• Title/Summary/Keyword: Flux Tower

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Estimation of Satellite-based Spatial Evapotranspiration and Validation of Fluxtower Measurements by Eddy Covariance Method (인공위성 데이터 기반의 공간 증발산 산정 및 에디 공분산 기법에 의한 플럭스 타워 자료 검증)

  • Sur, Chan-Yang;Han, Seung-Jae;Lee, Jung-Hoon;Choi, Min-Ha
    • Korean Journal of Remote Sensing
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    • v.28 no.4
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    • pp.435-448
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    • 2012
  • Evapotranspiration (ET) including evaporation from a land surface and transpiration from photosynthesis of vegetation is a sensitive hydrological factor with outer circumstances. Though both direct measurements with an evaporation pan and a lysimeter, and empirical methods using eddy covariance technique and the Bowen ratio have been widely used to observe ET accurately, they have a limitation that the observation can stand for the exact site, not for an area. In this study, remote sensing technique is adopted to compensate the limitation of ground observation using the Moderate Resolution Imaging Spectroradiometer (MODIS) multispectral sensor mounted on Terra satellite. We improved to evapotranspiration model based on remote sensing (Mu et al., 2007) and estimated Penman-Monteith evapotranspiration considering regional characteristics of Korea that was using only MODIS product. We validated evapotranspiration of Sulma (SMK)/Cheongmi (CFK) flux tower observation and calculation. The results showed high correlation coefficient as 0.69 and 0.74.

SPECTROSCOPIC OBSERVATION OF THE SOLAR ACTIVE REGIONS IN HeI 10830 ${\AA}$ LINE

  • TOHMURA ICHIROH;KITAI REIZABURO;SUEMATSU YOSHINORI;SOLTAU DIRK
    • Journal of The Korean Astronomical Society
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    • v.29 no.spc1
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    • pp.333-335
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    • 1996
  • Here we report the results from spectroscopic observations of soloar active regions in the HeI 10830 ${\AA}$ line at the German Vacuum Tower Telescope(VTT) in Tenerife during the August 199:3 International EFR(Emerging Flux Region) Campaign. Four active regions in various stages of their evolution, i.e., NOAA7558, 7560, 7561, and 7562, were ovserved on 10 August 1993. From the observed HeI 10830 ${\AA}$ spectra in these active regions, spectroscopic quantities such as equivalent width(EW), doppler shift, doppler width, etc., were derived(see Figure l(a)) and the correlation between them were studied(see Figure l(b)). Our main results are as follows: (I)In NOAA7562, which is a young and evolving EFR, the EW is large, while it is small around a simple and roundish spot of NOAA7558. (2)In these active regions, redshift in the 10830 line is dominant when the EW is larger. (3)As the doppler width increases, the line tends to shift redward. (4)When the EW is smaller, it seems to exist another component which have dynamic characteristics different from the redshifting component. In NOAA7560 and NOAA7561, regions which have several small spots, the values of the EW are intermediate. Results (2) and (3) may suggest the possible existence of downflow above active regions, if the HeI 10830 ${\AA}$line is formed in the upper chromopshere, and it is consistent with the earlyer result from the SMM extreme-ultraviolet observation by Klimchuk(1987, Astrophys. J., 323, 368) (to be submitted. to Astronomy and Astrophysics; an extended abstract)

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Developing a soil water index-based Priestley-Taylor algorithm for estimating evapotranspiration over East Asia and Australia

  • Hao, Yuefeng;Baik, Jongjin;Choi, Minha
    • Proceedings of the Korea Water Resources Association Conference
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    • 2019.05a
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    • pp.153-153
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    • 2019
  • Evapotranspiration (ET) is an important component of hydrological processes. Accurate estimates of ET variation are of vital importance for natural hazard adaptation and water resource management. This study first developed a soil water index (SWI)-based Priestley-Taylor algorithm (SWI-PT) based on the enhanced vegetation index (EVI), SWI, net radiation, and temperature. The algorithm was then compared with a modified satellite-based Priestley-Taylor ET model (MS-PT). After examining the performance of the two models at 10 flux tower sites in different land cover types over East Asia and Australia, the daily estimates from the SWI-PT model were closer to observations than those of the MS-PT model in each land cover type. The average correlation coefficient of the SWI-PT model was 0.81, compared with 0.66 in the original MS-PT model. The average value of the root mean square error decreased from $36.46W/m^2$ to $23.37W/m^2$ in the SWI-PT model, which used different variables of soil moisture and vegetation indices to capture soil evaporation and vegetative transpiration, respectively. By using the EVI and SWI, uncertainties involved in optimizing vegetation and water constraints were reduced. The estimated ET from the MS-PT model was most sensitive (to the normalized difference vegetation index (NDVI) in forests) to net radiation ($R_n$) in grassland and cropland. The estimated ET from the SWI-PT model was most sensitive to $R_n$, followed by SWI, air temperature ($T_a$), and the EVI in each land cover type. Overall, the results showed that the MS-PT model estimates of ET in forest and cropland were weak. By replacing the fraction of soil moisture ($f_{sm}$) with the SWI and the NDVI with the EVI, the newly developed SWI-PT model captured soil evaporation and vegetation transpiration more accurately than the MS-PT model.

