수중건물에 적용된 액체식 제습증발냉각기반 전외기 공조시스템의 연간 에너지 소비 및 성능 분석Annual Energy Consumption and Performance Analysis of a Liquid Desiccant and Evaporative Cooling-assisted 100% Outdoor Air System in an Underwater Building
- Other Titles
- Annual Energy Consumption and Performance Analysis of a Liquid Desiccant and Evaporative Cooling-assisted 100% Outdoor Air System in an Underwater Building
- Authors
- 조민석; 박준영; 신장훈; 최병남; 정재원
- Issue Date
- Dec-2016
- Publisher
- 한국건축친환경설비학회
- Keywords
- Liquid desiccant system; Underwater building; Outdoor air system; Evaporative cooling system; Building energy; 액체식 제습시스템; 수중건물; 전외기 공조시스템; 증발냉각 시스템; 건물에너지
- Citation
- 한국건축친환경설비학회 논문집, v.10, no.6, pp 456 - 461
- Pages
- 6
- Indexed
- KCI
- Journal Title
- 한국건축친환경설비학회 논문집
- Volume
- 10
- Number
- 6
- Start Page
- 456
- End Page
- 461
- URI
- https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/153369
- ISSN
- 1976-6483
2586-0666
- Abstract
- The purpose of this paper is to analyze the operating energy consumption and performance of a liquid desiccant and evaporative cooling-assisted 100% outdoor air system (LD-IDECOAS) applied in an underwater building. Due to distinct features in surrounding environments of the underwater building from an above ground building, the thermal loads of the underwater building showed difference which affected the energy consumptions of the buildings accordingly. To estimate the energy consumption of the LD-IDECOAS, the office buildings located above the ground and underwater were assumed to be 625㎡ in size and have accommodations for 32 people.
The thermal loads of the designed buildings were calculated using TRNSYS 17. According to the required thermal load of the modeling space, the energy simulation was conducted to evaluate the annual operating energy of the LD-IDECOAS using a commercial engineering equation solver (EES). As a result, the LD-IDECOAS in the underwater building showed 48% reduction in the energy consumption compared to that in the above ground building. Furthermore, the system performance was increased and the system capacity was reduced.
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