum of Natural History. Both buildings are on the National Register of Historic Places.2
Modernist era university buildings are aging across America due to outdated construction that was based on building codes that cannot meet contemporary envelope, seismic, and energy requirements. At the same time universities cannot dismiss the embodied energy and materials that make up these buildings. The Tozzer Anthropology Building transforms the public presence and programs of Johnson and Hotveld’s 1971 Tozzer Library by re-using the existing building’s foundation, campus infrastructure connections, and steel and concrete structure. The new massing increases usable SF by 29% with a copper roof volume, which rotates to capture daylight and strengthens a reading of the building as a pavilion in the Peabody Courtyard.2
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Mary Polites Assignment 1A Tozzer Anthropology Building
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2WEST ELEVATION
Scale: 1/16” = 1’ 0”
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2EAST ELEVATION
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Scale: 1/16” = 1’ 0”
2SECTION A 2SECTION B
Scale: 1/16” = 1’ 0”
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Austin Webster Detailing and Construction Documents
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BOOKLET
NOVARTIS CAMPUS
Weiss ManfrediCurtain Wall System
Building 335 is a 140,000 square foot oncology o ce building at Novartis’ North American Headquarters. Five oors of open o ce work areas are connected by an ascending spiral of “living rooms” with vistas to the generous 230-acre campus.3
Marked by wood nishes, column free spans, and clear glass, the "living rooms" provide a common ground for distinct project groups to interact. The primary work areas are light lled and are con gured for maximum exibility and interdisciplinary collaboration. Clad in a curtain wall of oscillating acid etched, re ective, and clear glass, the building mirrors the landscape and introduces an innovative paradigm for collaborative work.3
The building is part of Novartis’ refreshed North American campus, which also includes buildings by Raphael Viñoly, Fumihiko Maki, and Vittorio Lampugnani.3
Austin Webster Detailing and Construction Documents
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Austin Webster Detailing and Construction Documents Mary Polites FINAL BOOKLET
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Polites Assignment 1A Novartis Campus
Scale: 1/16” = 1’ 0”
Scale: 1/16” = 1’ 0”
Austin Webster Detailing and Construction Documents
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Austin Webster Detailing and Construction Documents Mary Polites FINAL BOOKLET
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Mary Polites Assignment 1A Novartis Campus
Scale: 1/16” = 1’ 0”
Scale: 1/16” = 1’ 0”
Austin Webster Detailing and Construction Documents
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Austin Webster Detailing and Construction Documents Mary Polites FINAL BOOKLET
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Assignment: Building:
Class: SPRING 2022 Semester:
Mary Polites Assignment 1A Novartis Campus
Scale: 1/16” = 1’ 0”
Austin
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Austin Webster Detailing and Construction Documents
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Detailing and Construction Documents
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Class: SPRING 2022 Semester:
Assignment: Building:
Mary Polites FINAL
BOOKLET
Professor: Mary Polites Assignment 1A Novartis Campus
Scale: 1/16” = 1’ 0”
Scale: 1/16” = 1’ 0”
Scale: 1/16” = 1’ 0”
Austin Webster Detailing and
Austin Webster Detailing and Construction Documents
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Construction Documents
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Professor: Mary
Assignment:
Assignment: Building:
Class: SPRING 2022 Semester:
Mary Polites FINAL BOOKLET
Polites Assignment 1A Novartis Campus
Austin Webster Detailing and Construction Documents
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Austin Webster Detailing and Construction Documents Mary Polites FINAL BOOKLET
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Mary Polites Assignment 1A Novartis Campus
ASSIGNMENT 1 (B)
Using Assignment One (A) as a launching point, produce supporting diagrams and an axonometric diagram to identify the major systems of each case study. Some speculation may be necessary, so back up your descriptions by providing technically appropriate explanations.
