• 제목/요약/키워드: natural ventilation

검색결과 430건 처리시간 0.023초

교통환기력에 의한 터널내 환기량 추정에 관한 연구 (Estimation of Ventilation Volume by Traffic Ventilation Force in Tunnel)

  • 김종호;이상칠;도연지;김신도
    • 한국대기환경학회지
    • /
    • 제11권3호
    • /
    • pp.273-278
    • /
    • 1995
  • This study is to estimate the ventilation volume by the traffic that originated from driving automobiles for two tunnels (Kugi tunnel and Kumhwa tunnel) that adopted natural ventilation system among tunnels of Seoul, and on the basis of which, we estimated the ventilation velume at various conditions. With the result of the estimation, we will present the basic method that can be operated with the optimum condition for the ventilation system. Estimating the predicted ventilation volume in the tennel by the pollutant concentration, we used traffic volume and CO emission data by the automobile speed and CO concentration in the tunnel. And, when we estimated the traffic ventilation volume by natural and traffic ventilation force, we used traffic volume, automobile speed, tunnel area, automobile area data and so on. As the result of simple regression between predicted ventilation volume and traffic ventilation volume, we attained the regression coefficient 0.88, and achieved the relation form that predicted ventilation volume equal 0.12x traffic ventilation volume-92, 000. Using this equation, we estimated the ventilation volume to satisfy the enviromnental standards of several space, and calculated the required volume for mechanical ventilation. Incase of Kumhwa Tunnel, there is a need of mechanical ventilation all day long to satisfy air quality standard 9 ppm for 8 hours average and 10 ppm for the indoor air quality standard of public facilities.

  • PDF

주거용 건물 유형별 자연환기시스템의 최적 설계 및 해석 (An Optimized Design and Simulation Analysis of Natural Ventilation Window System classified by Apartment type)

  • 최경석;정영선;강재식;이승언;정영용
    • 대한설비공학회:학술대회논문집
    • /
    • 대한설비공학회 2009년도 하계학술발표대회 논문집
    • /
    • pp.685-688
    • /
    • 2009
  • On account of Indoor Air Quality(IAQ) deterioration by reason of high insulation and air tightness for energy saving, absence of energy efficiency ventilation system development that can be domestic existing window system, the cost increase and the energy addition loss by mechanical ventilation for IAQ improvement, the ventilation obligation making design standard was prepared by a social and technical background and the necessity. In this study, an optimized design and simulation Analysis of natural ventilation window system classified by Apartment type was evaluated by CFD Computational analysis.

  • PDF

난방기 중 이중외피 시스템의 자연환기 성능분석에 관한 실험적 연구 (Experimental Study on Natural Ventilation Performance of Double Facade System in Heating Period)

  • 이건호;김현수;고영우;손영주
    • KIEAE Journal
    • /
    • 제6권2호
    • /
    • pp.43-50
    • /
    • 2006
  • A Double Facade System(DFS) is well known as an innovative solution of ecological facade in the west european countries. There are more than 200 various realized DFS in Germany. At the same time, the korean engineers have researched to find out the physical advantages of DFS in the moderate korean climate, which has a very humid summer with high temperature and a dry winter with low temperature. For example, the monthly mean temperature in Korea comes up to 28K, while that in Germany comes up to only 19K. That is, why a other solution of DFS is needed in Korea. This study has experimented the physical performance of the natural ventilation in the heating period. The preheating function of the cold air by DFS can improve no doubt the performance of the natural ventilation at the cold season as well as spring and autumn. The physical difference between single and double facade on natural ventilation has been tested at the newly constructed laboratory, which can turn $360^{\circ}$ to confirm the characteristic of a facade with the various directions. The results show the natural ventilation of the DFS has definitely much more comfortable than that of the single facade system. The air velocity of the inflow as well as the air temperature in the DFS provide a more stable condition than in the SFS. The theoretical limit(air velocity max 0.2m/s, air temperature min. $18^{\circ}C$, temperature difference between 100mm and 1700mm height max. 3K) on the indoor comfortableness doesn't go over in the DFS. On the other hand, the SFS showed an unstable condition with an excess of comfortableness limit on air velocity as well as temperature. In view of the researching results so far achieved, the research came to a conclusion, that the DFS can provide a more comfortable indoor condition by the preheating in the heating period than a SFS, and the period of natural ventilation in winter time could be definitely increased at the DFS.

