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      제주도에서의 위성기반 증발산량 및 토양수분 적용성 평가 = Evaluation of satellite-based evapotranspiration and soil moisture data applicability in Jeju Island

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      https://www.riss.kr/link?id=A107892892

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      다국어 초록 (Multilingual Abstract)

      In Jeju Island which has peculiarity for its geological features and hydrology system, hydrological factor analysis for the effective water management is necessary. Because in-situ hydro-meteorological data is affected by surrounding environment, the ...

      In Jeju Island which has peculiarity for its geological features and hydrology system, hydrological factor analysis for the effective water management is necessary. Because in-situ hydro-meteorological data is affected by surrounding environment, the in-situ dataset could not be the spatially representative for the study area. For this reason, remote sensing data may be used to overcome the limit of the in-situ data. In this study, applicability assessment of MOD16 evapotranspiration data, Globas Land Data Assimilation System (GLDAS) based evapotranspiration/soil moisture data, and Advanced SCATterometer (ASCAT) soil moisture product which were evaluated their applicability on other study areas was conducted. In the case of evapotranspiration, comparison with total precipitation and flux-tower based evapotranspiration were conducted. And for soil moisture, 6 in-situ data and ASCAT soil moisture product were compared on each site. As a result, 57% of annual precipitation was calculated as evapotranspiration, and the correlation coefficient between MOD16 evapotranspiration and GLDAS evapotranspiration was 0.759, which was a robust value. The correlation coefficient was 0.434, indicating a relatively low fit. In the case of soil moisture, in the case of the GLDAS data, the RMSE value was less than 0.05 at all sites compared to the in-situ data, and a statistically significant result was obtained as a result of the significance test of the correlation coefficient. However, for satellite data, RMSE over than 0.05 were found at Wolgak and there was no correlation at Sehwa and Handong points. It is judged that the above results are due to insufficient quality control and spatial representation of the evapotranspiration and soil moisture sensors installed in Jeju Island. It is estimated as the error that appears when adjacent to the coast. Through this study, the necessity of improving the existing ground observation data of hydrometeorological factors is emphasized.

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      참고문헌 (Reference)

      1 강민석, "한국 플럭스 관측망의 과거, 현재와 미래" 한국농림기상학회 20 (20): 1-4, 2018

      2 김기영, "플럭스타워 기반 증발산의 결측자료 보정을 위한 gap-filling 산정 및 분석 - FAO-PM, MDV, Kalman filter을 이용하여 -" 한국방재학회 16 (16): 95-107, 2016

      3 정대일, "증발량 관련 기후인자와 팬증발량의 변화 분석" 한국수자원학회 42 (42): 117-129, 2009

      4 김봉상, "제주도 화산암의 광역적 수리지질과 지하수 분포 특성" 대한지질학회 47 (47): 263-276, 2011

      5 정재환, "산악 지형에서의 토양 수분 관측소 구축을 위한 연구(2): Cosmic-Ray Sensor를 활용한 지역 규모 토양 수분 측정" 한국방재학회 18 (18): 83-91, 2018

      6 송성호, "기후변화와 관련한 제주지역 농업용수의 효율적 활용 방안(I)" 한국지하수토양환경학회 17 (17): 62-70, 2012

      7 Choi, I. C., "Water policy reforms in South Korea: A historical review and ongoing challenges for sustainable water governance and management" 9 (9): 717-, 2017

      8 Lee, Y., "The modified SEBAL for mapping daily spatial evapotranspiration of South Korea using three flux towers and terra MODIS data" 8 (8): 983-, 2016

      9 Dorigo, W. A., "The international soil moisture network: A data hosting facility for global in situ soil moisture measurements" 15 (15): 1675-1698, 2011

      10 Fisher, J. B., "The future of evapotranspiration: Global requirements for ecosystem functioning, carbon and climate feedbacks, agricultural management, and water resources" 53 (53): 2618-2626, 2017

      1 강민석, "한국 플럭스 관측망의 과거, 현재와 미래" 한국농림기상학회 20 (20): 1-4, 2018

      2 김기영, "플럭스타워 기반 증발산의 결측자료 보정을 위한 gap-filling 산정 및 분석 - FAO-PM, MDV, Kalman filter을 이용하여 -" 한국방재학회 16 (16): 95-107, 2016

      3 정대일, "증발량 관련 기후인자와 팬증발량의 변화 분석" 한국수자원학회 42 (42): 117-129, 2009

      4 김봉상, "제주도 화산암의 광역적 수리지질과 지하수 분포 특성" 대한지질학회 47 (47): 263-276, 2011

      5 정재환, "산악 지형에서의 토양 수분 관측소 구축을 위한 연구(2): Cosmic-Ray Sensor를 활용한 지역 규모 토양 수분 측정" 한국방재학회 18 (18): 83-91, 2018

      6 송성호, "기후변화와 관련한 제주지역 농업용수의 효율적 활용 방안(I)" 한국지하수토양환경학회 17 (17): 62-70, 2012

      7 Choi, I. C., "Water policy reforms in South Korea: A historical review and ongoing challenges for sustainable water governance and management" 9 (9): 717-, 2017

      8 Lee, Y., "The modified SEBAL for mapping daily spatial evapotranspiration of South Korea using three flux towers and terra MODIS data" 8 (8): 983-, 2016

      9 Dorigo, W. A., "The international soil moisture network: A data hosting facility for global in situ soil moisture measurements" 15 (15): 1675-1698, 2011