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Comparative analysis of the evapotranspiration data in Muan Flux tower (무안 증발산량 관측소 운영 결과 비교 분석)

  • Oh, Sung Ryul;Son, Kyung hwan;Choi, kyu Hyun
    • Proceedings of the Korea Water Resources Association Conference
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    • 2017.05a
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    • pp.244-244
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    • 2017
  • 2015년 국토교통부(영산강홍수통제소)에서는 물 순환 과정의 규명에 이용되는 증발산량 자료의 제공을 목적으로 무안지역에 플럭스 타워를 설치하여 운영하고 있다. 무안 플럭스 타워는 에디공분산 방법을 이용하여 증발산량 자료를 관측하는 방식으로, 본 연구에서는 무안 관측소에서 생산된 자료의 정상성 검토를 위하여 2015년과 2016년 운영 결과를 비교 분석하였다. 무안관측소의 2015년도 연 증발산량은 615.8mm(연 강수량 대비 56.0%)로 나타났으며, 2016년도 연 증발산량은 721.5mm(연 강수량 대비 49.5%)로 나타났다. 연 증발산량은 전년대비 약 100mm 증가하는 양상을 보였으며, 강수량 대비 비율은 6.5% 감소하는 것으로 분석되었다. 2015년 대비 2016년 무강우일수는 6일 증가 하였으나, 실제 순복사에너지는 $18,320w/m^2$ 감소하는 것으로 나타났다. 실제 이 차이는 2개년 평균치의 약 2% 내외 수준으로 예년대비 순복사에너지는 거의 비슷한 것으로 분석되었다. 복합적 요인에 의해 정량적 크기가 결정되는 증발산량의 특성상 추가적인 분석이 필요하나, 2016년의 경우 전년대비 증가한 강우의 영향이 지배적이였던 것으로 검토되었다(2015강수량 : 1,099mm, 2016강수량 : 1,457mm). 월별 증발산량 비교 분석결과 정량적인 차이는 존재했으나 전년과 마찬가지로 1월부터 증발산량이 증가하여 8월에 최대 증발산량을 보인 후 감소하는 형태를 나타냈으며, 5월과 6월이 증발산량이 역전되는 양상도 동일하게 나타났다. 이는 남부지역 모내기 시기인 5월경 관개용수(Irrigation water) 공급에 따른 유입원의 증가와 함께 5월 대비 6월(장마철) 흐린날(Cloudy condition) 증가에 따른 상대적인 순복사에너지(5월: 약20만$w/m^2$, 6월: 약17만$w/m^2$)의 감소가 주 원인이였던 것으로 검토되었다. 이를 통해 볼 때 무안 증발산량 자료는 추가적인 경년변화 연구가 필요하겠으나, 국가통계자료로써 유의미한 자료로 판단되며, 향후 증발산량에 대한 지속적인 연구 및 관측망의 확대를 통해 국가 이수관련 정책수립에 유용한 자료로 이용 될 수 있을것으로 판단된다.

