Estimation and Assessment of Total Phosphorus and Trophic State Index Estimated from Landsat 8 Dataset on 2018 at Daecheong Reservoir
Objectives:Remote sensing of water quality parameters (WQPs) has been widely applied along with the emerging importance of obtaining the spatial pattern of water quality at inland reservoir. This study retrieved the Total Phosphorus (TP) via remote sensing imagery at Daecheong reservoir and used it...
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Korean Society of Environmental Engineers
2020-09-01
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doaj-e768f73642ce444b9b6de93c4de2a0622021-01-21T08:07:04ZengKorean Society of Environmental Engineers대한환경공학회지1225-50252383-78102020-09-01429415423https://doi.org/10.4491/KSEE.2020.42.9.415Estimation and Assessment of Total Phosphorus and Trophic State Index Estimated from Landsat 8 Dataset on 2018 at Daecheong ReservoirJongjin Baik0https://orcid.org/0000-0002-1262-9290Jongmin Park1https://orcid.org/0000-0002-7110-4881Minha Choi2https://orcid.org/0000-0002-1900-9780Center for Built Environment, Sungkyunkwan UniversityDepartment of Civil and Environmental Engineering, University of MarylandGraduate School of Water Resources, Sungkyunkwan UniversityObjectives:Remote sensing of water quality parameters (WQPs) has been widely applied along with the emerging importance of obtaining the spatial pattern of water quality at inland reservoir. This study retrieved the Total Phosphorus (TP) via remote sensing imagery at Daecheong reservoir and used it for acquiring the spatial distribution of Trophic State Index (TSI). Methods:First, stepwise regression for TP was established using the ground-based TP measurement and reflectance of Landsat 8 collocated in space and time. With the developed regression model, we estimated the spatial distribution of TSI and evaluated the severity of eutrophication at Daecheong reservoir. Results and Discussion:The result confirmed that predicted TP yielded reasonable statistics compared against measured TP with R2 of 0.956 and p-value of 0.022. Seasonal variation of TP was highly influenced by the precipitation. Similarly, precipitation also influenced to the spatial pattern of TSI. Before the rainfall event (e.g., August 22 2018) at Daecheong reservoir, TSI metric indicated the oligotrographic stage. However, TSI of Daecheong reservoir after the rainfall (e.g., October 25 2018) indicated the mesotrophic and eutrophic stage. Conclusions:These results confirmed that the retrieval of WQP from remote sensing imagery can serve as a robustness tool to monitor the water quality over the large scale area.https://jksee.or.kr/journal/view.php?number=4275water qualitysatellitelandsat 8daecheong reservoir |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jongjin Baik Jongmin Park Minha Choi |
spellingShingle |
Jongjin Baik Jongmin Park Minha Choi Estimation and Assessment of Total Phosphorus and Trophic State Index Estimated from Landsat 8 Dataset on 2018 at Daecheong Reservoir 대한환경공학회지 water quality satellite landsat 8 daecheong reservoir |
author_facet |
Jongjin Baik Jongmin Park Minha Choi |
author_sort |
Jongjin Baik |
title |
Estimation and Assessment of Total Phosphorus and Trophic State Index Estimated from Landsat 8 Dataset on 2018 at Daecheong Reservoir |
title_short |
Estimation and Assessment of Total Phosphorus and Trophic State Index Estimated from Landsat 8 Dataset on 2018 at Daecheong Reservoir |
title_full |
Estimation and Assessment of Total Phosphorus and Trophic State Index Estimated from Landsat 8 Dataset on 2018 at Daecheong Reservoir |
title_fullStr |
Estimation and Assessment of Total Phosphorus and Trophic State Index Estimated from Landsat 8 Dataset on 2018 at Daecheong Reservoir |
title_full_unstemmed |
Estimation and Assessment of Total Phosphorus and Trophic State Index Estimated from Landsat 8 Dataset on 2018 at Daecheong Reservoir |
title_sort |
estimation and assessment of total phosphorus and trophic state index estimated from landsat 8 dataset on 2018 at daecheong reservoir |
publisher |
Korean Society of Environmental Engineers |
series |
대한환경공학회지 |
issn |
1225-5025 2383-7810 |
publishDate |
2020-09-01 |
description |
Objectives:Remote sensing of water quality parameters (WQPs) has been widely applied along with the emerging importance of obtaining the spatial pattern of water quality at inland reservoir. This study retrieved the Total Phosphorus (TP) via remote sensing imagery at Daecheong reservoir and used it for acquiring the spatial distribution of Trophic State Index (TSI).
Methods:First, stepwise regression for TP was established using the ground-based TP measurement and reflectance of Landsat 8 collocated in space and time. With the developed regression model, we estimated the spatial distribution of TSI and evaluated the severity of eutrophication at Daecheong reservoir.
Results and Discussion:The result confirmed that predicted TP yielded reasonable statistics compared against measured TP with R2 of 0.956 and p-value of 0.022. Seasonal variation of TP was highly influenced by the precipitation. Similarly, precipitation also influenced to the spatial pattern of TSI. Before the rainfall event (e.g., August 22 2018) at Daecheong reservoir, TSI metric indicated the oligotrographic stage. However, TSI of Daecheong reservoir after the rainfall (e.g., October 25 2018) indicated the mesotrophic and eutrophic stage.
Conclusions:These results confirmed that the retrieval of WQP from remote sensing imagery can serve as a robustness tool to monitor the water quality over the large scale area. |
topic |
water quality satellite landsat 8 daecheong reservoir |
url |
https://jksee.or.kr/journal/view.php?number=4275 |
work_keys_str_mv |
AT jongjinbaik estimationandassessmentoftotalphosphorusandtrophicstateindexestimatedfromlandsat8dataseton2018atdaecheongreservoir AT jongminpark estimationandassessmentoftotalphosphorusandtrophicstateindexestimatedfromlandsat8dataseton2018atdaecheongreservoir AT minhachoi estimationandassessmentoftotalphosphorusandtrophicstateindexestimatedfromlandsat8dataseton2018atdaecheongreservoir |
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1724330195715883008 |