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Charlie Dickson
ED
UC
ATIO
N
DIR
EC
TO
RY
4118 PINE CREST TR. HOUSTON, TX. 77059
PHONE 713-582-1176
EMAIL [email protected]
SKILLS
EDUCATION+HONORS
Proficient in AutoCAD, AutoCAD Architecture, Revit Architecture,Revit Structure, Rhino, Grasshopper, Google SketchUp, Adobe Photoshop, Adobe Illustrator, Adobe InDesign,Adobe Acrobat. Microsoft Word, Microsoft Excel, Microsoft PowerPoint.Architectural drafting, model making, construction experience,construction documents, photography, public presentation.
University of Texas San Antonio Bachelor of Science in Architecture
San Antonio, TexasJanuary 2010-December 2012
Graduated with a 3.5 GPAFall 2006 President’s ListSpring 2007 President’s ListSpring 2011 Honor RollSpring 2012 Honor RollFall 2012 President’s ListAIAS MemberUSGBC Student Chapter MemberHistoric Preservation AssociationGolden Key National Honor Society
Chosen for Artemis InstitutesDesign/Build Studio. Completed Two Concurrent projects For Local Client in Jackson, Wyoming.
River North Roasterie and CaféSan Antonio, Texas
Pages 1-7
The New Knowledge CenterAlamo Heights, Texas
Pages 8-11
Artemis InstituteJackson, Wyoming
Pages 12-16
Topics in Advanced Digital Design
Pages 17-19
Montana State UniversityArtemis InstituteJackson, Wyoming
Summer 2012
1
River North Roasterie and Café San Antonio, TX
The River North Roasterie and Café is a comprehensive studio project completed in my fourth year systems studio. The weeks preceding design development includ-ed research into the coffee and roasting culture along with schematic and site development exercises in the context of the San Antonio River North Master Plan. My primary focus in this systems studio was the struc-tural system and the fabrication of its elements for efficiency and ease of assembly. I integrated an intri-cate roofing system with a three piece tenon column and beam system. These systems provided a systematic design approach in creating an experiential space to promote the refocus on urban San Antonio
brasil(50 million bags)
costa rica
columbia
honduras
san antonio
major coffee bean exportingcountries in the americas
*not seen: ethiopia, indonesia and vietnam
*total exports in 60 kg bags http://gain.fas.usda.gov
(4.5 million bags)
(1.5 million bags)
(7.5 million bags)
(20 million bags total)
(4.5 million bags)
mexico
plant trees
growing
processing
transportaition
roasting
brewing
fertillizer
water
pesticides
diesellimestone
gas
materials
gas/diesel
materials
electricity
materials
coffee fruit
water wastewater
fertillizer emissions
waste
emissions
waste
emissionsheat
energy
transportation%35
roasting%22
brewing%42
growing and processign%1
electricity %98materials and manufacturing %2
%2 %52 %46
l
typical 25 lb coffee bean roaster
requires 2 220V triplex power sources
yields 22 kg every 10-15 minutes
*www.home-barista.com
planting harvest sortingprep
&drying
salud!brewingroastingshipment
t.q.
