• Title/Summary/Keyword: aerosol optical depth

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Changes in Aerosol Optical Depth during the Yellow Sand Events at Kwangju in 2000 (2000년 광주지역에서 황사로 인한 에어로졸의 광학적 두께 변화)

  • 김정은;류성윤;김영준
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2000.11a
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    • pp.400-401
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    • 2000
  • 황사는 대개 봄철 중국 대륙이 건조해지면서 중국 북부 사막 등의 흙먼지가 강한 상승기류를 타고 편서풍을 따라 우리 나라까지 날아오는 현상이다. 황사가 발생하면 시정이 떨어질 뿐 아니라 대기의 오염원으로 작용하여 질병을 유발시키기도 한다. 특히 황사로 인한 대기 중의 에어로졸 농도 증가는 지표에 도달하는 직달 일사량을 감소시켜 에어로졸의 광학적 두께에 영향을 준다. (중략)

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Seasonal Variation of Aerosol Optical Depth over Korea (한반도 배경지역 에어러솔 광학 깊이의 계절변화)

  • ;;;;;Brent N. Holben;Chuck McClain
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2003.11a
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    • pp.514-515
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    • 2003
  • 대기 중에 부유하는 에어러솔은 태양복사와 지구복사를 흡수 또는 산란 시키는 직접효과나 구름응결 핵으로 작용하여 구름의 생성과 수명에 영향을 주는 간접효과를 통하여 대기의 복사 평형에 불균형을 초래하고, 궁극적으로는 온실기체와 더불어 기후변화를 야기할 수 있는 중요한 원인물질로 알려져 있다(Ramanathan et al., 2001). (중략)

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Comparison of Atmospheric Aerosol Optical Depth measured at Kwangju, Seoul and Cheju using RSRs (Rotating Shadowband Radiometer) (광주, 서울, 제주의 RSR 측정을 통한 대기 에어로졸의 광학적 두께 비교)

  • 류성윤;김영준;민희경
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2000.04a
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    • pp.185-186
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    • 2000
  • 대기 중에 있는 에어로졸의 농도가 증가하면 직접·간접적으로 지구 복사 평형에 영향을 주어 기후 변화를 유도하게 된다 직접적 효과로는 에어로졸이 지구에 들어오는 태양빛을 산란 및 흡수에 의해 차단하여 지표에 도달하는 태양에너지를 감소시키게 된다. 간접적 효과로는 증가된 에어로졸의 일부가 구름 응결핵으로 작용하여 구름입자의 농도를 증가시키면 구름의 알베도 값이 증가되고 또한 구름의 수명에도 영향을 주어 구름의 량을 증가시키게 되고, 또한 구름의 수명에도 영향을 주어 구름의 량을 증가시키게 되고, 따라서 지구복사 뿐 아니라 물의 순환에도 영향을 미치게 된다. (중략)

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Investigation of Aerosol Optical Depth Retreived from GMS-5 During ACE-Asia 2001 : Case Study of Asian Dust Period (2001 ACE-Asia 기간동안에 관측된 GMS-5 위성에서의 에어러솔 광학두께: 황사사례를 중심으로)

  • 이권호;홍천상;김정은;류성윤;김영준;최병철;김지영
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2002.11a
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    • pp.442-443
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    • 2002
  • 인공위성에 의한 대기 에어러솔의 관측방법은 에어러솔이 기후에 미치는 영향의 평가에 있어서 중요한 요소가 되었다. 기본적으로 인공위성 원격탐사자료는 가시광선 영역역대의 밴드에서 대기중의 분자들이나 에어러솔에 의한 산란효과에 의해 영향을 받는다. 황사 현상과 같은 먼지구름은 인공위성 영상에서 쉽게 보이며 이러한 먼지 구름이 복사 강제 효과에 대한 기여도가 클 것으로 예측된다. (중략)

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Atmospheric Correction of Sentinel-2 Images Using GK2A AOD: A Comparison between FLAASH, Sen2Cor, 6SV1.1, and 6SV2.1 (GK2A AOD를 이용한 Sentinel-2 영상의 대기보정: FLAASH, Sen2Cor, 6SV1.1, 6SV2.1의 비교평가)

