• Title/Summary/Keyword: 환기 해석

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Unsteady Numerical Simulation on the Ventilation in a Long Rail Tunnel (장대터널내 열차운행시 환기에 대한 비정상 수치해석)

  • Hur, Nahm-Keon;Kim, Wook;Kim, Sa-Ryang;Cha, Chul-Hyun
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
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    • v.13 no.6
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    • pp.448-454
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    • 2001
  • In the present study, the transient axi-symmetric numerical simulation of traffic ventilation induced by a train running through a 15.6km-long tunnel is performed by using over 100,000 computational cells. With train running, three cases of ventilation schemes are simulated, which are the case of ventilation fans turned on, the case of no fan but ventilation shafts open, and the case of no fan and no shaft. Results of the ventilation flow rate are pressure transients are compared for the cases considered.

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Numerical Study for Air-Side Flow Characteristics of Fin-Tube Heat Exchangers with Oval-Tube (타원관형 핀-관 열교환기의 공기측 열유동특성에 대한 수치해석)

  • 김승택;최윤호;김형택
    • Journal of Energy Engineering
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    • v.10 no.2
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    • pp.166-175
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    • 2001
  • 핀-관 열교환기의 효율을 증대시키기 위하여는 열저항을 결정하는데 있어서 중요한 역할을 하는 공기측 열전달 특성의 향상이 필요하다. 본 연구에서는 슬릿핀과 같은 핀 형상의 개선으로 인한 높은 압력손실을 감소시키기 위하여 타원관형 열교환기를 고려하였으며 이를 자체 개발한 3차원 비압축성 Navier-Stokes 코드를 이용하여 공기측 성능을 해석하였다. 이 코드는 시간항에 스칼라 내재적 근사분해법(scalar implicit approximate factorization)절차, 공간항에 유한체적법과 2차의 풍상차분법을 사용한다. 핀 형상이 평판핀인 타원관에 대하여 세장비가 0.3, 0.5, 0.75인 경우와 핀 형상이 슬릿핀이고 세장비가 0.5인 타원관에 대하여 공기측 유동을 해석하였으며 이를 원관의 성능과 비교하였다. 평판핀의 경우, 압력강하량은 원관과 비교하여 세장비가 작아질수록 감소하는 것을 볼 수 있었으며, 열전달 계수는 고려한 유입속도 범위에서 원관을 기준으로 약 5%이하의 변화로 거의 동일하게 유지되는 것을 볼 수 있었다. 슬릿핀의 경우 역시 문제되는 높은 압력강하량은 타원관을 도입함으로써 효과적으로 낮출 수 있음을 볼 수 있었다.

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A Study on the Design Factors of Complex Damper for Ventilation and Fire Protection (환기 및 소방용 복합댐퍼의 설계인자에 관한 연구)

  • Lee, Dong-Myung
    • Fire Science and Engineering
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    • v.25 no.4
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    • pp.42-47
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    • 2011
  • This study carried out the design and analysis of complex damper as basis study for development of complex damper for ventilation and fire protection. This study established design and analysis theory of complex damper based on process, kinematics mechanism and mechanism modelling of complex damper. And this study established engineering data construction and a source technology that can design each element of complex damper through motion analysis simulation based on design and analysis theory. Therefore, it got result that can apply comprehensively in development of complex damper for ventilation and fire protection from this study. Also, it sees that can ready control means and technological countermeasure of smoke to developed of complex damper with this study.

The Change of Backlayer Length with the Ventilation Air Velocity in the Tunnel Fire (터널화재에서 환기속도와 backlayer의 길이변화)

  • 김성준;이민규
    • Fire Science and Engineering
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    • v.17 no.3
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    • pp.50-54
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    • 2003
  • The backlayer phenomena of smoke in the road tunnel is evaluated through numerical experiments. A commercial code, PHOENICS is used to simulate smoke flow in the road tunnel. The independent and dependent variables are ventilation air velocity and the length of backlayer of smoke respectively. Hybrid scheme and $textsc{k}-\varepsilon$ turbulence model is adopted in the simulation process and mass residual is used as a convergence criterion. The experimental results say that the length of backlayer is reduced linearly with the increase of ventilating air velocity and that there is a critical air velocity which prevents from the onset of backlayering phenomena. One finds that there is a fresh air region near the bottom of tunnel which could make the passenger escape from the region polluted by smoke. These phenomena come from the severe vertical stratification of the smoke air mixture in the tunnel.