Austin Webster Detailing and Construction Documents Mary Polites
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AXON PERSPECTIVE
FLOOR
WALL SECTION
SCALE: 1/4" = 1' - 0"
ROOF SYSTEM
WALL SYSTEM
FLOOR SYSTEM FOUNDATION SYSTEM
WALL ASSEMBLY
SCALE: 1/2" = 1' - 0" PLAN DETAIL NOT TO SCALE AXON PERSPECTIVE
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ASSIGNMENT 1 (C)
Select one case study assembly from Assignment One (B) to further explore in greater detail and understanding. Draw and annotate a wall section, an exterior wall plan detail, a partition section detail and an elevation detail. Each drawing should show enough information to convey how it’s assembled, and the components relate to each other. Some speculation may be necessary, so back up your descriptions by providing technically appropriate explanations.
Austin Webster Detailing and Construction Documents Mary Polites
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Assignment 1C
Class: Building: Sports Hall La Minais
East France Approximated Classification: 4A
Virginia's Climate Classification: 4A
COPING
ROOFING SYSTEM: MEMBRANE MINERAL WOOL VAPOR BARRIER MINERAL WOOL
LIGHT STEEL FRAME
STAINLESS STEEL ANGLE
Wall System Required
R-Value: 8 / 13*
*(The second R-value applies where more than half of the insulation is on the interior of the mass wall.)
Given Wall System R-Value:
23
ALUMINUM PROFILED SHEET E-CLIP
PROFILED STEEL SHEET
DOUBLE-PANE EXTERIOR WINDOW
MATERIAL
WALL ASSEMBLY PURPOSE
ALUMINUM
FINISH FACE. ABLE TO HOST PAINT AND HAS A NICE MATTE FINISH FOR A MODERN LOOK
3" RIGID BOARD INSULATION
FLOOR FINISH CAST-IN-PLACE CONCRETE SUB-FLOOR RIGID BOARD INSULATION
CAST-IN-PLACE CONCRETE CONCRETE FOOTING
WALL SECTION
SCALE: 1/2" = 1' - 0"
3" = R-10 (NOT COUNTED) 5.5" = R-18.2
MINERAL WOOL INSULATION. WHEN SWITCHING TO THE 3" RIGID BOARD INSULATION, THIS LAYER HELPS RETAIN AT LEAST A 13 R-VALUE
8" = R-4.8
INTERIOR EXTERIOR
CAST-IN-PLACE CONCRETE
STRUCTURAL. ALL ELEMENTS OF THE BUILDING RELY ON THIS LAYER FOR ITS STRUCTURE.
MEMBRANE VAPOR BARRIER
MINERAL WOOL INSULATION. THIS LAYER IS RESPONSIBLE FOR THE BULK OF THE INSULATION OF THE BUILDING AS A WHOLE
LIGHT STEEL FRAME
PERFORATING THE INSULATION LAYER AND TYING INTO THE CONCRETE STRUCTURE, THIS LAYER ACTS AS EXTERIOR CLADDING SUPPORT (STRUCTURAL)
ALUMINUM PROFILED SHEET
THIS LAYER ACTS AS A SUN MANAGEMENT LAYER, AND ALSO ACTS AS A DECORATIVE FINISH FOR THE MODERN INDUSTRIAL LOOK OF THE BUILDING
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COPING
Roof System Required R-Value: 49
LIGHT STEEL FRAME
STAINLESS STEEL ANGLE
Given Roof System R-Value: 33.7*
*Because the code used in this analysis is as assumption of which code would have been used in France with this building, it is reasonable to assume this given value complies with local R-value requirements
