• 제목/요약/키워드: Plume Model

검색결과 250건 처리시간 0.028초

Numerical Simulation of Buoyant flume Dispersion in a Stratified Atmosphere Using a Lagrangian Stochastic Model

  • Kim, Hyun-Goo;Noh, Yoo-Jeong;Lee, Choung-Mook;Park, Don-Bum
    • Journal of Mechanical Science and Technology
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    • 제17권3호
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    • pp.440-448
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    • 2003
  • In the present paper, numerical simulations of buoyant plume dispersion in a neutral and stable atmospheric boundary layer have been carride out. A Lagrangian Stochastic Model (LSM) with a Non-Linear Eddy Viscosity Model (NLEVM) for turbulence is used to generate a Reynolds stress field as an input condition of dispersion simulation. A modified plume-rise equation is included in dispersion simulation in order to consider momentum effect in an initial stage of plume rise resulting in an improved prediction by comparing with the experimental data. The LSM is validated by comparing with the prediction of an Eulerian Dispersion Model (EDM) and by the measured results of vertical profiles of mean concentration in the downstream of an elevated source in an atmospheric boundary layer. The LSM predicts accurate results especially in the vicinity of the source where the EDM underestimates the peak concentration by 40% due to inherent limitations of gradient diffusion theory. As a verification study, the LSM simulation of buoyant plume dispersions under a neutral and stable atmospheric condition is compared with a wind-tunnel experiment, which shows good qualitative agreements.

염소가스의 소규모 누출에 대한 Gaussian 연속모델의 분산계수 적용성 (Suitability of Dispersion Coefficients of the Gaussian Plume Model for the Small Scale Release of Chlorine Gas)

  • 김태옥;장서일
    • 한국가스학회지
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    • 제8권1호
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    • pp.13-17
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    • 2004
  • 무거운 독성가스의 소규모 누출에 대한 가우시안 연속모델의 적용성을 평가하기 위하여 염소가스의 소규모 누출에서 염소농도의 실험값과 여러 가지 분산계수를 사용한 가우시안 연속모델에 의해 산출한 이론값을 비교하였다. 그 결과, 염소가스 분산은 분산계수와 대기안정도에 따라 상당히 차이가 있었으며, 염소농도는 Briggs의 분산계수와 유효 누출높이를 사용한 가우시안 연속모델에 의해 비교적 정확하게 산출할 수 있었다.

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다공확장벽을 이용한 플룸간섭의 제어 (Control of Plume Interference Using a Porous Extension)

  • Young-Ki Lee;Heuy-Dong Kim
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2003년도 제21회 추계학술대회 논문집
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    • pp.95-98
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    • 2003
  • The physics of the plume-induced shock and separation particulary at a high plume to exit pressure ratio and supersonic speeds up to Mach 3.0 with aid without a passive control method, porous extension, were studied using computational techniques. Mass-averaged Navier-Stokes equations with the RNG k-$\varepsilon$ turbulence model were solved using a fully implicit finite volume scheme and a 4-stage Runge-Kutta method. The courol methodology for plume-afterbody interactions is to use a perforated wall attached at either the nozzle exit or the edge of the missile base. The Effect of porous wall length on plume interference is also investigated. The computational results show the main effect of the porous extension on plume-afterbody interactions is to in the plume from strongly underexpanding during a change in flight conditions. With control, a change in porous extension length has no significant effect on plume interference.

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Missile Afterbody에서 Plume-Induced Flow의 제어에 관한 연구 (A Study of the Control of Plume-Induced Flow over a Missile Afterbody)

  • 임채민;;이장창;김희동
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2003년도 제20회 춘계학술대회 논문집
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    • pp.45-48
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    • 2003
  • plume 간섭 현상은 plume에 의한 경계층 유동의 박리, 강한 전단층 발생, 그리고 다수의 충격파들이 박리유동 및 전단층과 상호작용하게 되는 매우 복잡한 유동현상이며, 현재 미사일 등의 후미부에서 발생하는 plume 간섭 현상의 상세에 관해서는 잘 알려져 있지 않다. 본 연구에서는 plume 간섭현상을 이해하기 위하여 수치계산을 수행하였다. 수치계산에서는 천음속 및 초음속 자유유동에서 plume 간섭현상을 조사하기 위하여, 추진노즐로부터 발생하는 강한 부족 팽창제트를 모사하여 종래의 풍동실험의 결과와 비교하였다. 또 수치계산에서는 미사일 후미부에 Simple, Rounded, 다공-확장(porous-extension)벽을 적용하여, 이들이 plume 간섭현상에 미치는 영향을 조사하였다. 그 결과 Rounded, 다공-확장(porous-extension)벽은 plume에 의한 충격파와 경계층 유동의 박리 현상을 완화시킬 수 있었으며, 미사일 동체의 제어성능을 향상시킬 수 있음을 알았다.

