• 제목/요약/키워드: cloud observation data

검색결과 129건 처리시간 0.026초

위성관측 오존계에서 최소 반사도법을 이용하여 동아시아 지역의 지면반사도 산출 (Surface Reflectance Retrieval from Satellite Observation (OMI) over East Asia Using Minimum Reflectance Method)

  • 신희우;유정문;이권호
    • 한국지구과학회지
    • /
    • 제40권3호
    • /
    • pp.212-226
    • /
    • 2019
  • 극궤도 위성(Aura)에 탑재되어 운용 중인 Ozone Monitoring Instrument (OMI)를 이용하여 동아시아 지역에 대한 등가 람버시안 반사도(Lambertian Equivalent Reflectance; LER)를 유도하였다. 본 연구의 LER 기후값(2004년 10월-2007년 9월)은 기존 OMI 및 MODIS 결과와 다음 대기환경 변수의 관점에서 비교분석되었다. 파장(자외선, 가시광선), 지표 특성(육지, 해양), 그리고 구름 제거. 자외선 및 가시광선 파장역(328-500 nm)에서 산출된 LER은 최소 반사도뿐만 아니라 세 종류 하위 평균(1, 5, 10% 이내)으로 산출되었다. 이들 중에 10% 평균값이 OMI 결과와 가장 잘 일치하였다. 여기서 상관계수는 0.88, 평균 제곱근 오차는 1.0%. 그리고 평균 편차는 -0.3%이었다. 10% 평균값과 기존 OMI LER값은 해양에서 가시광선에 비하여 자외선 영역에서 큰(~2%) 반면에 육지에서는 작게(~1%) 나타났다. 또한 파장 및 지표 특성에 따른 LER 변동폭은 육지 및 가시광선 조건에서, 특히 만년설 및 사막 지역에서 크게 나타났다(~3%). 최소 반사도값은 해양 및 육지의 표본 지역에서 MODIS에 비하여 약 1.4% 과대 산출되었다. 이러한 원인은 고해상도 MODIS 자료에서의 효과적인 구름 제거에 있다고 분석되었다. MODIS에 대한 10% 평균값의 상대 오차는 기존 OMI 산출물에 비하여 해양에서 작았으나(-0.6%) 육지에서는 컸다(1.5%). OMI 산출물 경우에 육지에서의 작은 상대 오차는 Landsat 자료 이용한 효과적인 구름 제거에 있다고 추정되었다. 본 연구는 정지궤도 환경위성(예, GEMS) 관측을 이용한 지면반사도 산출에 기여할 것으로 기대된다.

구름미세물리 모수화 방안 내 빗방울의 특성을 정의하는 매개변수가 한반도 여름철 강수 모의에 미치는 영향 (Effects of Parameters Defining the Characteristics of Raindrops in the Cloud Microphysics Parameterization on the Simulated Summer Precipitation over the Korean Peninsula)

  • 김기병;김권일;이규원;임교선
    • 대기
    • /
    • 제34권3호
    • /
    • pp.305-317
    • /
    • 2024
  • The study examines the effects of parameters that define the characteristics of raindrops on the simulated precipitation during the summer season over Korea using the Weather Research and Forecasting (WRF) Double-Moment 6-class (WDM6) cloud microphysics scheme. Prescribed parameters, defining the characteristics of hydrometeors in the WDM6 scheme such as aR, bR, and fR in the fall velocity (VR) - diameter (DR) relationship and shape parameter (𝜇R) in the number concentration (NR) - DR relationship, presents different values compared to the observed data from Two-Dimensional Video Disdrometer (2DVD) at Boseong standard meteorological observatory during 2018~2019. Three experiments were designed for the heavy rainfall event on August 8, 2022 using WRF version 4.3. These include the control (CNTL) experiment with original parameters in the WDM6 scheme; the MUR experiment, adopting the 50th percentile observation value for 𝜇R; and the MEDI experiment, which uses the same 𝜇R as MUR, but also includes fitted values for aR, bR, and fR from the 50th percentile of the observed VR - DR relationship. Both sensitivity experiments show improved precipitation simulation compared to the CNTL by reducing the bias and increasing the probability of detection and equitable threat scores. In these experiments, the raindrop mixing ratio increases and its number concentration decreases in the lower atmosphere. The microphysics budget analysis shows that the increase in the rain mixing ratio is due to enhanced source processes such as graupel melting, vapor condensation, and accretion between cloud water and rain. Our study also emphasizes that applying the solely observed 𝜇R produces more positive impact in the precipitation simulation.