ROOF
ASSEMBLY
PROFILED STEEL SHEET
ALUMINUM PROFILED SHEET E-CLIP
DOUBLE-PANE EXTERIOR WINDOW
2" = R-7.5
MATERIAL
STEEL BEAMS
PURPOSE
STRUCTURAL; SUPPORTS ROOF LOADS AND TRANSFERS THEM ACROOS LARGE SPANS TO THE CONCRET EXTERIOR WALLS
ADITIONAL INSULATIVE VALUE, ALSO CREATES A FINISH VISIBLE THROUGH THE STRUCTURE OF THE ROOF. 80mm MINERAL WOOL INSULATION INSULATION. ONE OF TWO LAYERS OF INSULATION IN THE ROOF SYSTEM
ACOUSTIC METAL PANEL
4.75" = R-15.68
3" RIGID BOARD INSULATION
FLOOR FINISH CAST-IN-PLACE CONCRETE SUB-FLOOR RIGID BOARD INSULATION
CAST-IN-PLACE CONCRETE CONCRETE FOOTING
WALL SECTION
SCALE: 1/2" = 1' - 0"
MEMBRANE VAPOR BARRIER. 120mm MINERAL WOOL INSULATION INSULATION. THIS LAYER IS RESPONSIBLE FOR THE BULK OF THE INSULATION OF THE BUILDING AS A WHOLE
MEMBRANE PROVIDES THE FIRST LAYER OF CLIMATE CONTROL INCLUDING PROTECTING THE INSULATION LAYERS
ROOFING SYSTEM: MEMBRANE MINERAL WOOL VAPOR BARRIER MINERAL WOOL Austin Webster Detailing and Construction Documents Mary Polites Assignment
3.2" = R-10.56 A104
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Class: Building: Sports Hall La Minais
160mm MINERAL WOOL
80mm MINERAL WOOL
ACOUSTIC METAL DECK
PURLIN
STEEL STRUCTURE
DROP METAL CEILING SUBSTRUCTURE
DROP METAL CEILING
2X FLOOR PLATE
*The foundation must extend a minimum of 2 FT into the ground at the edge of construction
INTERIOR
FOUNDATION ASSEMBLY PURPOSE
MATERIAL
FLOOR FINISH CAST-IN-PLACE CONCRETE SUB-FLOOR RIGID BOARD INSULATION
SCALE: 3/4" = 1' - 0" PARTITION SECTION DETAIL
8" = R-4.8
MINERAL WOOL INSULATION. BECAUSE THE EXTERIOR INSULATION VALUE BARELY CLEARS THE REQUIRED VALUE, THIS LAYER SUPPLEMENTS ITS INSULATION
CAST-IN-PLACE CONCRETE
STRUCTURAL. ALL ELEMENTS OF THE BUILDING RELY ON THIS LAYER FOR ITS STRUCTURE.
MINERAL WOOL INSULATION. THIS LAYER IS RESPONSIBLE FOR THE BULK OF THE INSULATION OF THE BUILDING AS A WHOLE
CAST-IN-PLACE CONCRETE CONCRETE FOOTING
EXTERIOR
3" RIGID BOARD INSULATION
3" = R-10 SCALE: 3/4" = 1' - 0" FOUNDATION DETAIL
SCALE: 3/4" = 1' - 0" FOUNDATION DETAIL
INTERIOR EXTERIOR
VARIES FROM HARD RUBBER MATS DURABLE FOR RECREATIONAL ACTIVITY TO CARPET IN OFFICE SPACES. IN UNFINISHED SPACES, THIS LAYER DOES NOT EXIST
6" = R-3.6
CAST-IN-PLACE CONCRETE STRUCTURAL. ALL ELEMENTS OF THE BUILDING RELY ON THIS LAYER FOR ITS STRUCTURE.
4" = R-20 A106
ASSIGNMENT 1 (D)
Using Assignment One (C) as a launching point, utilize the wall section as a base drawing to call out specific details described below. Draw a plan detail and three section details at a scale of 1-1/2” = 1’-0”. Select location of details with instructor, making sure to show the most useful information about the systems and components, while minimizing redundant information. Some speculation may be necessary, so back up your descriptions by providing technically appropriate explanations.
