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SAR와 광학 영상을 이용한 동남극 Terra Nova Bay 폴리냐의 발달 특성 분석
김진영,김상희,한향선,Kim, Jinyeong,Kim, Sanghee,Han, Hyangsun 대한원격탐사학회 2022 大韓遠隔探査學會誌 Vol.38 No.6
Terra Nova Bay polynya (TNBP) is a representative coastal polynya in East Antarctica, which is formed by strong katabatic winds. As the TNBP is one of the major sea ice factory in East Antarctica and has a great impact on regional ocean circulation and surrounding marine ecosystem, it is very important to analyze its area change and development characteristics. In this study, we detected the TNBP from synthetic aperture radar (SAR) and optical images obtained from April 2007 to April 2022 by visually analyzing the stripes caused by the Langmuir circulation effect and the boundary between the polynya and surrounding sea ice. Then, we analyzed the area change and development characteristics of the TNBP. The TNBP occurred frequently but in a small size during the Antarctic winter (April-July) when strong katabatic winds blow, whereas it developed in a large size in March and November when sea ice thickness is thin. The 12-hour mean wind speed before the satellite observations showed a correlation coefficient of 0.577 with the TNBP area. This represents that wind has a significant effect on the formation of TNBP, and that other environmental factors might also affect its development process. The direction of TNBP expansion was predominantly determined by the wind direction and was partially influenced by the local ocean current. The results of this study suggest that the influences of environmental factors related to wind, sea ice, ocean, and atmosphere should be analyzed in combination to identify the development characteristics of TNBP.
KOMPSAT-3/3A 영상 기반 하천의 탁도 산출 연구
김다희,원유준,한상명,한향선,Kim, Dahui,Won, You Jun,Han, Sangmyung,Han, Hyangsun 대한원격탐사학회 2022 大韓遠隔探査學會誌 Vol.38 No.6
Turbidity, the measure of the cloudiness of water, is used as an important index for water quality management. The turbidity can vary greatly in small river systems, which affects water quality in national rivers. Therefore, the generation of high-resolution spatial information on turbidity is very important. In this study, a turbidity retrieval model using the Korea Multi-Purpose Satellite-3 and -3A (KOMPSAT-3/3A) images was developed for high-resolution turbidity mapping of Han River system based on eXtreme Gradient Boosting (XGBoost) algorithm. To this end, the top of atmosphere (TOA) spectral reflectance was calculated from a total of 24 KOMPSAT-3/3A images and 150 Landsat-8 images. The Landsat-8 TOA spectral reflectance was cross-calibrated to the KOMPSAT-3/3A bands. The turbidity measured by the National Water Quality Monitoring Network was used as a reference dataset, and as input variables, the TOA spectral reflectance at the locations of in situ turbidity measurement, the spectral indices (the normalized difference vegetation index, normalized difference water index, and normalized difference turbidity index), and the Moderate Resolution Imaging Spectroradiometer (MODIS)-derived atmospheric products(the atmospheric optical thickness, water vapor, and ozone) were used. Furthermore, by analyzing the KOMPSAT-3/3A TOA spectral reflectance of different turbidities, a new spectral index, new normalized difference turbidity index (nNDTI), was proposed, and it was added as an input variable to the turbidity retrieval model. The XGBoost model showed excellent performance for the retrieval of turbidity with a root mean square error (RMSE) of 2.70 NTU and a normalized RMSE (NRMSE) of 14.70% compared to in situ turbidity, in which the nNDTI proposed in this study was used as the most important variable. The developed turbidity retrieval model was applied to the KOMPSAT-3/3A images to map high-resolution river turbidity, and it was possible to analyze the spatiotemporal variations of turbidity. Through this study, we could confirm that the KOMPSAT-3/3A images are very useful for retrieving high-resolution and accurate spatial information on the river turbidity.