윈드터빈 자연환기 장치의 외기풍속 및 온도차에 따른 환기특성에 관한 실험연구 (An Experimental Study on the Ventilation Characteristics of a Wind-Turbine Natural Ventilator According to the Outdoor-Wind Velocity and the Indoor/Outdoor-Temperature Difference)

  • 한동훈;김영식;정한식;정효민;최순호
    • 설비공학논문집
    • /
    • 제29권4호
    • /
    • pp.175-184
    • /
    • 2017
  • With the improvement of living standards, the ventilation for the mitigation of indoor or outdoor air-pollution problems has recently attracted a lot of attention. Consequently, the ventilation for the supply of outdoor fresh air into a room is treated as an important building-design factor. The ventilation is generally divided into the forced and natural types; here, the former can control the ventilation rate by using mechanical devices, but it has the disadvantages of the equipment costs, maintenance costs, and noise generation, while the latter is applied to most workshops due to the absence of noise and the low installation and maintenance costs. In this experimental study, the ventilation performance of a typical rotating-type natural ventilator, which is called a "wind turbine," was investigated with the outdoor-wind velocity and the indoor/outdoor-temperature difference. From the experiment results, it was confirmed that the temperature difference of $10^{\circ}C$ corresponds to the ventilation driving force with an outdoor-wind velocity of 1.0 m/s. Additionally, the intake-opening area of a building also exerts a great effect on the ventilation rates.

공장창호의 환기특성에 관한 연구 (A Study on Ventilation Characteristics of Industrial Windows)

  • 박승욱;김태형;하현철;허영빈
    • 한국환경과학회지
    • /
    • 제20권5호
    • /
    • pp.581-587
    • /
    • 2011
  • Industrial natural ventilation systems consist of gravity ventilator, the high/low windows and doors. Especially, the high windows play an important role in the industrial natural ventilation systems. Generally speaking, industrial high windows are divided into 3 types; louver type, $45^{\circ}$ open type and $90^{\circ}$ open type. This study was numerically and experimentally conducted. Three types of windows were tested to know the ventilation characteristics and estimate the ventilation efficiencies. Numerically, computational fluid dynamics software (AIR PAK Ver. 2.0) was used to observe the flow characteristics inside the industrial building and the concentration contours generated by the tracer gas method. Experimentally, the flow visualization technique and the tracer gas method were applied with the model building to characterize the flow pattern inside the model building and to estimate the ventilation efficiencies with the different windows. It was found that $90^{\circ}$ open type window was most effective for the discharge of pollutants from the industrial building. On the other hand, the louver type window was found to be less effective than any other windows.

단열재의 두께 및 연돌높이에 따른 태양열 굴뚝의 자연환기 성능에 관한 실험적 연구 (The Experimental Study on the Natural Ventilation Performance of Solar Chimney by the variation of Insulation Thickness and Height)

  • 조성우;김동완;임영빈
    • 한국태양에너지학회 논문집
    • /
    • 제22권3호
    • /
    • pp.39-46
    • /
    • 2002
  • The results of experiment on the performance of natural ventilation by insulation thickness and height system of solar chimney are described. The 3-inside wall was made of concrete and 1-wall was made of glass. The two kinds of model experiment were performed. One was the varition of the 60cm, 90cm and 120cm of solar chimney, the other was the variation of the insulation thickness 10mm and 50mm and without insulation of outside wall of solar cimney. As the temperature difference between bottom and top expressed $1.7\sim2.9^{\circ}C$, air velocity measured $0.5\sim0.8m/s$ and ventilation rate was $194.4m^3/h$ in the case of the 120cm height of solar chimney, the respect of natural ventilation performance was superior to others cases in the first model experiment. Though the case of 120cm height of solar chimney was attached 50mm insulation the ventilation rate was not so much as the case of solar chimney was attached 10mm insulation. the temperature difference between bottom and top was the largest in the other cases. From this research, the natural ventilation performance of solar chimney was affected by not only height and insulation thickness of solar chimney but also wind velocity and directon.

측창 및 온실 폭이 자연환기 성능에 미치는 영향 (Effect of Side Openings and Greenhouse Width on the Natural Ventilation Performance)

  • 이현우;우영회;이종원
    • 현장농수산연구지
    • /
    • 제25권1호
    • /
    • pp.14-19
    • /
    • 2023
  • 시뮬레이션 프로그램을 이용하여 철골 유리온실에서 피복재의 투과율 변화에 따른 필요환기량을 산정하고, 측창의 설치 여부와 온실 폭이 자연환기 성능에 미치는 영향을 분석한 결과를 요약하면 다음과 같다. 여름철에 온실 내부의 온도를 적정수준으로 유지하기 위한 필요환기량은 외기온이 높고 투과율이 높을수록 증가하였다. 투과율 90%(무차광) 유리온실에서 온실 내부의 온도를 35℃로 유지하기 위한 필요환기량은 외기온이 32℃일 때가 외기온이 20℃일 때의 5.5배 정도로 나타나, 외기온이 필요 환기량에 큰 영향을 미침을 알 수 있었다. 또한, 투과율 50%(40% 차광)인 온실의 필요환기량은 투과율 90%인 온실에 비하여 절반 정도로 나타 나, 차광이 고온기에 온실 내부 온도의 과다상승을 방지하는 효과가 크다는 사실을 확인할 수 있었다. 그리고 측창과 천창의 총면적이 일정할 때, 환기 성능이 최대인 경우는 측창과 천창의 면적이 동일할 때이고, 이는 측창이 없고 천창만 설치한 경우에 비하여 약 3배 정도로 크기 때문에, 여름철에 온실의 자연환기 성능을 향상 시키기 위해서는 반드시 측창을 설치하여야 하는 것을 확인할 수 있었다. 그리고 벤로형과 와이드스팬 온실에서 천창만 있고 측창이 없는 경우에는 스팬 수에 상관없이 환기율이 일정하게 나타났고, 천창과 측창이 있는 경우에는 스팬수가 증가할수록 환기율이 점차 감소하여 결국 측창이 없는 경우와 거의 동일하게 나타났다. 또한, 천창과 측창을 설치한 경우의 환기율이 천창만 설치한 경우의 환기율의 2배 이상 되도록 하기 위해서는 벤로형인 경우 12연동(폭 38.4m) 이하, 와이드스팬형인 경우 5연동(폭 64m) 이하가 되어야 한다. 따라서 온실 폭이 그 이상 될 경우에는 측창을 통한 환기효과를 크게 기대하기 어려움을 알 수 있다.

