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      • KCI등재

        인공위성 영상레이더를 이용한 멕시코시티 시계열 지반침하 관측

        주정헌 ( Jeongheon Ju ),홍상훈 ( Sang-hoon Hong ) 대한원격탐사학회 2021 大韓遠隔探査學會誌 Vol.37 No.6

        지반침하는 인위적인 인간 활동 또는 자연적 현상에 의해 지표면이 가라앉는 현상이다. 멕시코시티는 전세계에서 가장 심각한 지반침하가 발생하는 지역 중 하나로 평가받고 있다. 멕시코시티 지반침하의 원인은 과도한 지하수 채취로서 해당 지역 전체의 물 사용량의 약 70%를 지하수가 차지하고 있다. 범 지구 위성 항법 시스템(Global Navigation Satellite System, GNSS) 또는 수준측량과 같은 전통적인 현장 관측 방법은 지반침하를 정확하게 측정하기 위해 선호되어 왔다. 하지만 GNSS 관측은 매우 높은 시간해상도를 가진 정확한 지표 변위량을 측정할 수 있음에도 불구하고, 넓은 지역에 대한 부분적인 관측 정보를 제공하고 많은 시간과 비용이 요구되는 한계점이 존재한다. 그러나, 인공위성 영상레이더(Synthetic Aperture Radar, SAR)는 주야 조건과 기상상태에 관계없이 높은 공간 해상도의 지표변화 정보를 mm에서 cm 크기의 정밀도로 비교적 낮은 비용으로 관측할 수 있다는 점에서 효과적인 방법으로 제시되고 있다. 본 연구에서는 2007년 2월 11일에서 2011년 2월 22일까지 획득된 ALOS PALSAR L-band 영상레이더를 이용하여 멕시코시티의 지반 침하 시계열을 추정하였다. 본 연구에서는 대표적인 시계열 분석 방법인 고정 산란체 위상간섭기법(persistent scatterer interferometry, PSI)과 small baseline subset (SBAS)을 적용하여 지표 변위의 시계열 결과를 획득하였으며 대기 효과 및 지형 오차를 제거하였다. PSI 및 SBAS 기법을 이용한 분석 결과 최대 지반침하 속도는 각각 -29.5 cm/year, -27.0 cm/year로 나타났다. 또한 연구지역을 지질 공학적 특성에 따라 세 가지 구역으로 분류하여 각 분류에서의 지반 침하 속도를 비교한 결과, 단단한 기반암으로 구성된 지역에 비해 압축률이 큰 호수성 퇴적물로 구성된 지역에서 침하가 크게 발생하였다. Anthropogenic activities and natural processes have been causes of land subsidence which is sudden sinking or gradual settlement of the earth’s solid surface. Mexico City, the capital of Mexico, is one of the most severe land subsidence areas which are resulted from excessive groundwater extraction. Because groundwater is the primary water resource occupies almost 70% of total water usage in the city. Traditional terrestrial observations like the Global Navigation Satellite System (GNSS) or leveling survey have been preferred to measure land subsidence accurately. Although the GNSS observations have highly accurate information of the surfaces’ displacement with a very high temporal resolution, it has often been limited due to its sparse spatial resolution and highly time-consuming and high cost. However, space-based synthetic aperture radar (SAR) interferometry has been widely used as a powerful tool to monitor surfaces’ displacement with high spatial resolution and high accuracy from mm to cm-scale, regardless of day-or-night and weather conditions. In this paper, advanced interferometric approaches have been applied to get a time-series of land subsidence of Mexico City using four-year-long twenty ALOS PALSAR L-band observations acquired from Feb-11, 2007 to Feb-22, 2011. We utilized persistent scatterer interferometry (PSI) and small baseline subset (SBAS) techniques to suppress atmospheric artifacts and topography errors. The results show that the maximum subsidence rates of the PSI and SBAS method were -29.5 cm/year and -27.0 cm/year, respectively. In addition, we discuss the different subsidence rates where the study area is discriminated into three districts according to distinctive geotechnical characteristics. The significant subsidence rate occurred in the lacustrine sediments with higher compressibility than harder bedrock.

      • KCI등재

        Evaluation of Ku-band Ground-based Interferometric Radar Using Gamma Portable Radar Interferometer

        정희정,홍상훈,이제윤,송세훈,정성우,주정헌 대한원격탐사학회 2023 大韓遠隔探査學會誌 Vol.39 No.1

        The Gamma Portable Radar Interferometer (GPRI) is a ground-based real aperture radar (RAR) thatcan acquire images with high spatial and temporal resolution. The GPRI ground-based radar used in this studycomposes three antennas with a Ku-band frequency of 17.1–17.3 GHz (1.73–1.75 cm of wavelength). It canmeasure displacement over time with millimeter-scale precision. It is also possible to adjust the observationmode by arranging the transmitting and receiving antennas for various applications: i) obtaining differentialinterferograms through the application of interferometric techniques, ii) generation of digital elevation modelsand iii) acquisition of full polarimetric data. We introduced the hardware configuration of the GPRI ground-based radar, image acquisition, and characteristics of the collected radar images. The interferometric phasedifference has been evaluated to apply the multi-temporal interferometric SAR application (MT-InSAR) usingthe first observation campaigns at Pusan National University in Geumjeong-gu, Busan.

      • KCI등재

        Polybrominated Diphenyl Ethers Orally Administration to Mice were Tansferred to Offspring during Gestation and Lactation with Disruptions on the Immune System

        박귀래,손경희,김인영,이종권,김진호,임채형,한범석,정화철,이진용,홍승근,주정헌 대한면역학회 2010 Immune Network Vol.10 No.2

        The present study was undertaken to examine the immunological effects of pentabrominated diphenyl ether (penta-BDE) and decabrominated diphenyl ether (deca-BDE) on the immune system of the dams and the developmental immune system of the offsprings. In this study, mated female C57BL/6J mice were orally administered penta-BDE,deca-BDE or corn oil for 5 weeks, from gestational day 6 to lactational day 21. The body weight of PND21 exposed to penta-BDE was significantly decreased relative to control mice, but that of post-natal day 63 (PND63) were recovered. Orally dosed dams with penta-BDE had significantly smaller absolute and relative spleen masses than control mice. Absolute and relative spleen and thymus masses of PND21exposed to penta-BDE were significantly decreased over control. The exposure of dams and PND21 with penta-BDE reduced the number of splenocytes and thymocytes. As results of hematologic analysis, percentage WBC and percentage neutrophils increased in dams with deca-BDE. Splenic T cell proliferation in dams and PND21 exposed to penta-BDE was increased, and there were no significant difference in splenic B cell proliferation in all treatment groups. As results of flow cytometric analysis of splenocyte, percentage total T cell, Th cell and Tc cell in PND21 exposed to penta-BDE was slightly increased, and percentage macrophage in dams and PND21 exposed to deca-BDE was decreased. The ELISA results of antibody production show no significant difference in all treatment groups relative to controls. These results imply that PBDEs given to the dam were transferred to the offspring during gestation and lactation, and PBDEs transferred from the dam affect immune system of offspring.

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