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Comparison and Blending of re-analysis and satellite based evapotranspiration in Australia (재분석/인공위성의 증발산 자료를 활용한 합성 증발산 산정 및 비교: 호주에서)

  • Baik, Jongjin;Jeong, Jaehwan;Cho, Seongkeun;Choi, Minha
    • Proceedings of the Korea Water Resources Association Conference
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    • 2018.05a
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    • pp.26-26
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    • 2018
  • 기후변화로 인한 홍수, 가뭄 등의 자연재해가 빈번히 발생함에 따라서, 수자원의 변동성이 심각해짐에 따라서 물 부족에 대한 관심이 대두되고 있다. 특히, 수문분야에서 수자원의 확보 및 효율적 관리에 대한 중요성 및 관심이 높아지고는 있으나, 물 순환에 대한 이해 및 분석에 대한 부분은 아직 계속적으로 연구할 필요성이 있다. 물 순환에서 다른 수문기상인자들에 비해 직접적인 관측이 어려운 실제증발산은 단순 가정 및 경험식, 또는 물수지 방정식을 통해 어림되어 계산되어 진다. 지상에서 실제증발산을 관측하기 위해 에디 공분산 기반의 플럭스 타워(flux tower)를 이용하여 한 지역(지점)에서의 정량적인 관측이 이뤄지고 있으나, 공간적인 관측은 이뤄지고 있지 않는 문제점을 가지고 있다. 따라서, 기술이 발전함에 따라 다양한 물리식 기반의 재분석자료(reanalysis data)/인공위성(satellite)기반의 실제증발산에 대한 자료가 산출되어진다. 그렇지만, 다양한 물리식 기반으로 산출되는 결과는 알고리즘의 특성상 오차가 발생할 수 있다. 이러한 방법을 해결하기 위하여 다양한 합성 방법을 이용하여 각 알고리즘에서 오차를 보정 및 개선한 최적의 실제증발산 결과를 필요로 하게 된다. 이 연구에서는 재분석/인공위성 기반의 8일 단위 실제증발산 자료를 활용하여 두 가지의 합성 방법(simple taylor skill score, maximize r)을 이용하여 개선된 실제증발산 결과를 산출하기 위하여, 2005년부터 2014년까지의 호주에서의 실제증발산에 대한 합성 결과를 나타내었다. 전반적으로 두 방법으로 산정된 결과는 기존의 결과에 비해 오차가 상당히 개선된 것을 확인 할 수 있었으며, 특히, 다양한 자료를 이용하여 합성하는 방법인 simple taylor skill score방법이 maximize r의 방법에 비해 보다 오차 및 상관성이 높은 것을 확인 할 수 있다. 본 연구에서 합성 방법을 이용하여 기존의 자료에 비해서 개선된 결과를 산정할 수 있는 것을 확인하였고, 향후 가뭄에 직접적으로 연관성을 가진 합성 증발산 자료를 활용하여 가뭄 분석의 신뢰성을 향상시킬 수 있을 것으로 기대된다.

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Hydrologic evaluation of SWAT considered forest type using MODIS LAI data: a case of Yongdam Dam watershed (MODIS LAI 자료를 활용하여 임상별로 고려한 SWAT의 수문 평가: 용담댐유역을 대상으로)

  • Han, Daeyoung;Lee, Jiwan;Kim, Wonjin;Baek, Seungchul;Kim, Seongjoon
    • Journal of Korea Water Resources Association
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    • v.54 no.11
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    • pp.875-889
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    • 2021
  • This study compares and analyzes the Soil and Water Assessment Tool (SWAT) and Terra MODIS (Moderate Resolution Imaging Spectroradiometer) as coniferous, deciduous and mixed forest with Yongdam Dam upstream (904.4 km2). The hydrologic evaluation period was set to 10 years from 2010 to 2019, and the applicability of the 8-day MOD15A2 Leaf Area Index (LAI) data, 3 TDR (Time Domain Reflectometry) (GB, JC, CC), and 1 Flux Tower (DU) evaporation volume (YDD) data was simulated. As a result, the R2 of coniferous forest, deciduous forest and mixed forest are 0.95, 0.89, 0.90, soil moisture and evaportranspiration stations R2 were analyzed at 0.50 to 0.55 and 0.51, respectively, with R2 at 0.74, RMSE 2.75 mm/day, NSE 0.70 and PBIAS 14.3% for Yongdam inflow. Based on the calibrated and validated watersheds, the annual average evaportranspiration was calculated as coniferous 469.7 mm, deciduous 501. mm and 511.5 mm mixed forest, total runoff were estimated at coniferous 909.8 mm, deciduous 860.6 mm and 864.2 mm mixed forest. In the case of annual average evaportranspiration, it was evaluated that deciduous were high, but in the case of streamflow, it was evaluated that coniferous were high. Unlike other hydrologic with similar patterns throughout the year, the average annual evapotranspiration was about 7% higher than coniferous due to the higher evapotranspiration of deciduous with high leaf area index in summer and fall. In addition, deciduous were 9% and 6% higher for surface runoff and lateral flow, but the groundwater of coniferous was 77% higher. Therefore, it was confirmed that the total runoff was in order of coniferous, mixed forest, and deciduous.