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VAPOR BARRIER
LIGHT STEEL FRAME
STAINLESS STEEL ANGLE
SELF-LEVELING CONCRETE FINISH
CONCRETE STRUCTURAL FLOOR SYSTEM
STRUCTURAL FLOOR BEAM
SUSPENDED CEILING SYSTEM
PROFILED STEEL SHEET
VAPOR BARRIER LIGHT STEEL FRAME
THIS LAYER PROTECTS THE WALL SYSTEM AND INTERIOR SPACE FROM WATER DAMAGE
THIS IS A VERTICAL MEMBER THAT STRUCTURALLY SUPPORTS THE EXTERIOR FACADE
STAINLESS STEEL ANGLE
SELF-LEVELING CONCRETE FINISH CONCRETE STRUCTURAL FLOOR SYSTEM
A SIMPLE STEEL MEMBER THAT TRANSFERS THE LOADS PLACED ON THE STEEL BEAM INTO THE WALL
FLOOR SYSTEM THAT SELF-LEVELS. IT HAS MULTIPLE SQUARE SEGMENTS THAT ALLOWS IT TO EXPAND AND CONTRACT WITHOUT CRACKING
CONCRETE ON TOP OF A CORREGATED METAL LAYER TO SPAN TO DISTANCES BETWEEN BEAMS
STRUCTURAL FLOOR BEAM
SUSPENDED CEILING SYSTEM
MAIN STRUCTURAL MEMBER FOR THE FLOOR SYSTEM SPANNING THE LARGEST OPENINGS
SIMILAR TO THE FACADE SYSTEM, A SMALLER STRUCTURAL SYSTEM SUPPORTS A METAL SHEET CEILING
E-CLIP
PROFILED STEEL SHEET
ALUMINUM PROFILED SHEET
E-CLIP
SIMPLE HORIZONTAL STEEL SHEET THAT TRANSFERS THE FACADE SYSTEM LOADS INTO THE LIGHT STEEL FRAME
A SPECIAL PART OF THE FACADE SYSTEM THAT CARRIES THE ALUMINUM PROFILED SHEET LOADS INTO THE PROFILED STEEL SHEET MEMBERS
Class: Building: Sports Hall La Minais
ALUMINUM PROFILED SHEET
THIS IS THE FINISH FACE FACADE OF THE BUILDING. SOME PIECES HAVE HOLES AND OTHERS ARE SOLID. THIS PROVIDES UNIQUE SHADING PROPERTIES.
FLOOR TO WALL CONNECTION DETAIL
Professor: A101 SCALE: 1" = 1' - 0"
COPING MEMBRANE MINERAL WOOL
VAPOR BARRIER MINERAL WOOL
LIGHT STEEL FRAME
A FINISH LAYER THAT ALSO ACTS AS A FIRST VAPOR BARRIER FOR THE WALL SYSTEM
THIS LAYER ACTS AS A VAPOR BARRIER FOR THE ROOF SYSTEM AND ALSO PROTECTS THE MINERAL WOOL BELOW FROM PUNCTURES INSULATION LAYER IN THE ROOF SYSTEM
THIS LAYER IS A VAPOR BARRIER FOR THE ROOF SYSTEM AND PROTECTS THE INTERIOR SPACES FROM WATER DAMAGE INSULATION LAYER IN THE ROOF SYSTEM
ACOUSTIC METAL PANEL
LIGHT STEEL FRAME PURLIN STEEL BEAM BEARING CONNECTION
STAINLESS STEEL ANGLE
THIS LAYER IS MORE OF A FINISH LAYER THAT ALSO ACOUSTICALLY INSULATES THE SPACE BELOW
THIS IS A VERTICAL MEMBER THAT STRUCTURALLY SUPPORTS THE EXTERIOR FACADE
THIS LAYER REPEATS ALONG THE STEEL BEEM, DISTRIBUTING THE LOADS HORIZONTALLY TO PARALLEL BEAMS
MAIN STRUCTURAL MEMBERS OF THE ROOF SYSTEM SPANNING THE LARGE RECREATIONAL SPACES
A SIMPLE STEEL MEMBER THAT TRANSFERS THE LOADS PLACED ON THE STEEL BEAM INTO THE WALL
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PROFILED STEEL SHEET
ALUMINUM PROFILED SHEET E-CLIP
STAINLESS STEEL ANGLE
ALUMINUM PROFILED SHEET
A SIMPLE STEEL MEMBER THAT TRANSFERS THE LOADS OF THE FACADE SYSTEM INTO THE WALL
THIS IS THE FINISH FACE FACADE OF THE BUILDING. SOME PIECES HAVE HOLES AND OTHERS ARE SOLID. THIS PROVIDES UNIQUE SHADING PROPERTIES.
