FSU/SESEC the OGZEBesc.fsu.edu/documents/OGZEBpacket.pdf · platinum-certifi ed “new...
Transcript of FSU/SESEC the OGZEBesc.fsu.edu/documents/OGZEBpacket.pdf · platinum-certifi ed “new...
FSU/SESECpresents:
the OGZEB
Proposal 1Special Features 3Design plans 4Energy system 12Who is the USGBC? 13What is LEED certifi cation? 13LEED brochure 14Supporting the project 18
Purpose of the Project The OGZEB involves the design, construction and operation of a completely solar-powered building that achieves LEED-NC platinum certifi cation. A 1000 square foot building, the OGZEB will be partitioned so that 750 square feet will be a two-bedroom, graduate style fl at with the remaining 250 square feet serving as offi ce space. This arrangement will allow for the building to serve as an energy effi cient model for campus designers in student living and offi ce space. More specifi cally, though, the building will serve as a prototype for developing and implementing cutting edge, alternative energy technologies in both residential and commercial settings.
Project Description
Since the sun is not a constant source of energy throughout the entire day, excess energy will need to be generated to provide energy storage that allows power to be continuously supplied to the house during non-daylight hours. The most common solution to this problem is the use of high effi ciency batteries for energy storage. This approach has been, and continues to be, the de facto solution used by the teams in the Solar
Decathlon. However, high effi ciency batteries are extremely expensive and they have a limited lifetime. Alternatively, the OGZEB will use excess energy from photovoltaic (PV) panels, also known as solar panels, to produce hydrogen through the use of a highly effi cient water electrolysis device that is currently being developed at SESEC. This hydrogen will be stored until it is required, at which time it will be fed to an innovative fuel cell, which is also being developed at SESEC. This project will not be the fi rst to use hydrogen as an energy storage medium, but it will be the fi rst to employ innovative hydrogen technologies that are not currently commercially available. The hydrogen will also be used to address the biggest consumers of energy in a building: space heating, cooling and the generation of hot water. Through combustion in a furnace, the hydrogen will provide suffi cient heat for space heating and will also generate suffi cient heat to use advanced ammonia absorption technology for air-conditioning. The hot water will be generated through the use of an on-demand hot water heater that will be modifi ed to use hydrogen as its working gas. The use of hydrogen to meet these needs is unique to this project. Using an ammonia absorption cycle is also an original concept, especially considering that one does not exist for a building this small.
High effi ciency electronics and lighting, along with good insulation, can greatly reduce the energy needed to make the atmosphere in the building comfortable and enjoyable. The OGZEB will include low energy, spectrally selective windows, LED lighting, low air infi ltration and extensive use of passive solar heating.
Environmental consciousness is also considered during the design and construction of the OGZEB. Every attempt
1
SSUSTAINABLE EENERGY SSCIENCE & EENGINEERING CENTER FLORIDA STATE UNIVERSITY Mail Stop 4471 Tallahassee, Florida 32306-4471 Voice: 850-644-5885; Fax: 850-644-5262
THE OFF-GRID, ZERO EMISSION BUILDING AT FSU
will be made to build the home with recyclable materials that are not detrimental to the environment during their creation and use. In fact, the design and construction of the OGZEB will be guided by the LEED (Leadership in Energy and Environmental Design) Green Building Rating System, which has been developed by the United States Green Building Council (USGBC/www.usgbc.org). The LEED system is based on well-founded scientifi c standards and emphasizes state-of-the-art strategies for sustainable site development, water savings, energy effi ciency, materials selection and indoor environmental quality. There are four levels that companies can achieve from the LEED rating system: Certifi ed, Silver, Gold and Platinum. Platinum LEED-NC will be pursued for the OGZEB so that it can be the fi rst such building to exist in the southeastern U.S. In fact, there are only nine platinum-certifi ed “new construction” buildings in the entire world, seven in the U.S. and two in India.
The students and staff of SESEC, in close collaboration with local architects and engineers, will design the OGZEB so that it meets all of the above-mentioned goals, as well as any federal, state, local and university building codes. The students and staff of SESEC will carry out the basic construction of the home, such as the framing and the plumbing. Contracted professionals will perform the more advanced construction, such as the building wiring. Construction on the OGZEB is anticipated to begin during the summer of 2006 with project completion expected during the spring of 2007.
