• Title/Summary/Keyword: 오염 물질 확산

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Numerical Analysis of the Two-Dimensional Pollutant Dispersion Over Hilly Terrain (산지 내 오염물질 확산의 2차원 수치해석)

  • 김현구;이정묵
    • Journal of Korean Society for Atmospheric Environment
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    • v.13 no.5
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    • pp.383-396
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    • 1997
  • Numerical prediction of the pollutant dispersion over a two-dimensional hilly terrain is presented. The dispersion model used in the present work is based on the gradient diffusion theory and the finite-volume method on a non-orthogonal boundary-fitted grid system. The numerical model is validated by comparing the results with the available experimental data for the flat-floor dispersion within a turbulent boundary-layer. The numerical error analysis is performed based on the guideline of Kasibhatla et al.(1988) for the elevated-source dispersion in the flat-floor boundary layer having a power-law velocity and linear eddy-diffusivity profile. The influences of the two-dimensional hilly terrain on the dispersion from a continuously released source are numerically investigated by changing the emission locations and heights. It is found that the distributions of ground-level concentration are strongly influenced by the source location and the emission height. Hence, the terrain amplification factor is greatly enhanced when the pollutant source is located within a flow separation region. Dispersion from a source of short duration is also simulated and the duration time of the pollutant is compared at several downstream locations on a hilly terrain. The results of the numerical prediction are applied to the evaluation of environmental impacts due to the automobile exhausts at the seashore highway with a parallel mountain range.

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A Study on Atmospheric Environment Visualization by Integrating 3D City Model and CFD Model (3D City모델과 CFD 모델을 통합한 대기환경 시각화 연구)

  • An, Seung-Man;Lee, Ho-Yeong;Sung, Hyo-Hyun;Choi, Yeong-Jin;Woo, Jung-Hun
    • Journal of Korean Society for Geospatial Information Science
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    • v.19 no.4
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    • pp.13-21
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    • 2011
  • The purpose of this study is enhancing CFD model by applying detailed and accurate CFD input data produced from 3D City model and integrating CFD model with 3D city model with OpenGL, 3D city aerodynamic simulation, and visualization tool. CFD_NIMR_SNU model developed by NIMR and SNU and 3D City model produced by NGII were used as input data. Wind flow and pollution diffusion simulator and viewer were developed in this study. Atmospheric environment simulation and visualization tool will save time and cost for urban climate planning and management by enhancing visual communication.

A Study on Sensitivity of Pollutant Dispersion to Inflow Wind Speed and Turbulent Schmidt Number in a Street Canyon (도시 협곡에서 유입류 풍속과 난류 슈미트수에 대한 대기오염물질 확산의 민감도 연구)

  • Wang, Jang-Woon;Kim, Jae-Jin
    • Atmosphere
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    • v.25 no.4
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    • pp.659-667
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    • 2015
  • In this study, sensitivity of inflow wind speed and turbulent Schmidt number to pollutant dispersion in an urban street canyon is investigated, by comparing CFD-simulated results to wind-tunnel results. For this, we changed systematically inflow wind speed at the street-canyon height ($1.5{\sim}10.0m\;s^{-1}$ with the increment of $0.5m\;s^{-1}$) and turbulent Schmidt number (0.2~1.3 with interval of 0.1). Also, we performed numerical experiments under the conditions that turbulent Schmidt numbers selected with the magnitude of mean kinetic energy at each grid point were assigned in the street canyon. With the increase of the inflow wind speed, the model underestimated (overestimated) pollutant concentration in the upwind (downwind) side of the street canyon because of the increase of pollutant advection. This implies that, for more realistic reproduction of pollutant dispersion in urban street canyons, large (small) turbulent Schmidt number should be assigned for week (strong) inflow condition. In the cases of selectively assigned turbulent Schmidt number, mean bias remarkably decreased (maximum 60%) compared to the cases of constant turbulent Schmidt number assigned. At week (strong) inflow wind speed, root mean square error decreases as the area where turbulent Schmidt number is selectively assigned becomes large (small).

Numerical Simulation for Dispersion of Anthropogenic Pollutant in Northern Masan Bay using Particle Tracking Model (입자추적모델을 이용한 마산만 북부 해역에서의 육상오염물질 확산 수치모의)

  • KIM, Jin-Ho;JUNG, Woo-Sung;HONG, Sok-Jin;LEE, Won-Chan;CHUNG, Yong-Hyun;KIM, Dong-Myung
    • Journal of Fisheries and Marine Sciences Education
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    • v.28 no.4
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    • pp.1143-1151
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    • 2016
  • To study the dispersion process and residence time of anthropogenic pollutant in Masan bay, a three-dimensional hydrodynamic model coupled to a particle tracking model, EFDC, is applied. Particle tracking model simulated the instantaneous release of particles emulating discharge from river and wastewater treatment plant to show the behaviour of pollutant in terms of water circulation and water exchange. Modelled outcomes for water circulation were in good agreement with tidal elevation and current data. The results of particle tracking model show that over half of particles released from northern Masan bay transport to out of area while the particles from Dukdong wastewater treatment plant transport to northern area. This meant pollution source from inside and outside of the northern area can affect water quality of northern Masan bay.

