cornell university
cornell university Department Of Architecture
Master of Architecture Core Design Studio Work
III
2013
department of architecture
spring 2013 _fall 2011
faculty name
cornell university Department Of Architecture
Master of Architecture Core Design Studio III andrew lucia (fall 2012 ) Saira Akhatar Lily Chung Alexandra Lima Dillon Pranger jenny sabin (fall 2012 ) Charles Cupples Andrea Gonzalez Iroha Ito jenny sabin (fall 2011 ) Mia Miyoung Kang Xiao Xiao Li
aap
student name
fall 2012 _fall 2011
saira akhatar
andrew lucia
left
01_Data set 2012
Core Design Studio III
andrew lucia
saira akhatar
right
2012
01_Data set
Core Design Studio III
saira akhatar
andrew lucia
2012
Core Design Studio III
andrew lucia
saira akhatar
left
01_Study model right
2012
01_Diagrams derived from study model
Core Design Studio III
lily chung
andrew lucia
left
01_Study model right
01_Floor plans 2012
Core Design Studio III
CAFE/PUBLIC GATHERING
andrew lucia
THIRD FLOOR
ROOF
COLUMN RAINWATER INTAKE
STUDY/WEATHER PROJECTION
SECOND FLOOR
INTERSTITIAL ARCHIVE INTERSTITIAL ARCHIVE
INTERSTITIAL ARCHIVE INTERSTITIAL ARCHIVE
CAFE/PUBLIC GATHERING
THIRD FLOOR
GROUND FLOOR
STUDY/WEATHER PROJECTION
2012
SECOND FLOOR
Core Design Studio III
lily chung
TICKET KIOSK
lily chung
andrew lucia
left
01_Study model right
01_Study model 2012
Core Design Studio III
andrew lucia
2012
lily chung
Core Design Studio III
alexandra lima
andrew lucia
left
01_Study model 2012
Core Design Studio III
andrew lucia
alexandra lima
right
2012
01_Study model
Core Design Studio III
andrew lucia
02
03
04
05
06
dillon pranger
01
left
01-06_Column analysis right
01_Study model derived from column analysis 2012
Core Design Studio III
andrew lucia
2012
dillon pranger
Core Design Studio III
dillon pranger
andrew lucia
left
01_Final model right
01_Final model 2012
Core Design Studio III
andrew lucia
2012
dillon pranger
Core Design Studio III
jenny sabin
student: Charles Cupples critic:
Jenny Sabin
Primary Entrance
ADA Accessibility
Services
Open to Below
ADA Accessibility
Floating Help Desk
Open to Below Reading Rooms
Views Through Reading Rooms down to lower level projector
Service Desk | Ipad Reception Bloom Space
Open Reading Terrace
Vertical Circulation
Vertical Circulation
Vertical Circulation (ADA Accessible)
Outdoor Cafe
Open to Below
charles cupples
Drainage & Greywater Collection for Algae Beds
Secondary Entrance
1/16” = 1’ Plans 4’
28’
1/16” = 1’ Plans 4’
01
02
28’
03
left
01_1st floor plan 02_2nd floor plan 03_3rd floor plan right
01_Conceptual drawing 2012
Core Design Studio III
jenny sabin
2012
charles cupples
02
03
Core Design Studio III
jenny sabin
01 100 °
80°
70° 60°
50°
30°
Constraint 1
Action Derivative
Climate Mapping & Thermodynamic Input
left
01_Rose window analysis 02_Geometric reference drawing 03_Aerial of site 04_Conceptual drawing right
01_Conceptual drawing 03
charles cupples
02
04
2012
Core Design Studio III
jenny sabin
2012
charles cupples
Core Design Studio III
charles cupples
jenny sabin
left
01_Surface interior right
01_Surface exterior 2012
Core Design Studio III
jenny sabin
2012
charles cupples
Core Design Studio III
andrea gonzalez
jenny sabin
2012
Core Design Studio III
jenny sabin
2012
andrea gonzalez
Core Design Studio III
andrea gonzalez
jenny sabin
left
01_Study model right
01_Final model
2012
Core Design Studio III
jenny sabin
2012
andrea gonzalez
Core Design Studio III
jenny sabin
left
01_Church analysis right
iroha ito
01_Form studies
2012
Core Design Studio III
jenny sabin
2012
iroha ito
Core Design Studio III
jenny sabin
02
03
iroha ito
01
left
01-03_Bus route analyses right
01_Bus route analyses superimposed
2012
Core Design Studio III
jenny sabin
2012
iroha ito
Core Design Studio III
iroha ito
jenny sabin
left
01_Church analysis right
01_Interior perspective 2012
Core Design Studio III
jenny sabin
2012
iroha ito
Core Design Studio III
jenny sabin
student: Mia Miyoung Kang critic:
Jenny Sabin
As one meanders the city to discover new moments, the path towards bath house is a journey in itself where ever changing landscape appear and disappear with daily tidal shift that allow visitors to meander through the landscape and into the bathhouse. New waterscape appear and disappear through porosity 1
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and density of structure that consist of cilia-like member (finger) that give ways to formation of walking platform and bathhouse. These members also are visual filter that allow viewers to see and to be seen within various spaces in the bathhouse that create privacy through change in density.
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mia miyoung kang
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2011
Core Design Studio III
jenny sabin
01
02
03
mia miyoung kang
left
01_Iteration Catalogue right
2011
01-03_Elevation Types 04_Site Plan 04
Core Design Studio III
mia miyoung kang
jenny sabin
left
01_Iteration Catalogue right
01_Exterior Perspective
2011
Core Design Studio III
jenny sabin
2011
mia miyoung kang
Core Design Studio III
mia miyoung kang
jenny sabin
01
02
03
left
01-03_Site Studies right
01_Interior Perspective
2011
Core Design Studio III
jenny sabin
2011
mia miyoung kang
Core Design Studio III
jenny sabin
01
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03
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student: Xiao Xiao Li critic:
Jenny Sabin
The amount of water vapor in an atmosphere is constrained by the restrictions of partial pressures and temperature. The balance between condensation and evaporation gives the quantity called vapor partial pressure.The maximum water vapor partial pressure in the air varies with temperature of the air and water vapor mixture.
xiao xiao li
Log10 ew = -7.90298 (373.16/T-1) +5. 02808 Log10 (373.16/T) -1.3816 10-7 (1011.344 (1-T/373.16) -1) +8.1328 10-3 (10-3.49149 (373.16/T-1) -1) +Log10(1013.246) Where T, temperature of the moist air, is given in units of kelvins P is in units of millibars (hectopascals) The formula is valid from about -50 to 102C
P1 / P = C1 / C
C1 = (P1 / P) C
Core Design Studio III
2011
The relationship of partial pressure and concentration of vapor: P = Atmospheric pressure -- 760mmHg P1 = Water vapor partical pressure -- p C = The Avogadro constant expresses the number of elementary entities per mole of substance and it has the value -- 6.02214179 x 10^23 C1 = The concentration of vapor = ? C1 = (P1 / 760mmHg) 6.022 x 10^23
jenny sabin
left
01-04_Water vapor density diagrams right
01_Building plan
2011
xiao xiao li
Core Design Studio III
jenny sabin
02
03
xiao xiao li
01
left
01-03_Interior perspectives right
01_Analysis of vapor concentration in relation to temperature 2011
Core Design Studio III
jenny sabin
2011
xiao xiao li
Core Design Studio III