전산유체역학을 통한 간척지 내 벤로형 온실의 자연환기량 분석 (Analysis of Natural Ventilation Rates of Venlo-type Greenhouse Built on Reclaimed Lands using CFD)

  • 이상연;이인복;권경석;하태환;여욱현;박세준;김락우;조예슬;이승노
    • 한국농공학회논문집
    • /
    • 제57권6호
    • /
    • pp.21-33
    • /
    • 2015
  • Recently, the Korean government announced a new development plan for a large-scale greenhouse complex in reclaimed lands. Wind environments of reclaimed land are entirely different from those of inland. Many standard books for ventilation design didn't include qualitative standard for natural ventilation. In this study, natural ventilation rates were analyzed to suggest standard for ventilation design of venlo type greenhouse built on reclaimed land. CFD (Computational Fluid Dynamics) simulation models were designed according to the number of spans, wind conditions and vent openings. The wind profile at a reclaimed land was designed using ESDU (Engineering Sciences Data Unit) code. Using the designed CFD simulation model, ventilation rates were computed using mass flow rate and tracer gas decay method. Additionally computed natural ventilation rates were evaluated by comparing with ventilation requirements. As a result of this study, ventilation rates were decreased with increasing of the number of spans. Ventilation rates were linearly increased with increasing of wind speed. When the wind speed was $1.0\;m{\cdot}s^{-1}$, only side vent was open and wind direction was $45^{\circ}$, homogeneity of ventilation rate at 0~1 m height is the worst. Finally, chart for computing natural ventilation rate was suggested. The chart was expected to be used for establishing standard of ventilation design.

자연 배기 터널에서의 연기 거동에 관한 연구 (A Study of Smoke Movement in Tunnel Fire with Natural Ventilation)

  • 김성찬;이성룡;김충익;유홍선
    • 대한기계학회논문집B
    • /
    • 제26권7호
    • /
    • pp.976-982
    • /
    • 2002
  • In this study, smoke movement in tunnel fire with natural ventilation shaft has been investigated with various size of fire source. Gasoline pool fire with different size of diameter - 73mm, 100mm, 125mm and 154mm - was used to describe fire source. Experimental data is obtained with 1/20 model tunnel test and its results are compared with numerical results. The computation were carried out using FDS 1.0 which is a field model of fire-driven now. Temperature profiles between measured and predicted data are compared along ceiling and near the ventilation shaft. Both results are in good agreement with each other. In order to evaluating a safe egress time in tunnel fire, horizontal smoke front velocity was measured in model tunnel fire tests and those are compared with numerical results. According to the presence or absence of natural ventilation shaft, ventilation effect are estimated quantitatively. Finally, this paper shows that computational fluid dynamics(CFD) is applicable to predict fire-induced flow in tunnel.

탑상형 공동주택의 주동형태와 배치각에 따른 주호의 자연환기 성능 (Improving the natural ventilation in multi-housing units of tower-type buildings according to their shapes and directions)

  • 유선용;김지영;김태연;이승복
    • 대한설비공학회:학술대회논문집
    • /
    • 대한설비공학회 2006년도 하계학술발표대회 논문집
    • /
    • pp.897-902
    • /
    • 2006
  • Natural ventilation is an effective method for improving IAQ(Indoor Air Quality) and removing heats in buildings. In oder to use natural ventilation, many factors such as wind pressure around the buildings and possibility of air intake on different shapes need to be known. On this paper, the natural ventilation performance in multi-housing units of tower-type buildings was investigated. Tower-type multi-housing buildings are recently more and more constructed for they may change urban landscape and get more openness in multi-housing site. However, such housing buildings have problems with natural ventilation because of the various directions of the building units. The purpose of this paper is to find the proper building direction regarding to wind direction in order to optimize air intake in every units in the building.

  • PDF