Google Earth Engine 기반의 한반도 토양수분 모니터링 자동화 기법 연구 (A study on automated soil moisture monitoring methods for the Korean peninsula based on Google Earth Engine)

  • 장원진;정지훈;이용관;김진욱;김성준
    • 한국수자원학회논문집
    • /
    • 제57권9호
    • /
    • pp.615-626
    • /
    • 2024
  • 본 연구에서는 우리나라 전역에 대해 정확하고 시간 및 비용 효율적으로 토양수분 모니터링을 수행하기 위해 클라우드 컴퓨팅 플랫폼 Google Earth Engine (GEE)와 자동화기계학습(Automated Machine Learning, AutoML)을 결합한 토양수분 산정모형을 개발하였다. Terra MODIS (Moderate Resolution Imaging Spectroradiometer), 전구 강수 관측 위성 GPM (Global Precipitation Measurement)을 기반으로 다양한 공간정보를 활용해 최적의 입력 자료 조합을 테스트하였다. 그 결과, GPM 기반의 무강우누적일수 및 5일 평균강수량, NDVI (Normalized Difference Vegetation Index)와 밤 및 낮시간에 촬영된 LST (Land Surface Temperature)의 합계, 토양특성(사토 및 점토 함량, 용적밀도), 지형자료(고도 및 경사도), 계절 구분이 변수중요도(Feature importance)가 높은 것으로 나타났다. 상기 자료의 조합을 AutoML 통해 목적함수 (Determination of coefficient, R2 ; Root Mean Square Error, RMSE; Mean Absolute Percent Error, MAPE)를 설정 후 기계학습 기법별 비교평가를 수행한 결과, Tree 계열의 모형이 높은 성능을 보였으며, 그 중, Random Forest의 성능이 가장 우수하였다(R2 : 0.72, RMSE: 2.70 vol%, MAPE: 0.14).

Retrieval of Key Hydrological Parameters in the Yellow River Basin Using Remote Sensing Technique

  • Dong, Jiang;Jianhua, Wang;Xiaohuan, Yang;Naibin, Wang
    • 대한원격탐사학회:학술대회논문집
    • /
    • 대한원격탐사학회 2002년도 Proceedings of International Symposium on Remote Sensing
    • /
    • pp.721-727
    • /
    • 2002
  • Precipitation evapotranspiration and runoff are three key parameters of regional water balance. Problems exist in the traditional methods for calculating such factors , such as explaining of the geographic rationality of spatial interpolating methods and lacking of enough observation stations in many important area for bad natural conditions. With the development of modern spatial info-techniques, new efficient shifts arose for traditional studies. Guided by theories on energy flow and materials exchange within Soil-Atmosphere-Plant Continuant (SPAC), retrieval models of key hydrological parameters were established in the Yellow River basin using CMS-5 and FengYun-2 meteorological satellite data. Precipitation and evapotranspiration were then estimated: (1) Estimating tile amount of solar energy that is absorbed by the ground with surface reflectivity, which is measured in the visible wavelength band (VIS): (2) Assessing the partitioning of the absorbed energy between sensible and latent heat with the surface temperature, which was measured in the thermal infrared band (TIR), the latent heat representing the evapotranspiration of water; (3) Clouds are identified and cloud top levels are classified using both VIS and TIR data. Hereafter precipitation will be calculated pixel by pixel with retrieval model. Daily results are first obtained, which are then processed to decade, monthly and yearly products. Precipitation model has been has been and tested with ground truth data; meanwhile, the evapotranspiration result has been verified with Large Aperture Scintillometry (LAS) presented by Wageningen University of the Netherlands. Further studies may concentrate on the application of models, i.e., establish a hydrological model of the Yellow river basin to make the accurate estimation of river volume and even monitor the whole hydrological progress.

  • PDF

Precision monitoring of radial growth of trees and micro-climate at a Korean Fir (Abies koreana Wilson) forest at 10 minutes interval in 2016 on Mt. Hallasan National Park, Jeju Island, Korea