hopper
rotating drum
oven
exhaust
fan
air flow va ve
cooling tray
motor
motor
Environmental ImpactResources Map
2
9th streetav
enue
b
broa
dway
10th street
river
north
proposed park
60’
River North Neighborhood Plan
Conceptual Context Section60
outdoor seating
cafe
cuppingcashstair
m
w
roasting
freezer
packaging
warehouse
stair
open to below
open to below
cuppingstair
stair m wfamilyroom
offices
break room
upstairs seating
scheme b
outdoor seating
cafe
cash
cuppingstair
stair
roasting
m w
freezer
packaging
warehouse
stair
stair
m
w
break room
cupping
open to below
open to below
open to below
office
upstairs seating
scheme c
cafe
cash
cupping
roasting
freezer
packaging
warehouse
mw
outdoor seating
outdoor seating
service
open to below
open to below
break room
upstairs seatingm w
office
office
arehouse+loading
adjacency studybased on programatic realmsback of house
roasting
packaging warehouse
freezer
cafe
outdoorseating
restroom
cashier
public
breakoffice
restroom
warehouse
employee
family
proposed programspace
cafecupping roomwarehouseroasting roompackagingfreezerofficebreak roompublic restroomemployee restroom
total
net square footage
2000196570010801250256180240300 (men+women)200 (men+women)
11402
3
scheme a
1 2 3
Level 10' - 0"
Level 212' - 0"
Roof24' - 0"
DEF
UP
UP
-
1 2 3 4 5
A
B
C
D
E
F
141' - 6"
32' - 3"24' - 0"
96' - 0"
122' - 5"
24' - 0
"
120' - 0"
24' - 0
"
10' - 7
15/1
6"
dra
in
drain
drain
drain
drain
drain
drain
drain
drain
cw
cw
cw
cw
watermeter
gaselectric
warehouse
cupping
w m
qt
break
cafe prep
cafe
roasting
packaging
coldstore
river northpromenade
historicalbuilding
service
avenue b
bike racks
DN
DNw m
upstairsseating
terrace
family
office open to below
open to below
open to below
open to below
open to below
Ground Floor Second floor Second Floor Egress
Ground Floor Egress
Employee Area SectionWarehouse Section12
30
30
4
1 2 3 4 5
Level 10' - 0"
Level 212' - 0"
Roof24' - 0"
A B C D E F
South East Elevation North East Elevation
South West ElevationNorth East Elevation
Cross Section Longitudinal Section12
12
12
5
UP
1 2 3 4 5
A
B
C
D
E
F
1 2 3 4 5
A
B
C
D
E
F
24’
24’
24’
24’
12’ 12’
specification section
12
6
Specification Section
Framing Plan Roof Framing
Structural Isometric
Division I | Timber
Division II | metal
Division III | concrete
COLUMNS AND BEAMS CALL FOR 6 3/4” X 13 3/4” GLULAM SOUTHERN PINE
JOISTS AND RAFTERS CALL FOR 3 1/2” X 8 1/4” MEMBERS SPaCED 3’ O.C.
3 1/2” x 5” metal stud framing
structural sole plates with anchor bolt
custom wall cleats and steel angles for hanging exterior wood veneer
cast-in-place concrete walls
exterior walls call for 4’x4’ formscafe bar calls for 1‘x1’ forms
keep all form tie reveals as detail
8
The New Knowledge Center Alamo Heights, TX
8
The evolution of the library has resulted in an exponential increase in digital media to supplement hard copy literature. I used the circuit board as an analogy to translate its efficiencies into an architectural design. Components of the circuit board such as capacitors, printed circuits and resistors were explored and applied to dynamic archi-tectural issues such as programmatic space, circulation and nodes.
9
Scheme 1
Scheme 2
Scheme 3
Site Plan Ground Floor Second Floor30 10
Second Floor Egress
Ground Floor Egress
15
typical wall section
28
continuous frame on aluminum clip
27
continuous gasket
26
metal spline
25
24
embedded steel brace
7
25
bracket bolts
20
20
8
21
22
23
12
34
5
6
7
8
9
10
10
11
11
1213
1415
16
17
18
18
19 19
1
4” precast concrete panel
aluminum angle drip
5/8” plywood sheething with moisture membrane
corten panel with sealed aluminum frame
10” panelled aluminum roofing
metal roof decking
galvanized anchor bolt
aluminum thru flashing on vapor membrane
stained concrete flooring
3/8” gypsum wall board
W10x33 wide flange column
angled steel beam seat
steel coping
24g steel girder
steel joist seat
3” light weight concrete on 2” metal decking
steel open web joist
W10x33 wide flange column
5” light gauge steel framing
steel base plate
double glazed window unit with aluminum framing
2” air gap
2” perforated corten panel
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
11
Structural Plan 30
Structural Isometric
6”
6”
1Wall Assembly Detail
continuous frame on aluminum clipcontinuous gasket
metal spline
embedded steel brace
bracket bolts
1
4” precast concrete panel
aluminum angle drip
5/8” plywood sheething with moisture membrane
corten panel with sealed aluminum frame
10” panelled aluminum roofing
metal roof decking
galvanized anchor bolt
aluminum thru flashing on vapor membrane
stained concrete flooring
3/8” gypsum wall board
W10x33 wide flange column
angled steel beam seat
steel coping
24g steel girder
steel joist seat
3” light weight concrete on 2” metal decking
steel open web joist
W10x33 wide flange column
5” light gauge steel framing
steel base plate
double glazed window unit with aluminum framing
2” air gap
2” perforated corten panel
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
12
Artemis Institute Jackson, Wyoming
The Artemis Institute is a non-profit organization in accordance with Montana State University founded to create opportunities for architec-ture students to design and build projects for clients in the Jackson area.The Vessel project serves as a traditional play structure to be used by all patrons of the church. The design features elements of a boat, which represents the common theme of passage through a vessel throughout the bible. The Tree Fort project serves as a less orthodox play structure intended for the preschool. The concept of biomimicry was extensively researched and applied to the Tree Fort design.
