• 제목/요약/키워드: CALPUFF Modeling System

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미세먼지 확산 모델링을 이용한 대기질 예측 시스템에 대한 연구 (A Study on Fine Dust Modeling for Air Quality Prediction)

  • 유지현
    • 전기전자학회논문지
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    • 제24권4호
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    • pp.1136-1140
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    • 2020
  • 미세먼지로 인한 대기오염이 심각해지면서 미세먼지의 확산과 대기질의 예측에 대한 관심이 높아지고 있다. 미세먼지의 원인은 매우 다양한데, 일부 미세먼지는 산불, 황사 등을 통해 자연적으로 발생하기도 하지만 대부분은 석유, 석탄과 같은 화석연료를 태우거나 자동차 매연가스에서 나오는 대기오염물질에서 유발되는 것으로 알려져 있다. 본 논문에서는 미국 EPA에서 추천하는 CALPUFF 모델을 사용하고, CALPUFF에서 필요한 기상 요소인 3차원 바람장을 생성하는 기상 전처리 프로그램으로 CALMET 모델을 통해 바람장을 생성하여 CALPUFF 확산 모델링을 수행한다. 이를 통해 복잡한 지형을 반영한 미세먼지 확산모델링과 대기질 예측 시스템의 구조를 제안한다.

Modeling of SO$_2$ Emissions from Yatagan Power Plant

  • Im, Ulas;Yenigun, Orhan
    • 한국환경과학회:학술대회논문집
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    • 한국환경과학회 2003년도 International Symposium on Clean Environment
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    • pp.69-72
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    • 2003
  • The meteorological model, CALMET, and its plume dispersion model, CALPUFF, were used in order to simulate the dispersion of $SO_2$ emitted from Yatagan Power Plant and its effect on Yatagan district in the episodic event on December 2 and 3, 2000. It is found that south westerly and light winds and the nighttime surface inversion layers lead to accumulation of pollutants over Yatagan district. The results are compared with the measurements done by Local Environmental Authorities of Mu la. The simulation results indicate that the maximum ground level concentrations were found northeast from the source, which agrees with experimental measurement. On the other hand, the magnitude of results obtained with the model shows some differences compared with experimental measurements.

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Impact of boundary layer simulation on predicting radioactive pollutant dispersion: A case study for HANARO research reactor using the WRF-MMIF-CALPUFF modeling system

  • Lim, Kyo-Sun Sunny;Lim, Jong-Myung;Lee, Jiwoo;Shin, Hyeyum Hailey
    • Nuclear Engineering and Technology
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    • 제53권1호
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    • pp.244-252
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    • 2021
  • Wind plays an important role in cases of unexpected radioactive pollutant dispersion, deciding distribution and concentration of the leaked substance. The accurate prediction of wind has been challenging in numerical weather prediction models, especially near the surface because of the complex interaction between turbulent flow and topographic effect. In this study, we investigated the characteristics of atmospheric dispersion of radioactive material (i.e. 137Cs) according to the simulated boundary layer around the HANARO research nuclear reactor in Korea using the Weather Research and Forecasting (WRF)-Mesoscale Model Interface (MMIF)-California Puff (CALPUFF) model system. We examined the impacts of orographic drag on wind field, stability calculation methods, and planetary boundary layer parameterizations on the dispersion of radioactive material under a radioactive leaking scenario. We found that inclusion of the orographic drag effect in the WRF model improved the wind prediction most significantly over the complex terrain area, leading the model system to estimate the radioactive concentration near the reactor more conservatively. We also emphasized the importance of the stability calculation method and employing the skillful boundary layer parameterization to ensure more accurate low atmospheric conditions, in order to simulate more feasible spatial distribution of the radioactive dispersion in leaking scenarios.