PROFILED STEEL SHEET
E-CLIP
SIMPLE HORIZONTAL STEEL SHEET THAT TRANSFERS THE FACADE SYSTEM LOADS INTO THE LIGHT STEEL FRAME
A SPECIAL PART OF THE FACADE SYSTEM THAT CARRIES THE ALUMINUM PROFILED SHEET LOADS INTO THE PROFILED STEEL SHEET MEMBERS
VAPOR BARRIER THIS LAYER PREVENTS THE EXTERIOR MOISTURE FROM ENTERING THE BUILDING AND CAUSING INTERIOR WATER DAMAGE
MINERAL WOOL INSULATION IN THE WALL SYSTEM
STAINLESS STEEL ANGLE A SIMPLE STEEL MEMBER THAT TRANSFERS THE LOADS OF THE FACADE SYSTEM INTO THE WALL
BASE FLASHING AS MOISTURE COLLECTS ON THE VAPOR BARRIER, IT COLLECTS AT THE BASE FLASHING TO EXIT THE WALL SYSTEM
RIGID BOARD
A WATERPROOF INSULATION LAYER THAT EXTENDS INTO THE GROUND TO MAINTAIN INSULATIVE VALUE INTO THE GROUND
FLOOR FINISH
THE FLOOR FINISH IS DIFFERENT IN DIFFERENT PARTS OF THE BUILDING, BUT IS TYPICALLY A RUBBER TILE SYSTEM
CAST-IN-PLACE CONCRETE A SIMPLY SLAB OF CONCRETE THAT COVERS THE FLOOR AREA THROUGHOUT THE BUILDING
SUB-FLOOR RIGID BOARD INSULATION
THIS INSULATION IS REQUIRED BY CODE, AND HELPS PREVENT HEAT LOSS THROUGHOUT THE BUILDING
CONCRETE FOOTING THIS TRANSFERS THE LOADS IN THE WALL SYSTEM INTO THE GROUND
VAPOR BARRIER THIS LAYER PREVENTS THE EXTERIOR MOISTURE FROM ENTERING THE BUILDING AND CAUSING INTERIOR WATER DAMAGE
LIGHT STEEL FRAME THIS IS A VERTICAL MEMBER THAT STRUCTURALLY SUPPORTS THE EXTERIOR FACADE
STAINLESS STEEL ANGLE A SIMPLE STEEL MEMBER THAT TRANSFERS THE LOADS OF THE FACADE SYSTEM INTO THE WALL
LIGHT STEEL FRAME
STAINLESS STEEL ANGLE
VAPOR BARRIER WINDOW JAMB
SEALANT DOUBLE PANE GLAZING
PROFILED STEEL SHEET
SEALANT
A WATERPROOF ADHESIVE THAT ACTS AS A MOISTURE BARRIER AND KEEPS THE WINDOW SYSTEM IN PLACE
WINDOW JAMB THE GLAZING SYSTEM IS HOUSED IN THIS SYSTEM AND TRANSFERS ITS SUPPORTS TO THE WALL
DOUBLE PANE GLAZING THESE WINDOW PANES ALLOW LIGHT TO ENTER THE BUILDING AND ALSO HAVE SOME INSULATIVE PROPERTIES
PROFILED STEEL SHEET
E-CLIP MINERAL WOOL
SIMPLE HORIZONTAL STEEL SHEET THAT TRANSFERS THE FACADE SYSTEM LOADS INTO THE LIGHT STEEL FRAME
CONCRETE STRUCTURAL WALL
E-CLIP
A SPECIAL PART OF THE FACADE SYSTEM THAT CARRIES THE ALUMINUM PROFILED SHEET LOADS INTO THE PROFILED STEEL SHEET MEMBERS
MINERAL WOOL
INSULATION IN THE WALL SYSTEM
Class: Building: Sports Hall La Minais
CONCRETE STRUCTURAL WALL
8" MAIN STRUCTURAL MEMBER
Professor: A104 SCALE: 1" = 1' - 0" WINDOW JAMB PLAN DETAIL
ASSIGNMENT 2 (A)
Using Assignment One as a launching point, choose one case study to transform into a different assembly system. For example, if your case study was a load-bearing brick wall system, consider changing it to a curtain wall system with brick panels. Alternatively, a load-bearing brick wall system can be transformed to a concrete post and beam system with brick in-fill.