  • Kim, Seoyeon;Youn, Youjeong;Jeong, Yemin;Park, Chan-Won;Na, Sang-Il;Ahn, Hoyong;Ryu, Jae-Hyun;Lee, Yangwon
    • Korean Journal of Remote Sensing
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    • v.38 no.5_1
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    • pp.647-660
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    • 2022
  • To prepare an atmospheric correction model suitable for CAS500-4 (Compact Advanced Satellite 500-4), this letter examined an atmospheric correction experiment using Sentinel-2 images having similar spectral characteristics to CAS500-4. Studies to compare the atmospheric correction results depending on different Aerosol Optical Depth (AOD) data are rarely found. We conducted a comparison of Fast Line-of-sight Atmospheric Analysis of Spectral Hypercubes (FLAASH), Sen2Cor, and Second Simulation of the Satellite Signal in the Solar Spectrum - Vector (6SV) version 1.1 and 2.1, using Geo-Kompsat 2A (GK2A) Advanced Meteorological Imager (AMI) and Aerosol Robotic Network (AERONET) AOD data. In this experiment, 6SV2.1 seemed more stable than others when considering the correlation matrices and the output images for each band and Normalized Difference Vegetation Index (NDVI).

Vulnerability Assessment for Fine Particulate Matter (PM2.5) in the Schools of the Seoul Metropolitan Area, Korea: Part II - Vulnerability Assessment for PM2.5 in the Schools (인공지능을 이용한 수도권 학교 미세먼지 취약성 평가: Part II - 학교 미세먼지 범주화)

  • Son, Sanghun;Kim, Jinsoo
    • Korean Journal of Remote Sensing
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    • v.37 no.6_2
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    • pp.1891-1900
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    • 2021
  • Fine particulate matter (FPM; diameter ≤ 2.5 ㎛) is frequently found in metropolitan areas due to activities associated with rapid urbanization and population growth. Many adolescents spend a substantial amount of time at school where, for various reasons, FPM generated outdoors may flow into indoor areas. The aims of this study were to estimate FPM concentrations and categorize types of FPM in schools. Meteorological and chemical variables as well as satellite-based aerosol optical depth were analyzed as input data in a random forest model, which applied 10-fold cross validation and a grid-search method, to estimate school FPM concentrations, with four statistical indicators used to evaluate accuracy. Loose and strict standards were established to categorize types of FPM in schools. Under the former classification scheme, FPM in most schools was classified as type 2 or 3, whereas under strict standards, school FPM was mostly classified as type 3 or 4.

Atmospheric Aerosol Monitoring Over Northeast Asia During 2001 from MODIS and TOMS data (MODIS와 TOMS자료를 이용한 2001년 동북아시아 지역의 대기 에어로졸 모니터링)

  • 이권호;홍천상;김영준
    • Korean Journal of Remote Sensing
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    • v.20 no.2
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    • pp.77-89
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    • 2004
  • The spatial and temporal variations of aerosol optical depth (AOD) over Northeast Asia regions have special importance in the aerosol research for estimation of aerosol radiative forcing parameters and climate change. Aerosol optical and physical properties (AOD and ${\AA}$ngstrom parameter) have been investigated by using Moderate Resolution Imaging Spectroradiometer (MODIS) and Total Ozone Mapping Spectrometer (TOMS) Aerosol Index (AI) to estimate aerosol characteristics over the study region during 2001. Additionally, aerosol characteristics over the Korean peninsular during Aerosol Characteristic Experiment in Asia (ACE-Asia) Intensive Observation Period (IOP) have been investigated by using satellite observations. The results showed that the daily-observed aerosol data indicate seasonal variations with relatively higher aerosol loading in the spring and very low during the winter. The typical Asian dust case showed higher AOD (>0.7) with lower Angstrom exponent (<0.5) and higher AI (>0.5) that is mainly due to the composition of coarse particles in the springtime. Mean AOD for 2001 at 4 different places showed 0.65$\pm$0.37 at Beijing, 0.31$\pm$0.19 at Gosan, 0.54$\pm$0.26 at Seoul, and 0.38$\pm$0.19 at Kwangju, respectively. An interesting result was found in the present study that polluted aerosol events with small size dominated-aerosol loading around the Korean peninsular are sometimes observed. The origin of these polluted aerosols was thought to East China. Aerosol distribution from satellite images and trajectory results shows the proof of aerosol transport. Therefore, aerosol monitoring using satellite data is very useful.