Validation of ECOSTRESS Based Land Surface Temperature and Evapotranspiration (PT-JPL) Data Across Korea (국내에서 ECOSTRESS 지표면 온도 및 증발산(PT-JPL) 자료의 검증)

  • Park, Ki Jin;Kim, Ki Young;Kim, Chan Young;Park, Jong Min
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.44 no.5
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    • pp.637-648
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    • 2024
  • The frequency of extreme weather events such as heavy and extreme rainfall has been increasing due to global climate change. Accordingly, it is essential to quantify hydrometeorological variables for efficient water resource management. Among the various hydro-meteorological variables, Land Surface Temperature (LST) and Evapotranspiration (ET) play key roles in understanding the interaction between the surface and the atmosphere. In Korea, LST and ET are mainly observed through ground-based stations, which also have limitation in obtaining data from ungauged watersheds, and thus, it hinders to estimate spatial behavior of LST and ET. Alternatively, remote sensing-based methods have been used to overcome the limitation of ground-based stations. In this study, we evaluated the applicability of the National Aeronautics and Space Administration's (NASA) ECOsystem Spaceborne Thermal Radiometer Experiment on Space Station (ECOSTRESS) LST and ET data estimated across Korea (from July 1, 2018 to December 31, 2022). For validation, we utilized NASA's MODerate Resolution Imaging Spectroradiometer (MODIS) data and eddy covariance flux tower observations managed by agencies under the Ministry of Environment of South Korea. Overall, results indicated that ECOSTRESS-based LSTs showed similar temporal trends (R: 0.47~0.73) to MODIS and ground-based observations. The index of agreement also showed a good agreement of ECOSTRESS-based LST with reference datasets (ranging from 0.82 to 0.91), although it also revealed distinctive uncertainties depending on the season. The ECOSTRESS-based ET demonstrated the capability to capture the temporal trends observed in MODIS and ground-based ET data, but higher Mean Absolute Error and Root Mean Square Error were also exhibited. This is likely due to the low acquisition rate of the ECOSTRESS data and environmental factors such as cooling effect of evapotranspiration, overestimation during the morning. This study suggests conducting additional validation of ECOSTRESS-based LST and ET, particularly in topographical and hydrological aspects. Such validation efforts could enhance the practical application of ECOSTRESS for estimating basin-scale LST and ET in Korea.

Lessons from Cross-Scale Studies of Water and Carbon Cycles in the Gwangneung Forest Catchment in a Complex Landscape of Monsoon Korea (몬순기후와 복잡지형의 특성을 갖는 광릉 산림유역의 물과 탄소순환에 대한 교차규모 연구로부터의 교훈)

  • Lee, Dong-Ho;Kim, Joon;Kim, Su-Jin;Moon, Sang-Ki;Lee, Jae-Seok;Lim, Jong-Hwan;Son, Yow-Han;Kang, Sin-Kyu;Kim, Sang-Hyun;Kim, Kyong-Ha;Woo, Nam-Chil;Lee, Bu-Yong;Kim, Sung
    • Korean Journal of Agricultural and Forest Meteorology
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    • v.9 no.2
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    • pp.149-160
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    • 2007
  • KoFlux Gwangneung Supersite comprises complex topography and diverse vegetation types (and structures), which necessitate complementary multi-disciplinary measurements to understand energy and matter exchange. Here, we report the results of this ongoing research with special focuses on carbon/water budgets in Gwangneung forest, implications of inter-dependency between water and carbon cycles, and the importance of hydrology in carbon cycling under monsoon climate. Comprehensive biometric and chamber measurements indicated the mean annual net ecosystem productivity (NEP) of this forest to be ${\sim}2.6\;t\;C\;ha^{-1}y^{-1}$. In conjunction with the tower flux measurement, the preliminary carbon budget suggests the Gwangneung forest to be an important sink for atmospheric $CO_2$. The catchment scale water budget indicated that $30\sim40%$ of annual precipitation was apportioned to evapotranspiration (ET). The growing season average of the water use efficiency (WUE), determined from leaf carbon isotope ratios of representative tree species, was about $12{\mu}mol\;CO_2/mmol\;H_2O$ with noticeable seasonal variations. Such information on ET and WUE can be used to constrain the catchment scale carbon uptake. Inter-annual variations in tree ring growth and soil respiration rates correlated with the magnitude and the pattern of precipitation during the growing season, which requires further investigation of the effect of a monsoon climate on the catchment carbon cycle. Additionally, we examine whether structural and functional units exist in this catchment by characterizing the spatial heterogeneity of the study site, which will provide the linkage between different spatial and temporal scale measurements.

