Remote Sensing Retrieval of Water Transparency for Pingzhai Reservoir Based on Sentinel-2 Images

[Objective] The variation rule of water transparency and the driving factors of its spatial differentiation were analyzed in order to provide a scientific basis for the management of lake reservoirs and the restoration of lake reservoir ecosystems. [Methods] A remote sensing inversion model of water...

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Main Authors: Chaocheng Wen, Zhongfa Zhou, Yongliu Li, Jie Kong, Jiangting Xie
Format: Article
Language:zho
Published: Science Press 2023-02-01
Series:Shuitu baochi tongbao
Subjects:
Online Access:http://stbctb.alljournal.com.cn/stbctben/article/abstract/20230119
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author Chaocheng Wen
Zhongfa Zhou
Yongliu Li
Jie Kong
Jiangting Xie
author_facet Chaocheng Wen
Zhongfa Zhou
Yongliu Li
Jie Kong
Jiangting Xie
author_sort Chaocheng Wen
collection DOAJ
description [Objective] The variation rule of water transparency and the driving factors of its spatial differentiation were analyzed in order to provide a scientific basis for the management of lake reservoirs and the restoration of lake reservoir ecosystems. [Methods] A remote sensing inversion model of water transparency in Pingzhai reservoir was constructed based on sentinel-2 MSI satellite images and quasi-synchronous measured transparency data collected on May 18, August 26, and November 14, 2020. We quantitatively analyzed the drivers affecting spatial differentiation of water transparency using the GeoDetector package in R. [Results] ① The water transparency of Pingzhai reservoir was most sensitive to the B3 band of Sentinel-2 MSI, and the transparency inversion model constructed by using the band combination B3×B4 as the most sensitive factor had high accuracy (R2=0.81, RMSE=0.11 m, MRE=16.91%). ② The water transparency of Pingzhai reservoir showed a spatial distribution trend of high in the central reservoir area, low in the upstream region of each tributary, and low on both sides of the near water body. Water transparency was greatest in November followed by August and then May. [Conclusion] The contents of total suspended solids, chlorophyll a, and total organic carbon were the main factors affecting the spatial differentiation of water transparency in Pingzhai reservoir. Total phosphorus, total nitrogen, water temperature, and wind speed affected the spatial distribution of water transparency by affecting the content of total suspended solids, chlorophyll a, and total organic carbon in the water.
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spelling doaj.art-3147bf1992704fb688742c90c5b69a812024-03-01T06:41:51ZzhoScience PressShuitu baochi tongbao1000-288X2023-02-0143115816610.13961/j.cnki.stbctb.2023.01.0191000-288X(2023)01-0158-09Remote Sensing Retrieval of Water Transparency for Pingzhai Reservoir Based on Sentinel-2 ImagesChaocheng Wen0Zhongfa Zhou1Yongliu Li2Jie Kong3Jiangting Xie4School of Geography and Environmental Sciences/School of Karst Science, Guizhou Normal University, Guiyang, Guizhou 550001, ChinaSchool of Geography and Environmental Sciences/School of Karst Science, Guizhou Normal University, Guiyang, Guizhou 550001, ChinaSchool of Geography and Environmental Sciences/School of Karst Science, Guizhou Normal University, Guiyang, Guizhou 550001, ChinaSchool of Geography and Environmental Sciences/School of Karst Science, Guizhou Normal University, Guiyang, Guizhou 550001, ChinaSchool of Geography and Environmental Sciences/School of Karst Science, Guizhou Normal University, Guiyang, Guizhou 550001, China[Objective] The variation rule of water transparency and the driving factors of its spatial differentiation were analyzed in order to provide a scientific basis for the management of lake reservoirs and the restoration of lake reservoir ecosystems. [Methods] A remote sensing inversion model of water transparency in Pingzhai reservoir was constructed based on sentinel-2 MSI satellite images and quasi-synchronous measured transparency data collected on May 18, August 26, and November 14, 2020. We quantitatively analyzed the drivers affecting spatial differentiation of water transparency using the GeoDetector package in R. [Results] ① The water transparency of Pingzhai reservoir was most sensitive to the B3 band of Sentinel-2 MSI, and the transparency inversion model constructed by using the band combination B3×B4 as the most sensitive factor had high accuracy (R2=0.81, RMSE=0.11 m, MRE=16.91%). ② The water transparency of Pingzhai reservoir showed a spatial distribution trend of high in the central reservoir area, low in the upstream region of each tributary, and low on both sides of the near water body. Water transparency was greatest in November followed by August and then May. [Conclusion] The contents of total suspended solids, chlorophyll a, and total organic carbon were the main factors affecting the spatial differentiation of water transparency in Pingzhai reservoir. Total phosphorus, total nitrogen, water temperature, and wind speed affected the spatial distribution of water transparency by affecting the content of total suspended solids, chlorophyll a, and total organic carbon in the water.http://stbctb.alljournal.com.cn/stbctben/article/abstract/20230119water transparencysentinel-2 msiremote sensing retrievedgeodetectorpingzhai reservoir
spellingShingle Chaocheng Wen
Zhongfa Zhou
Yongliu Li
Jie Kong
Jiangting Xie
Remote Sensing Retrieval of Water Transparency for Pingzhai Reservoir Based on Sentinel-2 Images
Shuitu baochi tongbao
water transparency
sentinel-2 msi
remote sensing retrieved
geodetector
pingzhai reservoir
title Remote Sensing Retrieval of Water Transparency for Pingzhai Reservoir Based on Sentinel-2 Images
title_full Remote Sensing Retrieval of Water Transparency for Pingzhai Reservoir Based on Sentinel-2 Images
title_fullStr Remote Sensing Retrieval of Water Transparency for Pingzhai Reservoir Based on Sentinel-2 Images
title_full_unstemmed Remote Sensing Retrieval of Water Transparency for Pingzhai Reservoir Based on Sentinel-2 Images
title_short Remote Sensing Retrieval of Water Transparency for Pingzhai Reservoir Based on Sentinel-2 Images
title_sort remote sensing retrieval of water transparency for pingzhai reservoir based on sentinel 2 images
topic water transparency
sentinel-2 msi
remote sensing retrieved
geodetector
pingzhai reservoir
url http://stbctb.alljournal.com.cn/stbctben/article/abstract/20230119
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AT yongliuli remotesensingretrievalofwatertransparencyforpingzhaireservoirbasedonsentinel2images
AT jiekong remotesensingretrievalofwatertransparencyforpingzhaireservoirbasedonsentinel2images
AT jiangtingxie remotesensingretrievalofwatertransparencyforpingzhaireservoirbasedonsentinel2images