Conclusion The successful completion of the OGZEB will accomplish a number of goals. First, it will provide SESEC with a test bed for the further development of alternative energy based technologies that can be implemented in residential and commercial applications. Second, it will provide FSU, Tallahassee, and the State of Florida with a LEED-NC platinum-certifi ed building, the fi rst of its kind in the southeastern U.S., that will demonstrate both graduate student
housing and offi ce space without burdening the local utility system. Due to its novelty, it is expected that the OGZEB will attract a number of people for tours and garner positive national attention. Third, it will provide the students and staff of SESEC with the experience required to be competitive in the Solar Decathlon 2009, the proposals for which must be submitted during Fall 2007. Lastly, and possibly most important, the OGZEB will expose the students at FSU and the citizens of Tallahassee to the benefi ts of sustainable, “green” building and engineering, as well as alternative energy sources. This type of exposure is necessary to change public opinion and overcome some of the negative stereotypes that have been promulgated regarding these types of technologies.
Description of the Solar Decathlon Competition
The long-range goal of this competition is to develop and demonstrate solar powered homes in which the whole house levelized energy cost is $0.10/kWh by 2015. University teams must submit an extensive proposal to participate in the Decathlon, and only twenty teams are selected to compete. Each of the selected teams designs and builds a 500 – 800 square foot modular home that must be powered entirely through solar energy. For the competition, the home must be moved from its construction site to Washington, D.C., where it is scored based on ten specifi c tasks. On average, the top ten houses from the Solar Decathlon 2005 competition cost $550 per square foot. As mentioned above, the OGZEB will be at the upper size limit (1000 square feet) with a lower projected cost ($375 a square foot). This signifi cant savings is the result of using cutting edge technology not found in any of the previous Solar Decathlon homes.
2
Special Features of the OGZEB:
• Hydrogen Appliances – (Burn hydrogen rather than natural gas, cleaner)o Water Heatero Stove/Oveno HVAC
• Rain Water Collectiono Store water for irrigation purposeso Manage storm water run off
• High Effi ciency Water Useo Low fl ow fi xtureso Recycle grey water
• High Effi ciency Lightingo LEDs
§ Reduce power consumed§ Reduce heat emitted by lights
o Passive Solar Skylights§ Harness sun light effi ciently§ Our Design reduces heat transfer
o Reduce Light Pollution§ Prevent light from escaping building and effecting the environment
• Completely Solar Poweredo Solar Cells provide electricityo Collectors Concentrating Solar Provide
§ Hot water§ Solar Heat Powered HVAC
• Hydrogen Production and Useo New electrolyzer developed by SESECo New fuel cell developed by SESEC
• Construction Waste Management and Reuseo Design the building based on available materials to reduce building wasteo Reuse when at all possible
• Regional Materialso Utilize materials within a 500 mi radius of Tallahassee
• Rapidly Renewable Materialso Use materials that take under 10 yrs to growo Easy to replace and less detrimental to the environment
• Data Collectiono Collected data
§ Inside conditions§ Outdoor air used in house§ Ventilation and emissions§ Lighting effectiveness
• Platinum Certifi cation from the United States Green Building Councilo Highest Level of Certifi cationo One of only 15 buildings with this level of certifi cation
3
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100
FAX
(850
)681
-914
9ww
w.ar
chite
cts-g
ca.co
m
SIGNATURE
DESC
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ION
arch
itectu
reint
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npla
nning
DR
AWN
BY:
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IEW
ED
BY
THES
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Cons
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E:
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E:
FEC D
23
45
67
1
B
23
45
67
1
Flor
ida
Stat
eU
nive
rsity
SESE
C
FSU
Zero
Emiss
ion
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se
arch
itectu
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npla
nning
CO
NCEP
T SC
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S
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DES
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DEV
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NT
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NC
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CH
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REV
ISIO
N2
REV
ISIO
N3
100%
CO
NSTR
.DO
CUM
ENTS
50%
CO
NSTR
.DO
CUM
ENTS
CO
NTR
ACT
DO
CU
ME
NTS
GRC
Pro
ject
Num
ber0
6160
12-1
9-06
CD
RC
DR
Roo
fPla
n1/4
" =1'-
0"
1A
1.2
2 A5.2
2 A5.1
1 A5.1
3 A5.1
1 A5.2
2 A4.2
32'-0"
22'-2
1/2"
5'-7"
22'-2
1/2"
50'-0
"
2'-1 1/2"2'-0"28'-0"2'-0"2'-0"
4'-0"24'-0"4'-0"ST
ANDI
NG S
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MET
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VER
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INDO
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OWN
EXTE
ND R
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TW
INDO
WS
ASSH
OWN
Cle
rest
ory
Plan
1/4" =
1'-0"
2A
1.2
2 A5.2
2 A5.1
1
3 A5.1
1 A5.2
2
5'-0 1
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10"
7"7"
2'-10
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9 1/2"
2'-0"6'-0"20'-1 1/4"6'-0"2'-0"
2 1/2"4'-2"6"4'-2"9"4'-2"6"4'-2"4"
1 1/2"4'-4"5 3/4"4'-4"9 1/4"4'-0"5 3/4"4'-2"3 1/2"
13'-1
13/4"
5'-0 1
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4 1/2"
1'-2 3
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4"5'-
0 1/4"
14'-0
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5'-9 1/4"
2'-0"
20'-2