      10 Fisher, J. B., "The future of evapotranspiration: Global requirements for ecosystem functioning, carbon and climate feedbacks, agricultural management, and water resources" 53 (53): 2618-2626, 2017

      11 Khan, M. S., "Standalone uncertainty characterization of GLEAM, GLDAS and MOD16 evapotranspiration products using an extended triple collocation approach" 252 : 256-268, 2018

      12 Moshir, P. D., "Spatio-temporal assessment of global gridded evapotranspiration datasets across Iran" 13 (13): 1816-, 2021

      13 Kim, S., "Spatial disaggregation of ASCAT soil moisture under all sky condition using support vector machine" 32 (32): 3455-3473, 2018

      14 Choi, M., "Soil moisture variability of root zone profiles within SMEX02 remote sensing footprints" 30 (30): 883-896, 2007

      15 Brocca, L., "Soil moisture estimation through ASCAT and AMSR-E sensors:An intercomparison and validation study across Europe" 115 (115): 3390-3408, 2011

      16 Walker, J. P., "Onedimensional soil moisture profile retrieval by assimilation of near-surface observations: A comparison of retrieval algorithms" 24 (24): 631-650, 2001

      17 D’Odorico, P., "On soil moisture-vegetation feedbacks and their possible effects on the dynamics of dryland ecosystems" 112 (112): 2007

      18 Tang, R., "Multiscale validation of the 8-day MOD16 evapotranspiration product using flux data collected in China" 8 (8): 1478-1486, 2015

      19 Yao, Y., "MODIS-driven estimation of terrestrial latent heat flux in China based on a modified Priestley-Taylor algorithm" 171 : 187-202, 2013

      20 Lievens, H., "Joint Sentinel‐1 and SMAP data assimilation to improve soil moisture estimates" 44 (44): 6145-6153, 2017

      21 Bartalis, Z., "Initial soil moisture retrievals from the METOP‐A Advanced Scatterometer (ASCAT)" 34 (34): 2007

      22 Mu, Q., "Improvements to a MODIS global terrestrial evapotranspiration algorithm" 115 (115): 1781-1800, 2011

      23 Berg, A. A., "Impact of bias correction to reanalysis products on simulations of North American soil moisture and hydrological fluxes" 108 (108): 2003

      24 Fisher, J. B., "Global estimates of the land atmosphere water flux based on monthly AVHRR and ISLSCP-II data, validated at 16 FLUXNET sites" 112 (112): 901-919, 2008

      25 Um, M. J., "Factor analysis and multiple regression between topography and precipitation on Jeju Island, Korea" 410 (410): 189-203, 2011

      26 Nguyen, H. H., "Extension of cosmicray neutron probe measurement depth for improving field scale root-zone soil moisture estimation by coupling with representative in-situ sensors" 571 : 679-696, 2019

      27 Alemayehu, T., "Evapotranspiration mapping in a heterogeneous landscape using remote sensing and global weather datasets: Application to the Mara Basin, East Africa" 9 (9): 390-, 2017

      28 Shuttleworth, W. J., "Evaporation from sparse crops-an energy combination theory" 111 (111): 839-855, 1985

      29 Monteith, J. L, "Evaporation and the environment" 19 : 205-234, 1965

      30 Zeng, J., "Evaluation of remotely sensed and reanalysis soil moisture products over the Tibetan Plateau using in-situ observations" 163 : 91-110, 2015

      31 Högström, E., "Evaluation of a MetOp ASCAT‐Derived surface soil moisture product in tundra environments" 123 (123): 3190-3205, 2018

      32 Zohaib, M., "Evaluating the patterns of spatiotemporal trends of root zone soil moisture in major climate regions in East Asia" 122 (122): 7705-7722, 2017

      33 Park, J., "Estimation of evapotranspiration from ground-based meteorological data and global land data assimilation system (GLDAS)" 29 (29): 1963-1992, 2015

      34 Mu, Q., "Development of a global evapo-transpiration algorithm based on MODIS and global meteorology data" 111 (111): 519-536, 2007

      35 Allen, R. G., "Conditioning point and gridded weather data under aridity conditions for calculation of reference evapotranspiration" 245 : 106531-, 2021

      36 Mittelbach, H., "Comparison of four soil moisture sensor types under field conditions in Switzerland" 430 : 39-49, 2012

      37 Herkelrath, W. N., "Automatic, real‐time monitoring of soil moisture in a remote field area with time domain reflectometry" 27 (27): 857-864, 1991

      38 Wang, Y. J., "Application of GLDAS data to the potential evapotranspiration monitoring in Weihe River Basin" 27 : 54-58, 2013

      39 Naeimi, V., "ASCAT soil moisture: An assessment of the data quality and consistency with the ERS scatterometer heritage" 10 (10): 555-563, 2009

      40 Hong, S., "A physically-based inversion algorithm for retrieving soil moisture in passive microwave remote sensing" 405 (405): 24-30, 2011

      41 Skierucha, W., "A FDR sensor for measuring complex soil dielectric permittivity in the 10-500 MHz frequency range" 10 (10): 3314-3329, 2010

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      연월일 이력구분 이력상세 등재구분
      2027 평가예정 재인증평가 신청대상 (재인증)
      2021-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2018-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2015-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
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      2002-07-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2000-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      2016 0.5 0.5 0.57
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
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