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Lagrangian 모형에 의한 분진 침강 효과에 따른 지표면 농도의 분포특성 분석 (Characteristic Analysis of the Surface Concentration Distribution under the Influence of Particle Settling by Lagrangian Model)

  • 박일수;강인구;최기덕
    • 환경영향평가
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    • 제2권1호
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    • pp.57-63
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    • 1993
  • An analysis for particle settling effects via of plume centerline tilted exponentially under the influence of panicle settling velocity is carried out for particle of $30{\mu}m$ diameter with $1g/cm^3$ density and 0.02m/s settling velocity corresponding to its particle characteristic according to various wind speeds, atmospheric stabilities. Characteristic analysis of surface concentration distribution simulated by Lagrangian model also are carried out under the influence of plume centerline tilted exponentially at 10m stack height emitted 200 particles per second. This study reveals that plume centerline at the nearby source is sharply tilted exponentially under the condition of stable, weakly wind speed, therefore the lower concentration at the nearby source, the higher concentration at the downwind distance far away from source than actual one is brought out, if not apply the effect of plume centerline tilted exponentially to diffusion Model.

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자료동화기술을 이용한 대기중 오염물질 확산평가 (Data Assimilation Techniques Applied to Estimate the Dispersion of the Pollutant in the Atmosphere)

  • 한문희;정효준;김은한;서경석;황원태;이선미
    • 한국방사성폐기물학회:학술대회논문집
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    • 한국방사성폐기물학회 2004년도 학술논문집
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    • pp.368-376
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    • 2004
  • 영광부지의 추적자 확산실험결과의 자료동화를 통하여 Gaussian plume 모형의 확산인자의 수정과 추적자 방출률 평가를 수행하였다. 부지 주변의 여러 지점에서 관측한 실험결과에 선형계획법을 적용하여 확산평가에 있어선 가장 불확실성이 크다고 알려진 확산인자를 수정하였다. 원자력 비상시 초기 대응평가에 사용되는 정보 가운데 가장 큰 불확실성을 포함한 선원항 정보를 추적자 농도 분포로부터 추정하였다. 실험 당시의 추적자 방출량을 모른다고 가정하고 Gaussina plume 모형의 예측치와 확산실험의 실측치를 이용한 최소자승법을 적용하여 방출률을 추정하였다. 확산인자를 수정한 후 Gaussian plume 모형의 예측력은 방출점으로 3km 및 8km 떨어진 포집선 두 경우 모두 증가하는 것으로 나타났다. 실험당시의 방출률을 모른다고 가정하고 관측지점의 농도에 최소자승법을 적용한 결과 24%이내에서 실제 방출률을 양호하게 추정하고 있음을 확인할 수 있었다.

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분산계수의 전처리에 의한 대기분산모델 성능의 개선 (Improvement of Atmospheric Dispersion Model Performance by Pretreatment of Dispersion Coefficients)

  • 박옥현;김경수
    • 한국대기환경학회지
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    • 제23권4호
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    • pp.449-456
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    • 2007
  • Dispersion coefficient preprocessing schemes have been examined to improve plume dispersion model performance in complex coastal areas. The performances of various schemes for constructing the sigma correction order were evaluated through estimations of statistical measures, such as bias, gross error, R, FB, NMSE, within FAC2, MG, VG, IOA, UAPC and MRE. This was undertaken for the results of dispersion modeling, which applied each scheme. Environmental factors such as sampling time, surface roughness, plume rising, plume height and terrain rolling were considered in this study. Gaussian plume dispersion model was used to calculate 1 hr $SO_2$ concentration 4 km downwind from a power plant in Boryeung coastal area. Here, measured data for January to December of 2002 were obtained so that modelling results could be compared. To compare the performances between various schemes, integrated scores of statistical measures were obtained by giving weights for each measure and then summing each score. This was done because each statistical measure has its own function and criteria; as a result, no measure can be taken as a sole index indicative of the performance level for each modeling scheme. The best preprocessing scheme was discerned using the step-wise method. The most significant factor influencing the magnitude of real dispersion coefficients appeared to be sampling time. A second significant factor appeared to be surface roughness, with the rolling terrain being the least significant for elevated sources in a gently rolling terrain. The best sequence of correcting the sigma from P-G scheme was found to be the combination of (1) sampling time, (2) surface roughness, (3) plume rising, (4) plume height, and (5) terrain rolling.