Numerical Study on the Change of PM10 Profile by Asian dust

  • Cho, Chang-Bum;Kim, Yoo-Keun;Lee, Yong-Seob;Bang, So-Young
    • 한국환경과학회지
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    • 제16권5호
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    • pp.533-539
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    • 2007
  • The research was conducted to simulate and interpret the change of $PM_{10}$ profile by Asian dust using the CALPUFF modeling system for the period April 6 through 18, 2001. The results, which are represented a daily variation of $PM_{10}$ concentration before and after Asian dust, was located between a minimum concentration of $50{\mu}g/m^3$ and a maximum concentration of $100{\mu}g/m^3$, Most concentration peaks in the $PM_{10}$ profile were shown within a level below 500 m and had a pattern that rapidly increased up the peak and decreased after the peak to 1000 m. Even though the shapes of the vertical profile during Asian dust days were similar to non-Asian dust days, no rapid change vertically was observed. In particular, the vertical profile on 1200 LST and 1800 LST was noticeably shifted to the higher concentrations, which means $PM_{10}$ in the atmosphere was changed into a vertically and horizontally heterogeneous form under the Asian dust event. Finally, it is con-firmed that the simulation result from CALPUFF might schematically sketched atmospheric $PM_{10}$ profiles and their change by Asian dust throughout the comparison with profiles of aerosol extinction coefficients, which were acquired from Lidar measurement at KGAWO.

대구 안심연료단지 환경오염물질 노출 평가(I) - 환경성 진폐증 및 비산먼지 영향권역 - (Exposure Assessments of Environmental Contaminants in Ansim Briquette Fuel Complex, Daegu(I) - Effect zone of environmental pneumoconiosis and fugitive dust -)

  • 정종현;오인보;피영규;남미란;황미경;방진희;전수빈;이상섭;유승도;김병석;유석주;이관;임현술
    • 한국산업보건학회지
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    • 제25권3호
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    • pp.366-379
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    • 2015
  • Objectives: The objective of this study is to assess airborne particulate matter(PM) pollution and its effect on health of residents living near Ansim Briquette Fuel Complex in Daegu metropolitan region. Methods: The California Puff(CALPUFF) dispersion model, version 5.8, which can estimate the dispersion direction and range of airborn $PM_{10}$ was used to determine the possible areas affected by $PM_{10}$ pollutants emitted from Ansim briquette fuel complex. The CALPUFF modeling with 200 m grid-cell resolution was performed based on $PM_{10}$ emissions estimated from the amount of coal consumption in the fuel complex for four months in 2012. The Weather Research and Forecasting(WRF) fields were processed using CALMET to produce CALPUFF-ready meteorological inputs. Also, the distance from Ansim Briquette Fuel Complex to the residence of each environmental pneumoconiosis patient was analyzed. In addition, the affecting region of the pollutants emitted from briquette factories in Ansim Briquette Fuel Complex was determined. Results: CALPUFF modeling results showed that the highest concentrations of $PM_{10}$ were found near around the fuel complex. The modeled $PM_{10}$ distributions were characterized by significant decreases in concentration with distance from the complex. Seasonally, the highest concentration of $45{\mu}g/m^3$ was calculated in October which was mostly due to the distinct variation of amount of emission. Additional modeling with the maximum $PM_{10}$ emission of about 88 tons per year in 1986 showed that the highest concentration in October was nearly increased by 8 times than the concentration modeled with emission of 2010. As a result of medical examination and interviews for the residents in Ansim Briquette Fuel Complex and its surroundings, 8 environmental pneumoconiosis patients were found. These patients do not have occupational exposure and history. These patients have lived 0.3~1.1 km area in Ansim Briquette Fuel Complex and its surroundings. Conclusions: Airborne particles emitted from Ansim Briquette Fuel Complex can contribute to significant increase in $PM_{10}$ concentration in residential areas near around the complex. Especially, the residents near fuel complex may exposed to the pollutants emitted from the factories in Ansim Briquette Fuel Complex.

양산시 산업단지에서 측정한 악취물질의 농도 분포 특성 및 대기확산 모델링 (Characteristics of Malodor Pollutants and Their Dispersion Measured in Several Industrial Source Regions in Yangsan)