Austin Webster Detailing and Construction Documents Mary Polites
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METAL CAP W/ CONTINUOUS CLEAT
ROOFING SYSTEM: MEMBRANE MINERAL WOOL VAPOR BARRIER MINERAL WOOL
STRUCTURAL STEEL BEHIND FACADE SYSTEM
SOLID ALUMINUM PROFILED SHEET
STAINLESS STEEL ANGLE
PROFILED STEEL SHEET
LIGHT STEEL FRAME ALUMINUM PROFILED SHEET E-CLIP
1/2" PLYWOOD SHEATHING
STRUCTURAL STEEL BEAM
VERTICAL STEEL UNIVERSAL COLUMNS
DOUBLE-PANE EXTERIOR WINDOW
CONTINUOUS RUNNER CHANNEL
LIGHT GAUGE STEEL
STAINLESS STEEL ANGLE
3" RIGID BOARD INSULATION
8" FOUNDATION WALL
FLOOR FINISH CAST-IN-PLACE CONCRETE
SUB-FLOOR RIGID BOARD INSULATION
CONCRETE FOOTING
SCALE: 3/4" = 1' - 0" WALL SECTION DETAIL
PERFORATED ALUMINUM PROFILED SHEET
ELEVATION DETAIL
SCALE: 3/4" = 1' - 0"
DOUBLE-PANE EXTERIOR WINDOW
LIGHT GAUGE STEEL FRAME
1/2" PLYWOOD SHEATHING
STAINLESS STEEL ANGLE
VERTICAL STEEL UNIVERSAL COLUMN 5/8" GYPSUM WALL BOARD
LIGHT GAUGE STEEL FRAME
E-CLIP
ALUMINUM PROFILED SHEET
PROFILED STEEL SHEET
LIGHT STEEL FRAME
PLAN DETAIL
SCALE: 3/4" = 1' - 0"
Austin Webster Detailing and Construction Documents Mary Polites
Professor:
Assignment:
Professor: SPRING 2022 Semester:
FINAL BOOKLET
Class: Building: Sports Hall La Minais
WALL
DIVISION 03 CONCRETE STRUCTURAL CONCRETE FOUNDATION SYSTEM FLOOR
Class: Building: Sports Hall La Minais
ASSIGNMENT 2 (B)
Using wall Section from Assignment Two (A), call out 4 connection details to further explore in greater detail at a scale of 1-1/2” = 1’-0”. Select location of details with instructor, making sure to show the most useful information about the systems and components, while minimizing redundant information. Make sure to back up you details with technically accurate drawings, annotations and descriptive.
Austin Webster Detailing and Construction Documents Mary Polites
Professor:
Assignment:
FINAL BOOKLET
Semester:
Class: SPRING 2022
GLAZING. THE TWO PANES HELP MAINTAIN SOME INSULATIVE VALUE SO AS TO NOT LOSE ALL HEAT THROUGH GLAZING SYSTEM
LIGHT GUAGE METAL SUBSTRUCTURE THAT TIES INTO LIGHT GUAGE STEEL WALL STRUCTURE; PROVIDES WINDOW FRAME (AND SIMILAR OPENINGS) SUPPORT
METAL STRUCTURE TO SUPPORT THE WALL SYSTEM; TIES INTO ROOF SUPPORT AND INTO CONCRETE FOUNDATION
VAPOR BARRIER
A THIN MEMBRANE LAYER THAT CONTINUES FROM ROOF SYSTEM ALL THROUGH THE WALL SYSTEM AND DOWN TO THE STRUCTURAL FOOTING
CONNECTION BETWEEN EXTERIOR FACADE SYSTEM AND LIGHT GAUGE STEEL WALL SYSTEM; STRUCTURAL TIE
THERMAL INSULATION. REDUCES HEAT LOSS THROUGH WALL SYSTEM
STRUCTURAL FOUNDATION. SUPPORTS COMPRESSIVE LOADS FROM WALL SYSTEM AND TRANSFERED ROOF LOADS.
INTERIOR FINISH. DIFFERENT TYPES EXIST THROUGHOUT BUILDING; GENERALLY IT IS A RUBBER MAT SYSTEM
STRUCTURAL SUPPORT FOR FLOOR SYSTEM.
