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L a b o r a t o r i e s f o r t h e 2 1 s t C e n t u r y : b e s t P r a C t i C e G u i d e C hiLLed b eams in L aboratories :
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Document Date: 2014-01-13 17:10:45


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File Size: 3,43 MB

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Company

CBC / Peration Introduction Laboratories / Designing Chilled Beam Systems / /

Country

United States / /

Facility

Building Design / Environmental Sciences laboratory / Tahoe Center / /

IndustryTerm

beam systems / increased heating energy use / huge potential energy loss / air systems / Low energy designs / chilled beam systems / energy intensive chiller / electricity / conventional systems / economical and energy-efficient choice / Active chilled beam systems / dramatic energy savings / simulation tool / beams systems / ventilation solution / chilled water systems / energy model ing / chilled beam technology / hot water systems / energy loss / natural gas / airflow measurement devices / energy analyses / energy use / manufacturing / lab systems / information about technologies / fan energy / energy consump tion / mechanical equipment / design software / able software applications / Passive chilled beam systems / energy / /

Organization

U.S. Department of Energy / U.S. Department of Energy Energy Efficiency and Renewable Energy Federal Energy Management Program / U.S. Environmental Protection Agency / Tahoe Center for Environmental Sciences / 55°F Air Outside Air Reheat Coil 65-68°F Typical Load Lab Chiller 65-68°F 55°F Typical Load Lab High Load Lab / /

Person

Dave Barista / /

Position

author / General / /

ProgrammingLanguage

C / /

PublishedMedium

the Labs21 Best Practices guide / /

Technology

chilled beam technology / Flow control / condensation / simulation / /

SocialTag