  • Kim, Eun-Shik;Cho, Hong-Bum;Heo, Daeyoung;Kim, Nae-Soo;Kim, Young-Sun;Lee, Kyeseon;Lee, Sung-Hoon;Ryu, Jaehong
    • Journal of Ecology and Environment
    • /
    • 제43권2호
    • /
    • pp.226-245
    • /
    • 2019
  • To understand the dynamics of radial growth of trees and micro-climate at a site of Korean fir (Abies koreana Wilson) forest on high-altitude area of Mt. Hallasan National Park, Jeju Island, Korea, high precision dendrometers were installed on the stems of Korean fir trees, and the sensors for measuring micro-climate of the forest at 10 minutes interval were also installed at the forest. Data from the sensors were sent to nodes, collected to a gateway wireless, and transmitted to a data server using mobile phone communication system. By analyzing the radial growth data for the trees during the growing season in 2016, we can estimate that the radial growth of Korean fir trees initiated in late April to early May and ceased in late August to early September, which indicates that period for the radial growth was about 4 months in 2016. It is interesting to observe that the daily ambient temperature and the daily soil temperature at the depth of 20 cm coincided with the values of about 10 ℃ when the radial growth of the trees initiated in 2016. When the radial growth ceased, the values of the ambient temperature went down below about 15 ℃ and 16 ℃, respectively. While the ambient temperature and the soil temperature are evaluated to be the good indicators for the initiation and the cessation of radial growth, it becomes clear that radii of tree stems showed diurnal growth patterns affected by diurnal change of ambient temperature. In addition, the wetting and drying of the surface of the tree stems affected by precipitation became the additional factors that affect the expansion and shrinkage of the tree stems at the forest site. While it is interesting to note that the interrelationships among the micro-climatic factors at the forest site were well explained through this study, it should be recognized that the precision monitoring made possible with the application of high resolution sensors in the measurement of the radial increment combined with the observation of 10 minutes interval with aids of information and communication technology in the ecosystem observation.

기상모델자료와 기계학습을 이용한 GK-2A/AMI Hourly AOD 산출물의 결측화소 복원 (Spatial Gap-filling of GK-2A/AMI Hourly AOD Products Using Meteorological Data and Machine Learning)

  • 윤유정;강종구;김근아;박강현;최소연;이양원
    • 대한원격탐사학회지
    • /
    • 제38권5_3호
    • /
    • pp.953-966
    • /
    • 2022
  • 에어로솔(aerosol)은 대기 질을 악화시키는 등 인체 건강에 악영향을 끼치므로 에어로솔의 분포 및 특성에 대한 정량적인 관측이 필수적이다. 최근 전 지구 규모에서의 주기적이고 정량적인 정보 획득 수단으로 위성관측 Aerosol Optical Depth (AOD) 영상이 다양한 연구에 활용되지만 광학센서 기반의 위성 AOD 영상은 구름 등의 조건을 가진 일부 지역에서 결측을 가진다. 이에 본 연구는 위성자료의 결측복원을 위하여 격자형 기상자료와 지리적 요소를 입력변수로 하여 Random Forest (RF) 기반 gap-filling 모델을 생성한 이후, gap-free GK-2A/AMI AOD hourly 영상을 산출하였다. 모델의 정확도는 -0.002의 Mean Bias Error (MBE), 0.145의 Root Mean Square Error (RMSE)로, 원자료의 목표 정확도보다 높으며 상관계수 0.714로 복원 대상이 대기변수인 점을 감안하면 상관계수 측면에서도 충분한 설명력을 갖춘 모델이다. 정지궤도 위성의 높은 시간 해상도는 일변화 관측에 적합하며 대기보정을 위한 입력, 지상 미세먼지 농도 추정, 소규모 화재 또는 오염원 분석 등 타 연구를 위한 자료 활용 측면에서 중요하다.

두 복사전달모델 RTTOV와 CRTM으로부터 산출된 밝기온도와 관측된 밝기온도의 비교 (A Comparison of Observed and Simulated Brightness Temperatures from Two Radiative Transfer Models of RTTOV and CRTM)

  • 김주혜;강전호;이시혜
    • 한국지구과학회지
    • /
    • 제35권1호
    • /
    • pp.19-28
    • /
    • 2014
  • RTTOV와 CRTM은 복사관측자료에 대한 관측연산자로 수치예보에 활용되고 있는 빠른 속도의 복사전달모델이다. 본 연구에서는 두 모델의 기본구조 및 입력자료를 비교했다. 또한, 다양한 파장대를 가진 AMSU-A 마이크로파 센서에 대해 구름에 대한 정보를 포함할 때와 포함하지 않을 때 두 모델로부터 계산된 밝기온도와 관측된 밝기온도를 해양에 대해 비교했다. AMSU-A의 탐측채널(5-14)에 대해서는 두 모델로부터 계산된 밝기온도 값에 큰 차이가 존재하지 않았으나, 대기의 창 채널 및 지표근처의 탐측채널에서는 RTTOV로부터 계산된 밝기온도 값이 관측과 더 가까워 CRTM에 비해 상대적으로 작은 초기추정오차를 보였다. 한편 UM으로부터 제공된 구름물과 얼음의 정보를 추가적으로 활용하였을 때 두 모델로부터 계산된 밝기온도와 관측된 밝기온도의 차이가 감소함을 확인할 수 있었고, 특히 CRTM의 31.4 GHz와 89 GHz 채널에서 모의된 밝기온도와 관측된 밝기온도의 차이가 크게 감소했다.

