23.5.2.1 Radar, SAR for Water Level Monitoring, Lake Level, Synthetic Aperture Radar

Chapter Contents (Back)
SAR. Radar. Water Level. Lake Level. Synthetic Aperture Radar. 2507

See also Gravity Measurements and Use.
See also GRACE Data for Water Level Monitoring, Lake Level.

Barreto, T.L.M.[Thiago Luiz Morais], Almeida, J.[Jurandy], Cappabianco, F.A.M.[Fábio Augusto Menocci],
Estimating accurate water levels for rivers and reservoirs by using SAR products: A multitemporal analysis,
PRL(83, Part 2), No. 1, 2016, pp. 224-233.
Elsevier DOI 1609
Remote sensing BibRef

van den Hoek, J.[Jamon], Getirana, A.[Augusto], Jung, H.C.[Hahn Chul], Okeowo, M.A.[Modurodoluwa A.], Lee, H.[Hyongki],
Monitoring Reservoir Drought Dynamics with Landsat and Radar/Lidar Altimetry Time Series in Persistently Cloudy Eastern Brazil,
RS(11), No. 7, 2019, pp. xx-yy.
DOI Link 1904
BibRef

Melo, D.D.C.D.[Davi De C. D.], Getirana, A.[Augusto],
Radar Altimetry as a Proxy for Determining Terrestrial Water Storage Variability in Tropical Basins,
RS(11), No. 21, 2019, pp. xx-yy.
DOI Link 1911
BibRef

Vickers, H.[Hannah], Malnes, E.[Eirik], Hřgda, K.A.[Kjell-Arild],
Long-Term Water Surface Area Monitoring and Derived Water Level Using Synthetic Aperture Radar (SAR) at Altevatn, a Medium-Sized Arctic Lake,
RS(11), No. 23, 2019, pp. xx-yy.
DOI Link 1912
BibRef

Park, E.[Edward], Merino, E.[Eder], Lewis, Q.W.[Quinn W.], Lindsey, E.O.[Eric O.], Yang, X.[Xiankun],
A Pathway to the Automated Global Assessment of Water Level in Reservoirs with Synthetic Aperture Radar (SAR),
RS(12), No. 8, 2020, pp. xx-yy.
DOI Link 2004
BibRef

Darvishi, M.[Mehdi], Destouni, G.[Georgia], Aminjafari, S.[Saeid], Jaramillo, F.[Fernando],
Multi-Sensor InSAR Assessment of Ground Deformations around Lake Mead and Its Relation to Water Level Changes,
RS(13), No. 3, 2021, pp. xx-yy.
DOI Link 2102
BibRef

Druce, D.[Daniel], Tong, X.Y.[Xiao-Ye], Lei, X.[Xia], Guo, T.[Tao], Kittel, C.M.M.[Cecile M.M.], Grogan, K.[Kenneth], Tottrup, C.[Christian],
An Optical and SAR Based Fusion Approach for Mapping Surface Water Dynamics over Mainland China,
RS(13), No. 9, 2021, pp. xx-yy.
DOI Link 2105
BibRef

Frappart, F.[Frédéric], Blarel, F.[Fabien], Fayad, I.[Ibrahim], Bergé-Nguyen, M.[Muriel], Crétaux, J.F.[Jean-François], Shu, S.[Song], Schregenberger, J.[Joël], Baghdadi, N.[Nicolas],
Evaluation of the Performances of Radar and Lidar Altimetry Missions for Water Level Retrievals in Mountainous Environment: The Case of the Swiss Lakes,
RS(13), No. 11, 2021, pp. xx-yy.
DOI Link 2106
BibRef

Lee, Y.K.[Yoon-Kyung], Hong, S.H.[Sang-Hoon], Kim, S.W.[Sang-Wan],
Monitoring of Water Level Change in a Dam from High-Resolution SAR Data,
RS(13), No. 18, 2021, pp. xx-yy.
DOI Link 2109
BibRef

Souza, W.[Wendson_de_Oliveira], de Moura Reis, L.G.[Luis Gustavo], Ruiz-Armenteros, A.M.[Antonio Miguel], Veleda, D.[Doris], Neto, A.R.[Alfredo Ribeiro], Fragoso, Jr., C.R.[Carlos Ruberto], da Silva Pereira Cabral, J.J.[Jaime Joaquim], Montenegro, S.M.G.L.[Suzana Maria Gico Lima],
Analysis of Environmental and Atmospheric Influences in the Use of SAR and Optical Imagery from Sentinel-1, Landsat-8, and Sentinel-2 in the Operational Monitoring of Reservoir Water Level,
RS(14), No. 9, 2022, pp. xx-yy.
DOI Link 2205
BibRef

