• Title/Summary/Keyword: Smoke control system

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Large Eddy Simulation of Fire and Smoke Control in a Compartment with Large Openings (큰 개구부가 있는 공간의 화재와 제연의 대와류모사)

  • 박외철
    • Fire Science and Engineering
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    • v.17 no.3
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    • pp.7-12
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    • 2003
  • A 50 kW polyurethane fire in a compartment of 4 m ${\times}$ 1 m ${\times}$ 1.5m with large openings similar to a subway station was simulated by a large eddy simulation to investigate the fire and smoke control. The NIST FDS, which employed a mixture fraction combustion model and a finite volume method for radiation, was utilized. Distribution of temperature and smoke particles was compared with in the lower and upper corridors for three different smoke control systems, ventilation, purge, and extraction, starting in 5 sec from the ignition of the fire. For the given geometries, the ventilation system showed the best smoke removal rate and lowest temperature distribution in the both corridors. It was confirmed that the purge system is not recommended for a subway station since the smoke removal rate of the purge system was worse than that without a smoke control system.

Flame control method for hot smoke test (Hot smoke test 를 위한 화염 제어 방법)

  • 김진국
    • Proceedings of the Korea Institute of Fire Science and Engineering Conference
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    • 1996.11a
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    • pp.30-33
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    • 1996
  • This paper presents the technical basis for hot smoke test intended to investigate the effectiveness of smoke ventilation system in both high-rise building and those containing atria and/or galleria. Smoke is particularly serious hazard in these building in which considerable time is required for complete evacuation. It is widely recognised that the effectiveness of large smoke ventilation system can be difficult to confirm by a critical analysis of the system design calculation. Thus a hot smoke test is recently introduced through the experiences of many attempts. Diffusion flames used for hot smoke test have a higher flame length, so that those can not be applied to small compartment. Therefore the objective of this paper is introducing the method of flame control which can be applied to any size of compartment

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An Experimental Study on the Pressure Differentials during the Pressurized Air Supply to the Elevator Lobby (부속실 급기가압제연시 차압변화에 관한 실험적 연구)

  • Kim, Bum-Kyu;Park, Yong-Hwan;Kim, Hong-Sik
    • Proceedings of the Korea Institute of Fire Science and Engineering Conference
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    • 2009.04a
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    • pp.110-119
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    • 2009
  • A fire should be accompanied by the heat and smoke. However, smoke is considered main cause of heavy casualties. Smoke easily spreads away from the fire area to remote space and cause mortal wound for the resident. A technical way effectively protecting the life and property from the smoke is the smoke control system of the building. Pressurized air supply system can be considered to prevent the refuge area from the smoke infiltration that evacuate residents via evacuation route for life safety. This paper is related with performance estimation and the effectiveness of the pressurized air supply system through experiments.

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Study on the Analysis of Differential Pressure of the Access Door for a Smoke Control Zone and the Effectiveness of the Measurement Criteria of its Opening Force (제연구역 출입문의 차압 및 개방력 측정기준의 실효성 분석에 관한 연구)

  • Lee, Jae-Ou;Choi, Chung-Seog
    • Fire Science and Engineering
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    • v.26 no.4
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    • pp.24-30
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    • 2012
  • The purpose of this study is to analyze the problem in measuring the differential pressure between the fire area and the neighboring smoke control zone as well as the opening force of a fire door and to present the actual values measured by an objective method. NFSC 501A specifies that the force necessary to open an access door when operating a smoke control system shall be less than 110 N. When the smoke control system does not operate in the space where it is installed, the door opening force can be measured by the test method in KS F 2805. However, when the smoke control system operates, additional opening force is required to overcome the force generated by the differential pressure between the fire area and smoke control room. Therefore, it can be seen that the method proposed by the standard has insufficient reliability. The analog measuring device and digital measuring device showed that the opening forces, $F_a$ and $F_d$, of the fully closed door before the smoke control system were 27.8 N and 27.4 N, respectively. When the door remained open by $5^{\circ}$, the opening forces, $F_a$ and $F_d$, were 33 N and 33.6 N, respectively. When the smoke control system operated and the door was fully closed, the door opening forces, $F_a$ and $F_d$, were 77.6 N and 76.0 N, respectively. Therefore, since the door opening forces are different from the criteria presented by KS F 2805, it is required to review the criteria appropriately.

A Numerical Simulation of Smoke Control in Daegu Subway Stations II. Air Flowrate of Extraction System (대구 지하철역 제연의 문제점과 대책 II. 배기방식 제연설비의 풍량)

    • Fire Science and Engineering
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    • v.17 no.4
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    • pp.105-110
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    • 2003
  • In Part II, the temperature and smoke particle distributions of the extraction system, which yielded the best smoke removal performance among the three smoke control systems in Part I, for extraction flowrates of 0.6∼2.4 ㎥/s and two fire sizes of 200 ㎾ and 2 ㎿ were presented. The same numerical method was utilized to the same computational domain and configurations as Part I. It was shown that the extraction flowrate affects the smoke control performance significantly, and that a similar trend in improving the smoke removal performance with the increasing extraction flowrate between the two fire sizes. An extraction flowrate of 2.4 ㎥/s or higher was required for the temperature in the escape route less than $^{\circ}C$ for the given situations.