A Study of Heat St Smoke Evacuation Characteristics by the Changing of Operational Method of Tunnel Fan Shaft Ventilation System for Fire on Subway Train Vehicle (지하철 화재시 본선터널 환기시스템에 따른 열 및 연기배출특성)

  • 이동호;유지오
    • Fire Science and Engineering
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    • v.17 no.2
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    • pp.62-69
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    • 2003
  • The smoke control system in subway platform is not only using for smoke exhaust facility but also using ventilation system. For this reason, smoke vent effectiveness is depending on its position, ventilating volume capacity and the vent method. In this study, the passenger's evacuation time was calculated for the case of fire on sloped subway train vehicle in subway platform. In order to recommend the mechanical smoke exhaust operation mode, SES (Subway Environmental Simulation) was used to predict the airflow of the inlet and outlet tunnel for the subway station. Fire dynamics Simulator(FDS) was used the SES's velocity boundary conditions to calculate the smoke density and temperature under the condition of fire on stopped subway train vehicle at the platform. We compared smoke density and temperature distributions for each 6 types of smoke exhaust systems to clarify the characteristics of smoke and hot air exhaust effectiveness from the result of fire simulation.

Multi-dimensional Fire Behaviors in an Under-ventilated Compartment Fire (환기부족 구획화재에서 다차원 화재거동)

  • Hwang, Cheol-Hong;Park, Chung-Hwa;Ko, Gwon-Hyun;Lock, Andrew
    • Proceedings of the Korea Institute of Fire Science and Engineering Conference
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    • 2010.04a
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    • pp.37-42
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    • 2010
  • 실제 규모 ISO 9705 표준 화재실에서 과환기(over-ventilated) 및 환기부족(under-ventilated) 화재에 대한 열 및 화학적 특성에 관한 실험이 수행되었다. 또한 FDS(Fire Dynamic Simulator)를 이용하여 수치적 예측성능에 대한 평가와 환기부족화재에서 건물 내부의 다차원 화재현상에 대한 해석이 이루어졌다. 과환기 및 환기부족화재의 특성은 연소효율, 총괄 당량비 뿐만 아니라 고온 상층부의 온도분포, 연소 생성물의 농도에 의해 명확하게 구분되었다. 실험결과와의 비교를 통해 과환기 및 환기부족화재에서 FDS는 공간내부의 온도, 열유속 및 다양한 화학종의 분포를 정량적으로 잘 예측함을 확인하였다. 과환기화재와 비교할 때, 환기부족화재에서 내부유동은 반대방향의 다차원 재순환 유동구조를 갖고 있음을 발견하였다. 동시에 공간내부의 $O_2$ 및 CO의 분포 역시 다차원 구조를 갖기 때문에 기존화재연구에서 측정되는 고온 상층부의 열 및 화학적 특성은 환기부족화재를 이해하는데 많은 한계가 있음을 확인하였다.

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A numerical study on the ventilation characteristics of rainfall in road tunnel (강우변화를 고려한 도로터널의 환기특성에 관한 수치해석)

  • Lee, Ho-Hyung;Lee, Seung-Chul
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.17 no.3
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    • pp.341-351
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    • 2015
  • When rainfall occurred on road tunnel, that is likely to have influence upon ventilation force in the tunnels but the tunnels ventilation system did not consider factors of rainfall. Thus, this study investigated effects of rainfall upon ventilation force in the tunnels at no rainfall and changing of rainfall by 3 dimensional numerical method. Flow rate into road tunnels decreased as many as 52.34% at rainfall of 150 mm/hr, and pressure drop of road tunnel between entrance and exit decreased as many as 22.22%, so that rainfall had influence upon ventilation force in the tunnel. The number of necessary jet fan in road tunnels is 12 at no rainfall but, when rainfall of 80 mm/hr on road tunnels, the number of necessary jet fan in road tunnels is 16, when rainfall of 150 mm/hr on road tunnels, the number of necessary jet fan in road tunnels is 17. So, factor of rainfall should be considered at estimation of ventilation system of road tunnel.