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5'-7"
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2'-0"
SOFF
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EST
PENS
ACOL
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TALL
AHAS
SEE,
FLOR
IDA
3230
4(8
50)2
22-8
100
FAX
(850
)681
-914
9ww
w.ar
chite
cts-g
ca.co
m
SIGNATURE
DESC
RIPT
ION
arch
itectu
reint
erior
desig
npla
nning
DR
AWN
BY:
REV
IEW
ED
BY
THES
E D
RAW
ING
SAN
D R
END
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ARE
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TRU
ME
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E..
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E:
PHAS
E:
FEC D
23
45
67
1
B
23
45
67
1
Flor
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Stat
eU
nive
rsity
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C
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ion
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se
arch
itectu
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erior
desig
npla
nning
CO
NCEP
T SC
HEM
ATIC
S
REV
ISIO
N1
DES
IGN
DEV
ELO
PME
NT
ADVA
NC
ED S
CH
EMAT
ICS
REV
ISIO
N2
REV
ISIO
N3
100%
CO
NSTR
.DO
CUM
ENTS
50%
CO
NSTR
.DO
CUM
ENTS
CO
NTR
ACT
DO
CU
ME
NTS
GRC
Pro
ject
Num
ber0
6160
12-1
9-06
CD
RC
DR
Wes
tEle
vatio
n(A
utor
ebui
ld M
odel
)1/4
" =1'-
0"
1A
3.2
46'-2
1/4"
13'-1
11/4"
18'-3
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FLAS
HING
EXTE
NSIO
N AT
WIN
DOW
SHOW
N
AWNI
NGW
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4(8
50)2
22-81
00FA
X(85
0)68
1-91
49ww
w.ar
chite
cts-g
ca.co
m
SIGNATURE
DESC
RIPT
ION
arch
itectu
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desig
npla
nning
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AWN
BY:
REV
IEW
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THE
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FEC D
23
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B
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Flor
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C
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UM
ENTS
50%
CO
NS
TR.D
OC
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CO
NTR
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DO
CU
MEN
TS
GRC
Pro
ject
Num
ber 0
6160
12-1
9-06
CDR
CDR
PAN
EL
EL
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TIO
NS
(1/4
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0"
2A
4.1
8'-0"2'-0"
6'-8"3'-4"
4'-6 1
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9"3'-
0"9"
20'-0
"
8'-0 1/4"
3'-4 1
/2"
8'-0 1/4"2'-7 1/2"
6'-10"
3'-10
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0"7'-
2"
9"3'-
0"9"
1'-8"2'-10"1'-2"2'-0 1/2"1'-7 1/2"
2'-1"
6 1/
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6 1/4
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6'-10
1/4
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2 1/2
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10 3
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2'-10
1/4"
1'-3 3
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10 1
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3'-4 1
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19'-7
3/4
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4 1/2"
14'-0
"18
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14'-0
"
2'-7 3/4"4'-0 1/4"
117s
q ft
20sq
ft
123
sq ft
13sq
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8sq
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192
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8sq
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20sq
ft
A1.1
A1.2
A1.3
A1.4
A1.1
A1.2
A1.3
A1.4
A3.1
A4.2
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A2.1
A2.4
A2.2
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PAN
EL
EL
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(1/
4" =
1'-0"
1A
4.1
5'-2 1/2"
24'-0"
34'-5"
5'-2 1
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29'-1
"29
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5'-2 1
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5'-2 1
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23'-1
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3230
4(8
50)2
22-8
100
FAX
(850
)681
-914
9ww
w.ar
chite
cts-g
ca.co
m
SIGNATURE
DESC
RIPT
ION
arch
itectu
reint
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desig
npla
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AWN
BY:
REV
IEW
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BY
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PHAS
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FEC D
23
45
67
1
B
23
45
67
1
Flor
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Stat
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nive
rsity
SESE
C
FSU
Zero
Emiss
ion
Hou
se
arch
itectu
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erior
desig
npla
nning
CO
NCEP
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S
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DES
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DEV
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NC
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CH
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REV
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N2
REV
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100%
CO
NSTR
.DO
CUM
ENTS
50%
CO
NSTR
.DO
CUM
ENTS
CO
NTR
ACT
DO
CU
ME
NTS
GRC
Pro
ject
Num
ber0
6160
12-1
9-06
CD
RC
DR
Cro
ss S
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n(A
utor
ebui
ld M
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1A
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9'-6 1/4"11 3/4"5'-0"1'-0"
2'-9"5'-3 1/4"
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SEE,
FLOR
IDA
3230
4(8
50)2
22-8
100
FAX
(850
)681
-914
9ww
w.ar
chite
cts-g
ca.co
m
SIGNATURE
DESC
RIPT
ION
arch
itectu
reint
erior
desig
npla
nning
DR
AWN
BY:
REV
IEW
ED
BY
THES
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Who is the USGBC?