A Study on the Smoke Control in Pressure Differential Systems (급기가압 제연댐퍼 위치에 따른 방연풍속특성 및 성능개선방안에 관한 연구)

  • Bae, Sang-Hwan
    • Proceedings of the Korea Institute of Fire Science and Engineering Conference
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    • 2011.04a
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    • pp.239-244
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    • 2011
  • This study is aimed to develop fundamental technology on the smoke control method by simulation model and scale model simulation technique in pressure differential systems. Thereby, this research aimed to establish design elements and technologies required for smoke control system that is suitable to pressure differential systems of the high-rise buildings in order to minimize the loss of lives and property damage in case of fire.

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A Study on the smoke control in underground space of the buildings (건축물 지하생활공간의 연기제어 기술개발 및 실물모의실험)

  • Bae, Sang-Hwan;Baik, Ki-Seung
    • Proceedings of the SAREK Conference
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    • 2008.11a
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    • pp.107-110
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    • 2008
  • This study is aimed to develop fundamental technology on the smoke control method by simulation model and scale model simulation technique in underground space. Thereby, this research aimed to establish design elements and technologies required for smoke control system that is suitable to underground spaces of the high-rise residential-commercial and office buildings in order to minimize the loss of lives and property damage in case of fire.

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Case Study of a Field Test for a Smoke Control System Using Sandwich Pressurization (샌드위치 가압을 이용하는 연기제어 시스템의 현장실험 사례 연구)

  • Kim, Jung-Yup;Ahn, Chan-Sol
    • Fire Science and Engineering
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    • v.30 no.5
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    • pp.87-92
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    • 2016
  • Amid the growing number of high-rise complex buildings in Korea, efficient smoke prevention technology in a fire is required and as an alternative of a mechanical smoke control system in high-rise buildings, the use of a smoke control system using sandwich pressurization has been on the rise. In such a system, the appropriate pressure difference and the data for designing the air supply and exhaust flow rate are necessary to prevent the spread of smoke and offer a tenable evacuation environment. As part of such effort, this paper presents a field test process and result after testing a building where such a smoke control system using sandwich pressurization has been installed. A ventilation rate of 6 cycles per hour were applied to simulate the air exhaust flow rate on a fire floor and the air supply flow rate on the floors above and below the fire floor. As a result of the system operation, pressure difference of approximately 260 Pa between the 12th floor of a fire and the 13th floor was generated. The over pressure of the experiment has a serious effect on the evacuation or fire compartment so that it is necessary to examine the improvement.

A Study on the Smoke Control Performance Evaluation of High-rise Buildings under Smokeproof Enclosure Design Scenarios (초고층 건축물의 수직 구획화에 따른 급기가압제연시스템 성능평가에 관한 연구)

  • Bae, Sang-Hwan;Ryu, Hyung-Kyou;Lee, Byung-Seok
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
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    • v.26 no.7
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    • pp.343-350
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    • 2014
  • Regardless of the building design scenarios, evaluation of high-rise buildings required to have smoke-proof enclosures that are provided with a smoke management system. The goal of the smoke management system design is to make sure the pressure differentials at every story within the building fall within the allowable pressure range. If the minimum design pressure is not met, smoke may enter the stair. If the provided pressure is too great, it becomes difficult for occupants to open the doors, while attempting to egress. Ensuring that the pressure differential between the vestibule and the floor is within the prescribed range becomes challenging, due to natural effects on the building, such as the stack effect. In this research, smokeproof enclosure design scenarios were evaluated; and as a result, separation levels for compartmentation were deduced, in the balancing of pressurized-vestibule smoke control systems.

A Study on the Effective Fire and Smoke Control in Road-Tunnel with Semi-Transverse Ventilation (Oversized Exhaust System) (도로터널 화재시 반횡류식 환기방식에서의 최적배연 연구(대배기구 방식))

  • Kim, Jong-Yoon;Jeon, Yong-Han
    • Fire Science and Engineering
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    • v.23 no.3
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    • pp.79-84
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    • 2009
  • The smoke control system plays the most important role in securing evacuation environment when a fire occurs in road tunnels. Smoke control methods in road tunnels are classified into two categories which are longitudinal ventilation system and transverse ventilation system. In this study it is intended to review the characteristics of smoke behavior by performing numerical analysis for calculating the optimal smoke exhaust air volume when a fire occurs in tunnels in which transverse ventilation is applied, and for obtaining the basic data required for the design of smoke exhaust systems by deriving optimal smoke exhaust operational conditions for various conditions. As a result of this study, when the critical velocity in the tunnel is 1.75m/s and 2.5m/s, the optimal smoke exhaust air volume has to be more than $173m^3/s$, $236m^3/s$ for the distance of the smoke moving which can limit the distance to 250m. In addition, in case of uniform exhaust the generated smoke is effectively taken away if the two exhaust holes near the fire region are opened at the same time.