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Research on HVAC System Operating Schemes for Pressurization to Reduce Stack Effect Problems in Elevator Halls of High-rise Office Building

초고층 사무소 건물 엘리베이터 홀에서의 연돌현상 저감을 위한 공조가압 방안의 적용

  • Received : 2012.12.26
  • Accepted : 2014.06.05
  • Published : 2014.06.30

Abstract

This study aims to find effective operation schemes for HVAC systems for pressurization to reduce stack effect problems in elevator halls of high-rise office building. The suggested operation scheme was to pressurize the floors above neutral pressure level of high-rise elevator shaft by introducing outdoor air. First, Field measurement was conducted to evaluate this scheme in the 60-story office building located in seoul. The measurements were conducted to measure the pressure differences across the elevator doors, air velocities at the open elevator doors, and the noise levels in the elevator halls. The volumes of outdoor air were increased by changing the openness of the outdoor air control damper from 0% through 40% by the increment of 10% until the measured pressure difference across the elevator door of the high-rise elevator shaft on the first floor became lower than 100Pa. For the different damper operations, the outdoor air volumes per floor became 0 CMH(Base case), 1,302 CMH(Case 1), 2,603 CMH(Case 2), 3,904 CMH(Case 3), and 5,206 CMH(Case 4). From the field measurement, it was found that pressurizing the $40^{th}$ to $60^{th}$ floor with outdoor air of approximately 110,000 CMH under the winter design outdoor temperature condition in the Seoul area effectively solved the problems related to stack effect in elevator halls of this office building. At this time, costs due to the introduction of outdoor air was calculated 176,689 won per hour. For pressurized method introducing outdoor air, the exhaust air control method using fresh outdoor air for ventilation was proposed.

Keywords

Acknowledgement

Supported by : 한국연구재단

References

  1. 국토교통부, 국토교통부고시 제2013-587호 건축물의 에너지절약 설계기준, 2013
  2. 국가에너지통계종합정보시스템, LNG 수입가격 및 도시가스 가격, http://www.kesis.net, 2014
  3. 금종수, 김용식, 양협, 배만인.속백만인의 공기조화, Ohmsha& 태훈출판사, 2000
  4. 박용환, 김범규, 권태진, 마재일, 엘리베이터 통로 급기가압에 따른 연돌효과 연구, 추계학술논문발표회 논문집, 2008
  5. 유정연, 송규동, 조동우, 초고층 복합건축물 엘리베이터에서의 연돌현상 저감방안 평가, 설비공학논문집 제21권 제2호, 2009
  6. 이중훈, 송두삼, 백인호, 박동률, 임현우, 현장적용을 고려한 연돌효과 문제점 저감대책에 대한 고찰, 대한건축학회 추계학술발표대회 논문집, 2007
  7. 임현우, 박동률, 이중훈, 송두삼, 공조가 연돌효과에 미치는 영향에 관한 연구, 한국친환경설비학회 춘계학술발표대회 논문집, 2008
  8. 정광섭, 김광우, 건축공기조화설비, 기문당, 2000
  9. 조재훈, 이종인, 여명석, 김광우, 고층 주거건물에서의 연돌효 과로 인한 압력분포 예측, 대한건축학회 학술발표대회 논문집, 제25권 제1호, 2005
  10. 한국가스안전공사 사이버지사, http://cyber.kgs.or.kr, 2012
  11. Beranek L. L., Noise and Vibration Control Engineering, Willy, 1992
  12. Donald E. R., HVAC design guide for tall commercial buildings, ASHRAE, 2004
  13. Tamura, G. T., Smoke Movement and Control in High-rise Buildings, NFPA, 1994