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Variations of Stratification and Cooling Energy Performance According to Diffuser Condition in UFAD System

Authors
Yeon, Sang HunYu, ByeonghoLee, Jong ManDo, Sung LokShin, MinjaeLee, Kwang Ho
Issue Date
Aug-2020
Publisher
American Society of Civil Engineers
Keywords
Cooling energy; Diffuser; Discharge angle; Effective diffuser area; EnergyPlus; Stratification; Underfloor air distribution (UFAD)
Citation
Journal of Energy Engineering - ASCE, v.146, no.4, pp 1 - 13
Pages
13
Indexed
SCIE
SCOPUS
Journal Title
Journal of Energy Engineering - ASCE
Volume
146
Number
4
Start Page
1
End Page
13
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/113275
DOI
10.1061/(ASCE)EY.1943-7897.000066
ISSN
0733-9402
1943-7897
Abstract
The underfloor air distribution (UFAD) system, which is a building energy-saving technology, is an air-conditioning system that enables maintenance of the indoor temperature with a relatively low supply air flow rate. UFAD has advantages compared to the conventional overhead system, which improves occupants' comfort, health, and work efficiency, decreases life cycle cost, and improves indoor air quality, ventilation efficiency, and lay-out flexibility related to building services. Also, the floor height is reduced because a duct is unnecessary. The stratification of the UFAD system is a key factor to the system, which refers to the inconsistent vertical temperature distribution from the floor to the ceiling due to the buoyant effect of air. It plays a critical role in determining the thermal, ventilation, and energy performance. However, based on the comprehensive literature review, study on the stratification of UFAD is insufficient due to lack of understanding and actual measurement facilities related to UFAD. Therefore, this study, by using the EnergyPlus simulation and phi-gamma formula, aims to assess the stratification according to the variation of a diffuser condition. As a result, stratification of the perimeter zone was improved by diffuser condition but the energy savings was not noticeable. The floor area of the interior zone accounts for 75% of the total floor area but stratification of the interior zone was not nearly changed by diffuser condition. Also, as the stratification was improved, the wall convection heat gain increased in the interior zone. Therefore, it is considered that the cooling load was increased and the decrease of energy consumption is insignificant.
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ERICA 공학대학 (MAJOR IN ARCHITECTURAL ENGINEERING)
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