Estimation of Rainfall-Runoff Erosivity Factor Using Scale Invariance Property (스케일 성질을 이용한 강우침식인자 추정)

  • Lee, Joon-Hak;Jung, Young-Hun;Oh, Kyoung-Doo;Heo, Jun-Haeng
    • Proceedings of the Korea Water Resources Association Conference
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    • 2010.05a
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    • pp.169-173
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    • 2010
  • 토양침식은 농경지 면적의 감소 및 사태 유발, 토사의 하천 유입으로 인한 생태계 교란 및 오염물질 확산 등의 피해를 야기시킨다. 토양침식을 유발하는 가장 큰 인자는 일반적으로 강우로 알려져 있으며, 연구대상 지역의 토양침식량을 산정하기 위해서는 강우침식인자를 추정하는 과정을 거치게 된다. 이와 관련하여 정필균(1983), 박정환 등(2000)은 각각 1980년, 1996년 이전의 강우자료를 이용하여 우리나라 강우침식인자를 제시한 바 있으나, 기상청에서 제공하는 1시간 단위 강우량으로 30분 최대 강우강도를 추정하는 것이 제한되어, 근래에 들어서는 연강수량을 이용하여 강우침식인자를 산정할 수 있는 국외 추정식을 적용하는 연구사례가 늘고 있다. 본 연구는 기상청에서 제공하는 1시간 단위 강우자료를 바탕으로 각 호우사상별 30분 최대 강우강도를 추정하여 보다 정확한 연강우침식인자를 산출하기 위한 것으로서 강우의 스케일 성질을 이용하였다. 속초 지점의 2007년 강우자료를 바탕으로 각 호우사상의 1시간 최대 강우량을 하향스케일링 하여 30분 최대 강우강도를 산출하여 강우침식인자를 산정한 결과, 기존의 $EI_{30}$$EI_{60}$의 상관관계식 및 연강수량을 이용한 추정방법보다 더 합리적임을 알 수 있었다.

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A Numerical Study on the Short-term Dispersion of Toxic Gaseous and Solid Pollutant in an Open Atmosphere : Chemical Species, Temperature, Relative Velocity (고-기상 독성오염물질 단기 대기확산에 관한 수치해석적 연구 : 화학종, 온도, 상대속도)

  • 나혜령;이은주;장동순;서영태
    • Journal of the Korean Society of Safety
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    • v.10 no.3
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    • pp.68-80
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    • 1995
  • A series of parametric calculations have been performed in order to investigate the short-term and short-range plume and puff behavior of toxic gaseous and solid pollutant dispersion in an open atmosphere. The simulation is made by the use of the computer program developed by this laboratory, in which a control-volume based finite-difference method is used together with the SIMPLEC algorithm for the resolution of the pressure-velocity coupling appeared In Wavier-Stokes equation. The Reynolds stresses are solved by the standard two-equation k-$\varepsilon$ model modified for buoyancy together with the RNG(Renormalization Group) k-$\varepsilon$ model. The major parameters considered in this calculation are pollutant gas density and temperature, the relative velocity of pollutants to that of the surrounding atmospheric air, and particulate size and density together with the height released. The flow field is typically characterized by the formation of a strong recirculation region for the case of the low density gases such as $CH_4$ and air due to the strong buoyancy, while the flow is simply declining pattern toward the downstream ground for the case of heavy molecule like the $CH_2C1_2$and $CCl_4$, even for the high temperature, $200^{\circ}C$. The effect of gas temperature and velocity on the flow field together with the particle trajectory are presented and discussed in detail. In general, the results are physically acceptable and consistent.

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Evaporation Characteristics of Oil and Abundance Ratio of Hydrocarbon Compounds at Different Temperatures (온도 변수에 대한 유류의 휘발특성 및 탄화수소 화합물의 존재비에 관한 연구)

  • Choi, Jung-Sik
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.27 no.7
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    • pp.1116-1123
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    • 2021
  • Oil spilled in seawater undergoes physical and chemical changes as well as biological degradation through various weathering processes, such as evaporation, diffusion, dispersion, emulsification, dissolution, oxidation, and sedimentation. Evaporation is one of the most immediate and prompt weathering processes, and it has the greatest influence on majority of pollutants. In this study, the evaporation characteristics of different oil samples were studied; the volatilization characteristics of gasoline, kerosene, and diesel were compared at average seawater (25 ℃) and near-equator (35 ℃) temperatures. The oil samples were pre-treated and then collected at regular intervals. Gas chromatography-mass spectrometry analysis was performed, and the changes in the amount of the hydrocarbons were calculated.