Fog Sensing over the Korean Peninsula Derived from Satellite Observation of MODIS and GOES-9

  • Yoo, Jung-Moon;Jeong, Myeong-Jae;Yoo, Hye-Lim;Rhee, Ju-Eun;Hur, Young-Min;Ahn, Myoung-Hwan
    • 대한원격탐사학회지
    • /
    • 제22권5호
    • /
    • pp.373-377
    • /
    • 2006
  • Seasonal threshold values for fog detection over the ten airport areas in the Korean Peninsula have been derived, using the satellite-observed data of polar-orbit (Aqua/Terra MODIS) and geostationary (GOES-9) during two years. The values are obtained from reflectance at $0.65{\mu}m\;(R_{0.65})$ and the difference in brightness temperature between $3.7{\mu}m\;and\;11{\mu}m\;(T_{3.7-11})$. In order to examine the discrepancy between the threshold values of two kinds of satellites, the following parameters have been analyzed under the condition of daytime/nighttime and fog/clear-sky, utilizing their simultaneous observations over the Seoul Metropolitan Area. The parameters are the brightness temperature at $3.7{\mu}m\;(T_{3.7})$, the temperature at $11{\mu}m\;(T_{11}$, and $T_{3.7-11}$ for day and night. The $R_{0.65}$ data are additionally included in the daytime. The GOES-9 thresholds over the seven airport areas except the Cheongju airport have revealed the accuracy of 50% in the daytime and 70% in the nighttime, based on statistical verification for the independent samples as follows; FAR, POD and CSI. However, the accuracy decreases in the foggy cases with twilight, precipitation, short persistence, or the higher cloud above fog.

무인항공기를 활용한 농촌 지역자원의 물리적 환경변화 분석연구 - 홍성군 갈산면 지역자원을 중심으로 - (A Study on the Changes in the Physical Environment of Resources in Rural Areas Using UAV -Focusing on Resources in Galsan-Myeon, Hongseong-gun-)

  • 안필균;김상범;조숙영;엄성준;김용균;조한솔
    • 한국농촌건축학회논문집
    • /
    • 제23권4호
    • /
    • pp.1-12
    • /
    • 2021
  • Recently, the use of unmanned aerial vehicles (UAVs) is increasing in the field of land information acquisition and terrain exploration through high-altitude aerial photography. High-altitude aerial photography is suitable for large-scale geographic information collection, but has the disadvantage that it is difficult to accurately collect small-scale geographic information. Therefore, this study used low-altitude UAV to monitor changes in small rural spaces around rural resources, and the results are as follows. First, the low-altitude aerial imagery had a very high spatial resolution, so it was effective in reading and analyzing topographic features. Second, an area with a large number of aerial images and a complex topography had a large amount of point clouds to be extracted, and the number of point clouds affects the three-dimensional quality of rural space. Third, 3D mapping technology using point cloud is effective for monitoring rural space and rural resources because it enables observation and comparison of parts that cannot be read from general aerial images. In this study, the possibility of rural space analysis of low-altitude UAV was verified through aerial photography and analysis, and the effect of 3D mapping on rural space monitoring was visually analyzed. If data acquired by low-altitude UAV are used in various forms such as GIS analysis and topographic map production it is expected to be used as basic data for rural planning to maintain and preserve the rural environment.

파장별 지표 자외선 복사량을 이용한 SARS-CoV-2 바이러스 비활성화 시간 추정 연구 (Estimation of the SARS-CoV-2 Virus Inactivation Time Using Spectral Ultraviolet Radiation)

  • 박선주;이윤곤;박상서
    • 대기
    • /
    • 제32권1호
    • /
    • pp.51-60
    • /
    • 2022
  • Corona Virus Disease 19 pandemic (COVID-19) causes many deaths worldwide, and has enormous impacts on society and economy. The COVID-19 was caused by a new type of coronavirus (Severe Acute Respiratory Syndrome Cornonavirus 2; SARS-CoV-2), which has been found that these viruses can be effectively inactivated by ultraviolet (UV) radiation of 290~315 nm. In this study, 90% inactivation time of the SARS-CoV-2 virus was analyzed using ground observation data from Brewer spectrophotometer at Yonsei University, Seoul and simulation data from UVSPEC for the period of 2015~2017 and 2020. Based on 12:00-13:00 noon time, the shortest virus inactivation time were estimated as 13.5 minutes in June and 4.8 minutes in July/August, respectively, under all sky and clear sky conditions. In the diurnal and seasonal variations, SARS-CoV-2 could be inactivated by 90% when exposed to UV radiation within 60 minutes from 10:00 to 14:00, for the period of spring to autumn. However, in winter season, the natural prevention effect was meaningless because the intensity of UV radiation weakened, and the time required for virus inactivation increased. The spread of infectious diseases such as COVID-19 is related to various and complex interactions of several variables, but the natural inactivation of viruses by UV radiation presented in this study, especially seasonal differences, need to be considered as major variables.