The Detection of Yellow Sand Dust Using the Infrared Hybrid Algorithm

  • Kim, Jae-Hwan;Ha, Jong-Sung;Lee, Hyun-Jin
    • Proceedings of the KSRS Conference
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    • 2005.10a
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    • pp.370-373
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    • 2005
  • We have developed Hybrid algorithm for yellow sand detection. Hybrid algorithm is composed of three methods using infrared bands. The first method used the differential absorption in brightness temperature difference between $11\mu m\;and\;12\mu m$ (BID _1), through which help distinguish the yellow sand from various meteorological clouds. The second method uses the brightness temperature difference between $3.7\mu m\;and\;11\mu m$ (BID_2). The technique would be most sensitive to dust loading during the day when the BID _2 is enhanced by reflection of $3.7\mu m$ solar radiation. The third one is a newly developed algorithm from our research, the so-called surface temperature variation method (STY). We have applied the three methods to MODIS for derivation of the yellow sand dust and in conjunction with the Principle Component Analysis (PCA), a form of eigenvector statistical analysis. PCI shows better results for yellow sand detection in comparison with the results from individual method. The comparison between PCI and MODIS aerosols optical depth (AOD) shows remarkable good correlations during daytime and relatively good correlations over the land.

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Radiative Properties of Greenhouse Gases, Aerosols and Clouds in Korea

  • Moon, Yun-Seob;Bang, So-Young;Oh, Sung-Nam
    • Proceedings of the Korean Environmental Sciences Society Conference
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    • 2003.11a
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    • pp.51-54
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    • 2003
  • We analyzed radiative properties of aerosols, $CO^{2}$ and clouds using Optical Properties of Aerosols and Clouds(OPAC) and the Column Radiation Model (CRM). From OPAC, if the soot component is disregarded, dust-like components depict the highest extinction values in the solar spectral range and the lowest. single scattering albedoes, which are attributable to the presence of large particles. In the dust aerosol, the high absorptivity in the infrared may induce a warming of the lower atmospheric layer in the nighttime. The radiative properties of aerosols, clouds and double $CO^{2}$ using the CRM model at Seoul (37N, 127.4 E) on 3 April 2003 were calculated. The solar zenith angle is 65˚ and the surface albedo is 0.1836 during the clear day. The aerosol optical depth change 0.14 to 1.7, which is derived during Asian dust days in Korea. At this time, abedo by aerosols is considered as 0.3. In cloudy condition, the short wave cloud forcing on both the TOA and the surface is -193.89 $Wm^{-2}$ and -195.03 $Wm^{-2}$, respectively, and the long wave cloud forcing is 19.58 $Wm^{-2}$ and 62.08 $Wm^{-2}$, respectively. As a result, the net radiative cloud forcing is -174.31 $Wm^{-2}$ and -132.95 $Wm^{-2}$, respectively. We calculate also radiative heating rates by double $CO^{2}$ during the clear day. The $CO^{2}$ volumn mixing ratio is 3.55E-4.

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Investigation of SO2 Effect on TOMS O3 Retrieval from OMI Measurement in China (OMI 위성센서를 이용한 중국 지역에서 TOMS 오존 산출에 대한 이산화황의 영향 조사 연구)

  • Choi, Wonei;Hong, Hyunkee;Kim, Daewon;Ryu, Jae-Yong;Lee, Hanlim
    • Korean Journal of Remote Sensing
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    • v.32 no.6
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    • pp.629-637
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    • 2016
  • In this present study, we identified the $SO_2$ effect on $O_3$ retrieval from the Ozone Monitoring Instrument (OMI) measurement over Chinese Industrial region from 2005 through 2007. The Planetary boundary layer (PBL) $SO_2$ data measured by OMI sensor is used in this present study. OMI-Total Ozone Mapping Spectrometer (TOMS) total $O_3$ is compared with OMI-Differential Optical Absorption Spectrometer (DOAS) total $O_3$ in various $SO_2$ condition in PBL. The difference between OMI-TOMS and OMI-DOAS total $O_3$ (T-D) shows dependency on $SO_2$ (R (Correlation coefficient) = 0.36). Since aerosol has been reported to cause uncertainty of both OMI-TOMS and OMI-DOAS total $O_3$ retrieval, the aerosol effect on relationship between PBL $SO_2$ and T-D is investigated with changing Aerosol Optical Depth (AOD). There is negligible aerosol effect on the relationship showing similar slope ($1.83{\leq}slope{\leq}2.36$) between PBL $SO_2$ and T-D in various AOD conditions. We also found that the rate of change in T-D per 1.0 DU change in PBL, middle troposphere (TRM), and upper troposphere and stratosphere (STL) are 1.6 DU, 3.9 DU and 4.9 DU, respectively. It shows that the altitude where $SO_2$ exist can affect the value of T-D, which could be due to reduced absolute radiance sensitivity in the boundary layer at 317.5 nm which is used to retrieve OMI-TOMS ozone in boundary layer.