레이저 가공시 에너지 전달과 Plume 효과 (Laser- Plume Effects on Radiation Energy Transfer in Materials Processing)

  • Kang, Kae-Myung;Kim, Kwang-Ryul
    • 한국재료학회지
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    • 제12권1호
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    • pp.27-35
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    • 2002
  • In laser materials processing, localized heating, melting and evaporation caused by focused laser radiation forms a vapor on the material surface. The plume is generally an unstable entity, fluctuating according to its own dynamics. The beam is refracted and absorbed as it traverses the plume, thus modifying its power density on the surface of the condensed phases. This modifies material evaporation and optical properties of the plume. A laser-produced plasma plume simulation is completed using axisymmetric, high-temperature gas dynamic model including the laser radiation power absorption, refraction, and reflection. The physical properties and velocity profiles are verified using the published experimental and numerical results. The simulation results provide the effect of plasma plume fluctuations on the laser power density and quantitative beam radius changes on the material surface. It is proved that beam absorption, reflection and defocusing effects through the plume are essential to obtain appropriate mathematical simulation results. It is also found that absorption of the beam in the plume has much less direct effect on the beam power density at the material surface than defocusing does and helium gas is more efficient in reducing the beam refraction and absorption effect compared to argon gas for common laser materials processing.

유동장 수치해석이 포함된 퍼프모델을 이용한 오염물질의 확산 해석 (Pollutant Dispersion Analysis Using the Gaussian Puff Model with the Numerical Flowfield Information)

  • 정영래;박원규;박옥현
    • 한국전산유체공학회지
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    • 제4권3호
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    • pp.12-20
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    • 1999
  • The computations of the flowfield and pollutant dispersion over a flat plate and the Russian hills of various slopes are described. The Gaussian plume and the puff model have been used to calculate concentration of pollutant. The Reynolds-averaged unsteady incompressible Navier-Stokes equation with low Reynolds κ-ε model has been used to calculate the flowfield. The flow data of a flat plate and the Russian hills from Navier-Stokes equation solutions has been used as the input data for the puff model. The computational results of flowfield agree well with experimental results of both a flat plate and Russian hills. The concentration prediction by the Gaussian plume model and the Gaussian puff model also agrees flirty well with experiments.

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Effect of Flue Gas Heat Recovery on Plume Formation and Dispersion

  • Wu, Shi Chang;Jo, Young Min;Park, Young Koo
    • 한국입자에어로졸학회지
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    • 제8권4호
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    • pp.161-172
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    • 2012
  • Three-dimensional numerical simulation using a computational fluid dynamics (CFD) was carried out in order to investigate the formation and dispersion of the plume discharged from the stack of a thermal power station. The simulation was based on the standard ${\kappa}{\sim}{\varepsilon}$ turbulence model and a finite-volume method. Warm and moist exhaust from a power plant stack forms a visible plume as entering the cold ambient air. In the simulation, moisture content, emission velocity and temperature of the flue gas, air temperature and wind speed were dealt with the main parameters to analyze the properties of the plume composed mainly of water vapor. As a result of the simulation, the plume could be more apparent in cold winter due to a big difference of latent heat capacity. At no wind condition, the white plume rises 120 m upward from the top of the stack, and expands to 40 m around from the stack in cold winter after flue gas heat recovery. The influencing distance of relative humidity will be about 100 m to 400 m downstream from the stack with a cross wind effect. The decrease of flue gas temperature by heat recovery of thermal energy facilitates the formation of the plume and restrains its dispersion. Wind speed with vertical distribution affects the plume dispersion as well as the density.