13
Vessel
BOTTOM BRACKETS 7" ABOVE GRADE.
BRACKETS 7" FROM TOP OF EACH COLUMN
2" X 4" NAILER
3" X 3" STL. SQUARE TUBING
1'-0
"
1" X 4" WOOD CLADDINGCONT. 1/4" SPACING
2" X 4" DECKING
4'-1
1"
6'-0
"
1" X 4" WOOD CLADDINGCONT. 1/4" SPACING
10'-0"
5'-9 316" 0'-8" 3'-117
8"
3'-3
"
6'-8
"
SET IN GRAVEL BED
0'-334"
0'-4
"
3" X 3" STL. SQUARE TUBING
Double 2" X 8"
4'-1
1"
1'-6
"
5'-4
1 8"
6'-9
1 2"
4" X 6" (NOMINAL) RIPPED IN HALFFOR MAIN STRUCTURE
2" X 6" DECK SUPPORT
2" X 4" DECKING
CAST CONCRETE WALL(TILT UP)
1'-0" CONCRETE FOOTING
1" X 4" WOOD CLADDINGCONT. 1/4" SPACING
1" X 4" WOOD CLADDINGCONT. 1/4" SPACING
2'-0
" Dia
.
2'-6
"
0'-10"
9'-41316"
2" X 6" LEDGER BOARD
1' WOOD CHIP FALL ZONE
PRODUCED BY AN AUTODESK EDUCATIONAL PRODUCT
Development Model South Wall Detail3
North Wall Detail3
North Wall Detail3
Development Plan6
A Collaborative Project Through the Artemis Institute
Northern PerspectiveNorth Western Perspective
Birds Eye Perspective
15
Tree Fort A Collaborative Project Through the Artemis Institute
6Plan
6West Elevation
Fourth Platform
Left RightRightLeft
RightLeftRightLeft
Third Platform
Second PlatformFirst Platform
17
Topics in Advanced Digital Design Rib Script in Rhino
1. Loft two created curves to form a surface. 2. Offset surface to 1/8” material thickness to form a polysurface.
3. Offset modular grid to create intersecting planes form trimming.
4. Use polysurface as cutting object to trim grid. The relief forms the model.
5. Run rib script in Rhino to notch intersecting planes for laser cutting preparation.
6. Each curve is unrolled sent to laser printer. Ribs make for easy assembly.
18
10 State Grasshopper Manipulation
1: After creating a hexagonal grid with an offset, I created a boundary parameter in order to edit the offset and number of hexagons.
2: Increase of hexagons in one direction of grid.
3: Increase of hexagons in both directions of grid.
4: Offset and decrease of hexagons in grid.
5: Offset of the grid.
6. Offset and extrusion of the grid. 7. Offset and extrusion of the grid.
8. Axial rotation of the entire object. 9. Offset and axial rotation of the entire object.
10. Duplication and rotation of step 9.