A CFD Study on Unsteady and Steady State of the Hydrogen Leakage for Residential Fuel Cell System (가정용 연료전지 시스템 내부 수소 누출의 비정상 및 정상 상태에 관한 전산 해석)

  • Chung, Tae-Yong;Ahn, Jae-Uk;Nam, Jin-Hyun;Shin, Dong-Hoon;Kim, Young-Gyu
    • Journal of the Korean Institute of Gas
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    • v.11 no.4
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    • pp.41-46
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    • 2007
  • The residential fuel cell system was modeled as a box-shaped chamber with vent openings, filled with various components such as reformer, desulfurizer, fuel cell stack and humidifier. When the vent openings are 1% of the total surface and hydrogen leakage 1%, hydrogen concentration is around 0.1% higher than the other regions from leak points in the chamber at 30 seconds and hydrogen concentration is increased from 0.3% to 0.7% in the upper region of the system after 200 seconds. When the vent openings are 1% of the total surface and hydrogen leakage 1%, 3%, 5%, the steady state result of CFD, 5% of hydrogen leakage is reached the lowest ignition limit in the system. When the vent openings are 2% of the total surface and hydrogen leakage 1%, hydrogen concentration is increased in the bottom of the system for 60 seconds. After 250 seconds, hydrogen concentration is reached the steady state in the system. As the vent opening of the total surface increased from 1% to 2%, averaged hydrogen mole fraction is under 1% in the system, however, upper regions of the system from the hydrogen leakage points are shown over 1% of hydrogen mole fraction.

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The Ventilation Plane Due to Smoke Driving Combined Forces in Super High-Rise Buildings (초고층 건물에서 연기이동 복합력에 의한 환기계획)

  • Lee, Dong-Myung
    • Fire Science and Engineering
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    • v.30 no.4
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    • pp.82-87
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    • 2016
  • The ventilation system for the efficient operation of the building services systems in the ventilation plan of super high-rise buildings is used to combine smoke control systems. This study evaluated models of super high-rise buildings with four basement levels and 59 stories and investigated the pressure distribution of each floor by the smoke driving forces by numerical analysis. The smoke driving forces on the building of analytical model was analyzed to determine the effects of the ventilation plan and smoke control plane. In addition, when a combination with ventilation and smoke control of the kitchen ventilation damper in the ventilation plan of analysis model building was designed based on the these results, the relationship between the opening and closing force of the damper and smoke driving combined forces to act on the design pressure of the damper by a motion analysis simulation. The driving units of the damper were selected from the analytical results.

A Study of Efficient Ventilation System in Deep Mines (심부 광산의 효율적 환기 시스템에 관한 연구)

  • Song, Doo-Hwan;Kim, Yun-Kwang;Kim, Teak-Soo;Kim, Sang-Hwan
    • Clean Technology
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    • v.22 no.3
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    • pp.168-174
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    • 2016
  • The working environment is deteriorated due to a rise in temperature of a coal mine caused by increase of its depth and carriage tunnels. To improve the environment, the temperature distribution resulted by using the fan type ventilation system aiming for the temperature drop is calculated by using a fluid dynamic analysis program. The analysis shows that A coal mine needs 6,152 m3 min-1 for in-flow ventilation rate but the total input air flowrate is 4,710 m3 min-1, 1,442 m3 min-1 of in-flow ventilation rate shortage and the temperature between the carriage tunnel openings and the workings with exhausting ventilation system type is 2~3 ℃ less than that with blowing ventilation system type. The exhausting ventilation system type would be more effective than blowing ventilation system when the distance between the carriage tunnel openings and the workings is relatively far.