Assessment of Ecosystem Productivity and Efficiency using Flux Measurement over Haenam Farmland Site in Korea (HFK) (플럭스 관측 기반의 생태계 생산성과 효율성 평가: 해남 농경지 연구 사례)

  • Indrawati, Yohana Maria;Kim, Joon;Kang, Minseok
    • Korean Journal of Agricultural and Forest Meteorology
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    • v.20 no.1
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    • pp.57-72
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    • 2018
  • Time series analysis of tower flux measurement can be used to build quantitative evidence for the achievement of climate-smart agriculture (CSA). In this study, we have assessed the first objective of CSA (regarding ecosystem productivity and efficiency) for rice paddy-dominated heterogeneous farmland. A set of quantitative indicators were evaluated by analysing the time series data of carbon, water and energy fluxes over the Haenam farmland site in Korea (HFK) during the rice growing seasons from 2003 to 2015. Four different varieties of rice were cultivated during the study period in chronological order of Dongjin No. 1 (2003-2008), Nampyung (2009), Onnuri (2010-2011), and Saenuri (2012-2015). Overall at HFK, gross primary productivity (GPP) ranged from 800 to $944g\;C\;m^{-2}$, water use efficiency (WUE) ranged from 1.91 to $2.80g\;C\;kg\;H_2O^{-1}$, carbon uptake efficiency (CUE) ranged from 1.06 to 1.34, and light use efficiency (LUE) ranged from 0.99 to $1.55g\;C\;MJ^{-1}$. Among the four rice varieties, Dongjin No. 1-dominated HFK showed the highest productivity with higher WUE and LUE, but comparable CUE. Considering the heterogeneous vegetation cover at HFK, a rule of thumb comparison suggested that the productivity of Dongjin No1-dominated HFK was comparable to those of monoculture rice paddies in Asia, whereas HFK was more efficient in water use and less efficient in carbon uptake. Saenuri-dominated HFK also produced high productivity but with the growing season length longer than Dongjin No.1. Although the latter showed better traits for CSA, farmers cultivate Saenuri because of higher pest resistance (associated with adaptability and resilience). This emphasizes the need for the evaluation of other two objectives of CSA (i.e. system resilience and greenhouse gas mitigation) for complete assessment at HFK, which is currently in progress.

Evaluation of Forest Watershed Hydro-Ecology using Measured Data and RHESSys Model -For the Seolmacheon Catchment- (관측자료와 RHESSys 모형을 이용한 산림유역의 생태수문 적용성 평가 -설마천유역을 대상으로-)

  • Shin, Hyung Jin;Park, Min Ji;Kim, Seong Joon
    • Journal of Korea Water Resources Association
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    • v.45 no.12
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    • pp.1293-1307
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    • 2012
  • This study is to evaluate the RHESSys (Regional Hydro-Ecological Simulation System) simulated streamflow (Q), evapotranspiration (ET), soil moisture (SM), gross primary productivity (GPP) and photosynthetic productivity (PSNnet) with the measured data. The RHESSys is a hydro-ecological model designed to simulate integrated water, carbon, and nutrient cycling and transport over spatially variable terrain. A 8.5 $km^2$ Seolma-cheon catchment located in the northwest of South Korea was adopted. The catchment covers 90.0% forest and the dominant soil is sandy loam. The model was calibrated with 2 years (2007-2008) daily Q at the watershed outlet and MODIS (Moderate Resolution Imaging Spectroradiometer) GPP, PSNnet and 3 year (2007~2009) daily ET data measured at flux tower using the eddy-covariance technique. The coefficient of determination ($R^2$) and the Nash-Sutcliffe model efficiency (ME) for Q were 0.74 and 0.63, and the average $R^2$ for ET and GPP were 0.54 and 0.93 respectively. The model was validated with 1 year (2009) Q and GPP. The $R^2$ and the ME for Q were 0.92 and 0.84, the $R^2$ for GPP were 0.93.