Distribution of Hyperbaric Oxygen Chamber for Noxious Gas Disaster in Korea (유독가스 발생 재난을 대비한 국내 고압산소기의 배치)

  • Wang, Soon-Joo;Kang, Pooreun
    • Proceedings of the Korean Society of Disaster Information Conference
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    • 2022.10a
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    • pp.381-382
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    • 2022
  • 국내에서 1980년대까지 연탄을 에너지로 많이 사용하면서 일산화탄소 중독이 빈번하여 고압산소치료가 활용되다가 이후 연탄 사용의 감소로 고압산소치료기가 대부분 활용되지 못하고 폐기되는 경우도 많았다. 이후 세월호 사고에서의 잠수사들에 대한 고압산소치료 적용, 가스누출이나 번개탄을 활용한 자살시도가 빈번해지며 고압산소치료기를 보유하고 있는 기관이 부족해 적절한 치료를 제 때 받지 못하여 고압산소치료기의 필요성이 되두되었다. 국내에서는 2021년 기준으로 한해 36,266 건의 화재가 발생하고 2020년에 365명이 화재로 사망하며, 화재로 인한 손상은 1,917건이었는데. 화재 시 여러 유독가스를 흡입하게 되고, 이에 따라 고압산소치료가 필수적으로 진행되어야 한다. 유해화학물질 사고, 대규모 오염, 다양한 교통수단에서의 대형 사고, 건축물 붕괴 사고 및 대규모 지진, 화산폭발 같은 자연재해 시에도 가스 중독이 발생하며, 이는 고압산소치료가 필요하게 된다. 따라서 다양한 종류의 재난에서 발생하는 유독가스 피해자에게 고압산소치료는 필수적이나 본 연구에 의하면 국내에는 고압산소치료챔버의 숫자와 동시에 고압산소치료로 수용할 수 있는 환자수에도 한계가 있고 그 분포의 불균형도 존재하고 있어 재난 시 인명 피해 감소의 기반 장비, 시설로서 고압산소챔버의 균형있는 확산, 적용이 시급한 실정이다. 다행히 최근 전국적으로 고압산소챔버가 증가하는 추세에 있어 그 현황과 배치 상황을 조사하여 이를 통하여 고압산소챔버가 필요한 유독가스 발행 재난에 대비할 수 있는 역량이 증가하고 있다.

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Analysis on Impacts of Renewable Energy Promotion on Mitigation of Air Pollution (신재생에너지의 확산이 대기오염 배출 저감에 미치는 영향 분석)

  • Bae, Jeong Hwan;Jung, Seo Rim
    • New & Renewable Energy
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    • v.16 no.3
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    • pp.13-26
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    • 2020
  • This study analyzed whether the diffusion of new and renewable energy contributed to mitigating emissions of various air pollutants, including particulate matter, using panel econometric models. The theoretical foundation of such econometric models is based on the Environmental Kuznets Curve (EKC) hypothesis, which assumes an inverted U-shaped relation between national income and environmental pollution, as originally proposed by Grossman and Krueger. We examined whether there are inverted U-, U-shaped, or N-shaped relations between national income and air pollution. We demonstrate that increases in new and renewable energy significantly mitigated emissions of CO, NOX, and PM2.5. Additionally, we included NOX, SOX, PM10, and VOCs as secondary emission sources of PM2.5 and found that emission of PM10 resulted in the highest PM2.5 emissions, followed by NOX and SOX emissions. The impact of new and renewable energy on air pollution varied across regions. Increase of new and renewable energy in the Honam region significantly mitigated CO, NOX, and TSP emissions, while that in the Youngnam and metropolitan areas did not significantly mitigate air pollution overall. There was a U-shaped relationship between air pollution and national income for CO, NOX, PM2.5, and SOX, while an inverted N-shape was observed for PM10.

Calculation of the Dispersion Coefficient by the Dissolution Experiment of DNAPL Pool (DNAPL Pool의 용해실험에 의한 분산계수 산정)

  • 정경영;배열호;최상일
    • Journal of Korea Soil Environment Society
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    • v.1 no.1
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    • pp.19-27
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    • 1996
  • Nonaqueous phase liquids(NAPL) not readily dissolved in water exist as a separate fluid phase. Groundwater contamination by NAPL such as organic solvents and petroleum hydrocarbons becomes major public concerns because of their long-term persistence in the subsurFace and their ability to contaminate large volumes of wate. Dense.-than-water NAPL(DNAPL) spilled into the subsurface penetrate through the saturated zone and ultimately form DNAPL pools on the bottom of the aquifer. The dissolution of DNAPL from these pools depends on the molecular diffusion coefficient, the vertical dispersivity, the groundwater velocity, the solubility, and the pool length. In this study, the vertical transverse dispersion coefficients for simulating the dissolution of DNAPL from such pools were obtained from the dissolution experiment. Under the experimental conditions used, the vertical transverse dispersion coefficients calculated were 1.86$cm^2$/day, 2.90$cm^2$/day and 4.51$cm^2$/4ay for seepage velocities of 59.2cm/day, 94.3cm/day and 158.0cm/day, respectively. And the vertical transverse dispersivity was 0.03024cm.

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