Core Purpose
The U.S. Green Building Council’s core purpose is to transform the way buildings and communities are designed, built and operated, enabling an environmentally and socially responsible, healthy, and prosperous environment that improves the quality of life.
Who is the U.S. Green Building Council?
The U.S. Green Building Council (USGBC) is the nation’s foremost coalition of leaders from every sector of the building industry working to promote buildings that are environmentally responsible, profi table and healthy places to live and work. Our more than 6,000 member organizations work together to develop a variety of programs and services, and forge strategic alliances with key industry and research organizations and federal, state and local government agencies. Our collective power is leading the transformation of the building industry and market to sustainability. Council programs are Committee-Based, Member-Driven, and Consensus-Focused. Click on the links below to learn more about:
• The LEED® Green Building Rating System™• The annual Greenbuild International Conference and Expo • Educational offerings, including LEED workshops and the LEED Professional Accreditation program • Tools for federal, state and local government agencies • Green building research and publications • Local and regional advocacy and education
What is the LEED Certification?
The LEED (Leadership in Energy and Environmental Design) Green Building Rating System® is a voluntary, consensus-based national standard for developing high-performance, sustainable buildings. USGBC’s members, representing every sector of the building industry, developed and continue to refi ne LEED. LEED standards include:• LEED-NC: New commercial construction and major renovation projects • LEED-EB: Existing building operations • LEED-CI: Commercial interiors projects • LEED-CS: Core and shell projects • LEED-H: Homes • LEED-ND: Neighborhood development • LEED Application Guides: Retail (currently in pilot), Multiple Buildings/Campuses, Schools, Healthcare, Laboratories, LodgingProduct Manufacturers and Service Providers: Learn how you can get involved with USGBC and LEED.
LEED was created to:
• defi ne "green building" by establishing a common standard of measurement • promote integrated, whole-building design practices • recognize environmental leadership in the building industry • stimulate green competition • raise consumer awareness of green building benefi ts • transform the building market LEED provides a complete framework for assessing building performance and meeting sustainability goals. Based on well-founded scientifi c standards, LEED emphasizes state of the art strategies for sustainable site development, water savings, energy effi ciency, materials selection and indoor environmental quality. LEED recognizes achievements and promotes expertise in green building through a comprehensive system offering project certifi cation, professional accreditation, training and practical resources. Click below to view the LEED Foundations documents: • LEED Committee Charters - describes the purpose and scope of each LEED Committee • LEED Foundations Policy Manual - describes USGBC policy for consensus based development of the LEED family of products • LEED Product Development Handbook - describes the operating procedures for management and administration of LEED Products
13
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Supporting the Sustainable Design Project
How to make a donation:
Make Checks Payable to:Florida State University FoundationFor: Sustainable Design Project
Mail To: John Gehrm FSU Foundation 2010 Levy Avenue Building B, Suite 300 Tallahassee, FL 32306-2739
Phone: 850-410-6600Email: [email protected]
Benefi ts of Donation:
• Tax Write-off / Deduction
• Exposure in Press Release
• Credit at the Site of the House
• Membership in the “Friends of Sustainable Design”
• Exposure on the Website
• Invitation to Special Events
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