Tottrup, C.[Christian], Druce, D.[Daniel], Meyer, R.P.[Rasmus Probst], Christensen, M.[Mads], Riffler, M.[Michael], Dulleck, B.[Bjoern], Rastner, P.[Philipp], Jupova, K.[Katerina], Sokoup, T.[Tomas], Haag, A.[Arjen], Cordeiro, M.C.R.[Mauricio C. R.], Martinez, J.M.[Jean-Michel], Franke, J.[Jonas], Schwarz, M.[Maximilian], Vanthof, V.[Victoria], Liu, S.[Suxia], Zhou, H.[Haowei], Marzi, D.[David], Rudiyanto, R.[Rudiyanto], Thompson, M.[Mark], Hiestermann, J.[Jens], Alemohammad, H.[Hamed], Masse, A.[Antoine], Sannier, C.[Christophe], Wangchuk, S.[Sonam], Schumann, G.[Guy], Giustarini, L.[Laura], Hallowes, J.[Jason], Markert, K.[Kel], Paganini, M.[Marc],
Surface Water Dynamics from Space: A Round Robin Intercomparison of Using Optical and SAR High-Resolution Satellite Observations for Regional Surface Water Detection,
RS(14), No. 10, 2022, pp. xx-yy.
DOI Link 2206
BibRef

Ronczyk, L.[Levente], Zelenka-Hegyi, A.[András], Török, G.[Gábor], Orbán, Z.[Zoltán], Defilippi, M.[Marco], Kovács, I.P.[István Péter], Kovács, D.M.[Dániel Márton], Burai, P.[Péter], Pasquali, P.[Paolo],
Nationwide, Operational Sentinel-1 Based InSAR Monitoring System in the Cloud for Strategic Water Facilities in Hungary,
RS(14), No. 14, 2022, pp. xx-yy.
DOI Link 2208
BibRef

Fernández, D.G.[Darwin Gómez], López, R.S.[Rolando Salas], Briceńo, N.B.R.[Nilton B. Rojas], López, J.O.S.[Jhonsy O. Silva], Oliva, M.[Manuel],
Dynamics of the Burlan and Pomacochas Lakes Using SAR Data in GEE, Machine Learning Classifiers, and Regression Methods,
IJGI(11), No. 11, 2022, pp. xx-yy.
DOI Link 2212
BibRef

Oularé, S.[Sékouba], Sokeng, V.C.J.[Valčre-Carin Jofack], Kouamé, K.F.[Koffi Fernand], Komenan, C.A.K.[Christian Armel Kouassi], Danumah, J.H.[Jean Homian], Mertens, B.[Benoit], Akpa, Y.L.[You Lucette], Catry, T.[Thibault], Pillot, B.[Benjamin],
Contribution of Sentinel-3A Radar Altimetry Data to the Study of the Water Level Variations in Lake Buyo (West of Cote d'Ivoire),
RS(14), No. 21, 2022, pp. xx-yy.
DOI Link 2212
BibRef

Xu, J.[Jia], Xia, M.[Min], Ferreira, V.G.[Vagner G.], Wang, D.M.[Dong-Mei], Liu, C.B.[Chong-Bin],
Estimating and Assessing Monthly Water Level Changes of Reservoirs and Lakes in Jiangsu Province Using Sentinel-3 Radar Altimetry Data,
RS(16), No. 5, 2024, pp. 808.
DOI Link 2403
BibRef

Declaro, A.[Alexis], Kanae, S.[Shinjiro],
Enhancing Surface Water Monitoring through Multi-Satellite Data-Fusion of Landsat-8/9, Sentinel-2, and Sentinel-1 SAR,
RS(16), No. 17, 2024, pp. 3329.
DOI Link 2409
BibRef

Domingo, X.[Xavier], Gibert, F.[Ferran], Molina, R.[Robert], Escorihuela, M.J.[Maria Jose],
Improved Inland Water Level Estimates with Sentinel-6 Fully Focused SAR Processing: A Case Study in the Ebre River Basin,
RS(17), No. 3, 2025, pp. 531.
DOI Link 2502
BibRef

Moore, P.[Philip], Pearson, C.[Christopher],
Phase Shift Analysis of Cryosat-2 SARin Waveforms: Inland Water Off-Pointing Corrections,
RS(17), No. 21, 2025, pp. 3627.
DOI Link 2511
Satellite altimetry. BibRef

Li, W.[Wei], Chen, L.[Liangyu], Zhang, Y.F.[Yun-Fei], Sui, B.[Bing], Du, D.S.[Dong-Sheng], Han, Y.[Yu], Chen, L.[Leishi],
Spatiotemporal Dynamics of Dongting Lake During the Flood Season Using Long Time Series SAR Imagery on Google Earth Engine,
RS(18), No. 13, 2026, pp. 2150.
DOI Link 2607
BibRef

Li, Y.X.[Yi-Xuan], Zhang, Y.H.[Yun-Hua], Li, D.[Dong], Song, J.Y.[Jia-Yi],
Synergistic SAR and Wide-Swath Interferometric Altimetry Observations for Estimating Flood Dynamics and Water Storage Variations in East Dongting Lake,
RS(18), No. 14, 2026, pp. 2283.
DOI Link 2608
BibRef


Chapter on Remote Sensing General Issue, Land Use, Land Cover continues in
GRACE Data for Water Level Monitoring, Lake Level .


Last update:Sep 21, 2026 at 18:29:27