THERMAL INSULATION. REDUCES HEAT LOSS THROUGH FLOOR SYSTEM
STRUCTURAL FOUNDATION. LARGE WALL AND BUILDING LOADS ARE TRANSFERED THROUGH THE FOUNDATION WALL INTO THE CONCRETE FOOTING TO THEN TRANSFER INTO THE GROUND
DETAIL
1-1/2" = 1' - 0"
Class: Building: Sports Hall La Minais
GLAZING. THE TWO PANES HELP MAINTAIN SOME INSULATIVE VALUE SO AS TO NOT LOSE ALL HEAT THROUGH GLAZING SYSTEM
LIGHT GUAGE METAL SUBSTRUCTURE THAT TIES INTO LIGHT GUAGE STEEL WALL STRUCTURE; PROVIDES WINDOW FRAME (AND SIMILAR OPENINGS) SUPPORT
PART OF THE WALL SYSTEM THAT ALLOWS FOR PLACEMENT OF EXTERIOR FINISH MATERIALS AND SYSTEMS.
STRUCTURAL ELEMENT THAT TRANSFERS FACADE LOADS INTO THE WALL SYSTEM MAIN INTERIOR STRUCTURAL ELEMENTS OF THE WALL SYSTEM. THESE TIE INTO THE ROOF BEAMS AND TIE INTO THE CONCRETE FOUNDATION BELOW.
VERTICAL STEEL UNIVERSAL COLUMN 5/8" GYPSUM WALL BOARD
LIGHT GAUGE STEEL FRAME
INTEROR WALL STRUCTURAL SYSTEM. FRAMED WITH LIGHT GAGUE STEEL FRAMING INTERIOR FINISH. PROVIDES AN INTERIOR SURFACE FOR PAINTS, WALLPAPER, TILE, ETC.
A UNIQUE ELEMENT THAT SUPPORTS THE ALUMINUM PROFILED SHEETS AND TIES INTO THE PROFILED STEEL SHEETS.
FACADE. EXTERIOR FINISH THAT ALSO HAS SOME SUN PROTECTION QUALITIES
THIS PROVIDES A CONTINUOUS FACE FOR THE EXTERIOR FINISH SYSTEM TO TIE INTO ALSO SERVES AS A FINISH BEHIND THE ALUMINUM PROFILED SHEET
STRUCTURAL SYSTEM THAT SUPPORTS MAIN FACADE ELEMENTS
ASSIGNMENT 2 (C)
Using Assignment Two (A) and (B) as a launching point, develop 2 axonometric wall sections, one showing the interior plane and the other showing the exterior. These should illustrate the various materials, components, and connections, as well as their relationships from interior to exterior. Select location and view angle of each detail with instructor, making sure to show the most useful information about the systems and components, while minimizing redundant information. Make sure to back up your details with technically accurate drawings, annotations, and descriptive explanations.
Austin Webster Detailing and Construction Documents Mary Polites
Professor:
Assignment:
FINAL BOOKLET
Semester:
Class: SPRING 2022
Austin Webster Detailing and Construction Documents Mary Polites FINAL BOOKLET
Austin Webster Detailing and Construction Documents Mary Polites FINAL BOOKLET
Assignment:
BIBLIOGRAPHY
Caballero, Pilar. “Sports Hall La Minais / Bohuon Bertic Architectes.” ArchDaily, ArchDaily, 22 Oct. 2021, https://www.archdaily.com/970629/sports-hall-la-minais-bohuonbertic-architectes?ad_source=search.
Fracalossi, I. (2015, August 28). Tozzer anthropology Building / Kennedy & Violich Architecture. ArchDaily. Retrieved February 2, 2022, from https://www.archdaily.com/772590/tozzeranthropology-building-kennedy-and-violich-architecture? ad_source=search&ad_medium=projects_tab
Fracalossi, I. (2014, August 6). Novartis campus / Weiss/Manfredi. ArchDaily. Retrieved February 2, 2022, from https://www.archdaily.com/533475/novartis-campus-weiss-manfredi
Austin Webster Detailing and Construction Documents Mary Polites FINAL BOOKLET
Professor:
Assignment:
Semester:
Class: SPRING 2022