Sentinel-1 SAR 시계열 영상을 이용한 캐나다 앨버타 오일샌드 지역의 지표변위 분석
김태욱 ( Taewook Kim ),한향선 ( Hyangsun Han ) 대한원격탐사학회 2022 大韓遠隔探査學會誌 Vol.38 No.2
오일샌드 채굴에 널리 이용되고 있는 증기 주입식 중력 배수(Steam-Assisted Gravity Drainage, SAGD) 공법은 지표의 변형을 야기하며, 이는 오일샌드 플랜트의 안정성에 영향을 미칠 뿐만 아니라 다양한 지질 재해의 원인이 되므로 지속적인 모니터링이 필요하다. 이 연구에서는 캐나다 앨버타의 Athabasca 오일샌드 지역에 대해 2016년부터 2021년까지 획득된 Sentinel-1 시계열 영상레이더(synthetic aperture radar, SAR) 자료에 고정산란체 간섭기법(Permanent Scatterer Interferometric SAR, PSInSAR)을 적용하여 SAGD 운용에 의한 지표변위를 관측하였다. 그리고 SAGD의 건설 및 확장을 Landsat-7/8 시계열 영상으로부터 파악하고, 이를 통해 SAGD의 원유 생산성에 따른 지표변위의 특성을 분석하였다. Athabasca 오일샌드 지역의 SAGD 및 그 주변에서는 레이더 관측방향으로 0.3-2.5 cm/yr의 지반융기가 관측된 반면, SAGD에서 수 km 이상 떨어져 있고 오일샌드 채굴의 영향이 없는 지역에서는 -0.3--0.6 cm/yr의 침하가 관측되었다. Landsat-7/8 시계열 영상 분석을 통해 2012년 이후에 건설되어 높은 생산성을 보이는 SAGD는 증기의 주입으로 인해 1.6 cm/yr 이상의 지반융기를 야기하는 반면에 더 오랜 기간 동안 운용되어 생산성이 상대적으로 낮은 SAGD에서는 증기 주입에도 불구하고 지속적인 원유 회수에 따른 사암의 압축 때문에 연간 수 mm의 매우 작은 융기가 발생함을 추정할 수 있었다. SAGD 및 그 주변을 제외한 대부분의 지역에서 관측된 침하는 동토층의 융해에 의한 점진적 지반침하로 추정되었다. 동토층의 침하를 고려할 때 SAGD 운용에 기인하는 지반의 융기는 관측된 것보다 더 클 것이라고 예상되었다. 이 연구의 결과를 통해 PSInSAR 기법이 극한지 오일샌드 SAGD의 생산성과 안정성 평가에 유용한 수단으로 활용될 수 있음을 확인할 수 있었다. SAGD (Steam-Assisted Gravity Drainage) method is widely used for oil recovery in oil sands regions. The SAGD operation causes surface displacement, which can affect the stability of oil recovery plants and trigger various geological disasters. Therefore, it is important to monitor the surface displacement due to SAGD in the oil sands region. In this study, the surface displacement due to SAGD operations of the Athabasca oil sands region in Alberta, Canada, was observed by applying Permanent Scatterer Interferometric Synthetic Aperture Radar (PSInSAR) technique to the Sentinel-1 time series SAR data acquired from 2016 to 2021. We also investigated the construction and expansion of SAGD facilities from Landsat-7/8 time series images, from which the characteristics of the surface displacement according to the oil production activity of SAGD were analyzed. Uplift rates of 0.3-2.5 cm/yr in the direction of line of sight were observed over the SAGDs and their vicinity, whereas subsidence rates of -0.3--0.6 cm/yr were observed in areas more than several kilometers away from the SAGDs and not affected by oil recovery activities. Through the analysis of Landsat-7/8 images, we could confirm that the SAGDs operating after 2012 and showing high oil production activity caused uplift rates greater than 1.6 cm/yr due to the subsurface steam injection. Meanwhile, very small uplift rates of several mm per year occurred over SAGDs which have been operated for a longer period of time and show relatively low oil production activity. This was probably due to the compression of reservoir sandstone due to continuous oil recovery. The subsidence observed in areas except for the SAGDs and their vicinity estimated to be a gradual land subsidence caused by melting of the permafrost. Considering the subsidence, it was expected that the uplift due to SAGD operation would be greater than that observed by the PSInSAR. The results of this study confirm that the PSInSAR can be used as an effective means for evaluating productivity and stability of SAGD in the extreme cold regions.