  • 송상근;손장호;김유근;박흥재
    • 한국환경과학회지
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    • 제18권10호
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    • pp.1103-1114
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    • 2009
  • In this study, the environmental behavior of malodor pollutants (MPs: $H_2S$, $CH_3SH$, DMS, and DMDS) was investigated around areas influenced by strong anthropogenic processes based on observations and modeling study (a CALPUFF dispersion model). The MP emission concentrations were measured from 8 industrial source regions (tire plants (S1-S3), waste water disposal plant (S4), and oil refinery (S5) in an urban center area and paper mill/incineration plant (S6) and livestock feedlots (S7-S8) in Ungsang area) in Yangsan city during a fall period in 2008 (21 October 2008). Overall, the most MPs emitted from the urban center area were found to affect the malodor pollution in their downwind areas during early morning (06:00 LST) and nighttime (18:00 and 21:00 LST), compared with those in the Ungsang area. For malodor intensity, the most MPs in the urban center area (especially S1 and S2) were found to be a significant contributor, whereas $CH_3SH$ and $H_2S$ in the Ungsnag area (especially S6) were the dominant contributor. The model study showed agreement in the spatial distributions of simulated MPs with those of the observations. The largest impact of MPs in the urban center area on the malodor pollution in its residential areas occurred at S1, S2, and S3 sites during nighttime, while that of MPs in the Ungsang area occurred at S6 and S8 sites. This may be caused mainly by the high MP emissions and in part by wind conditions (prevailing northeasterly winds with low wind speeds of 2-3 m/s).

A Numerical Study on the Vertical Distribution of PM concentration during Asian Dust

  • Cho, Changbum;Kim, Yoo-Keun;Lim, Yunkyu;Lee, Pyeongkeun;Oh, Sung-Nam
    • 한국대기환경학회:학술대회논문집
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    • 한국대기환경학회 2003년도 추계학술대회 논문집
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    • pp.51-52
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    • 2003
  • A numerical study on PM using a dispersion and deposition model which can analyze for both quantify and quality would not only offer us to understand our environment more easily, but also make it easy that we can make a plan in order to prevent air pollution. The U.S. EPA has proposed the CALPUFF modeling system as a guideline model for regulatory applications involving long-range transport and on a case-by-case basis for near-field applications where. non- steady- state effects which consider situations such as spatial variability in the meteorological fields, calm winds, fumigations, re-circulation or stagnation, and terrain or coastal effects may be important. (omitted)

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인천항의 선박오염원에서 배출된 대기오염물질의 확산 (Dispersion of Air Pollutants from Ship Based Sources in Incheon Port)

  • 김광호;권병혁;김민성;이돈출
    • 해양환경안전학회지
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    • 제23권5호
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    • pp.488-496
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    • 2017
  • 선박의 오염물질 배출에 대한 규제는 최근 IMO/MEPC(국제해사기구/해양환경보호위원회)를 통해서 진행 중이다. 선박오염원에서 배출된 오염물질은 국지적인 요인에 의해서 연안지역을 비롯하여 육지로 확산될 수 있다. 인천과 같이 선박 배출 오염물질에 노출되어 있는 항구 도시에서 선박오염원 조절은 연안지역의 대기질 관리정책을 효율적으로 고안하기 위해서 반드시 필요하다. 연안지역의 대기오염물질 중 선박에 의한 NOx와 SOx의 농도는 전체 NOx와 SOx 농도의 각각 14 %와 10 %를 차지한다(NIER, 2008). 연안도시지역의 대기질은 국지적인 순환에 의존하는 오염물질의 확산 경향과 선박의 수에 영향을 받는다. 선박오염원으로부터 배출된 오염물질의 확산을 WRF(Weather Research and Forecasting model)의 기상장을 기초로 CALPUFF(California Puff model)를 사용하여 분석하였다. 그리고 연안도시지역의 대기확산모델은 정박한 선박과 입 출항하는 선박으로 나누어 각각 점오염원과 선오염원으로 구분하여 모의하였다. 선박척수 82~84척을 기준으로 NOx의 총 평균 배출량은 입 출항시 각각 6.2 g/s, 6.8 g/s이었고, SOx의 총 평균 배출량은 입 출항시 각각 3.6 g/s, 5.1 g/s 이었다. 정박 중인 선박의 NOx와 SOx에 대한 총 평균 배출량은 각각 0.77 g/s, 1.93 g/s이었다. 육풍의 영향으로 인하여 인천항으로부터 내륙으로 진행되는 오염물질의 수송이 억제되었고, 내륙의 SOx와 NOx 농도가 일시적으로 감소하는 원인이 되었다. 해풍에 의해 NOx와 SOx가 내륙으로 확산되었고, 내륙의 NOx와 SOx의 농도가 점차 증가하였다. 인천항과 인접한 지역의 오염물질의 농도는 해륙풍의 영향보다 인천항에 정박 중인 선박오염원에 의한 영향이 더욱 크게 반영되었다. 본 연구는 연안도시지역의 대기질 정책고안과 배출기준을 정하는 것에 유용할 것으로 기대된다.