506
Views
63
CrossRef citations to date
0
Altmetric
Original Articles

Using Landsat 7 TM data acquired days after a flood event to delineate the maximum flood extent on a coastal floodplain

Pages 959-974 | Received 21 Jan 2002, Accepted 25 Apr 2003, Published online: 13 May 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (6)

Gheorghe Romanescu, Catalin I. Cimpianu, Alin Mihu-Pintilie & Cristian C. Stoleriu. (2017) Historic flood events in NE Romania (post-1990). Journal of Maps 13:2, pages 787-798.
Read now
Arpit Aggarwal. (2016) Exposure, hazard and risk mapping during a flood event using open source geospatial technology. Geomatics, Natural Hazards and Risk 7:4, pages 1426-1441.
Read now
Arpit Aggarwal, Farhat Rafique, Edida Rajesh & Sirajuddin Ahmed. (2016) Urban flood hazard mapping using change detection on wetness transformed images. Hydrological Sciences Journal 61:5, pages 816-825.
Read now
Giorgos Mallinis, Ioannis Z. Gitas, Vassileios Giannakopoulos, Fotis Maris & Maria Tsakiri-Strati. (2013) An object-based approach for flood area delineation in a transboundary area using ENVISAT ASAR and LANDSAT TM data. International Journal of Digital Earth 6:sup2, pages 124-136.
Read now
Juan Diego Giraldo Osorio & Sandra Gabriela García galiano. (2012) Development of a sub-pixel analysis method applied to dynamic monitoring of floods. International Journal of Remote Sensing 33:7, pages 2277-2295.
Read now

Articles from other publishers (57)

Florian Roth, Bernhard Bauer-Marschallinger, Mark Edwin Tupas, Christoph Reimer, Peter Salamon & Wolfgang Wagner. (2023) Sentinel-1-based analysis of the severe flood over Pakistan 2022. Natural Hazards and Earth System Sciences 23:10, pages 3305-3317.
Crossref
Kleomenis Kalogeropoulos, Konstantinos Tsanakas, Nikolaos Stathopoulos, Demetrios E. Tsesmelis & Andreas Tsatsaris. (2023) Cultural Heritage in the Light of Flood Hazard: The Case of the “Ancient” Olympia, Greece. Hydrology 10:3, pages 61.
Crossref
Satomi Kimijima & Masahiko Nagai. (2023) High Spatiotemporal Flood Monitoring Associated with Rapid Lake Shrinkage Using Planet Smallsat and Sentinel-1 Data. Remote Sensing 15:4, pages 1099.
Crossref
Farshad Safavi & Maryam Rahnemoonfar. (2023) Comparative Study of Real-Time Semantic Segmentation Networks in Aerial Images During Flooding Events. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing 16, pages 4-20.
Crossref
Oleksandr Hordiienko, Yevheniia Anpilova, Yevhenii Yakovliev & Oleksiy Rogozhin. 2023. Information and Communication Technologies and Sustainable Development. Information and Communication Technologies and Sustainable Development 337 353 .
Ioanna Zotou, Kleanthis Karamvasis, Vassilia Karathanassi & Vassilios A. Tsihrintzis. (2022) Potential of Two SAR-Based Flood Mapping Approaches in Supporting an Integrated 1D/2D HEC-RAS Model. Water 14:24, pages 4020.
Crossref
Shadi Sadat Baghermanesh, Shabnam Jabari & Heather McGrath. (2022) Urban Flood Detection Using TerraSAR-X and SAR Simulated Reflectivity Maps. Remote Sensing 14:23, pages 6154.
Crossref
Taoli Yang, Hanwen Yu & Yong Wang. (2022) An efficient low-pass-filtering algorithm to de-noise global GRACE data. Remote Sensing of Environment 283, pages 113303.
Crossref
Cinzia Albertini, Andrea Gioia, Vito Iacobellis & Salvatore Manfreda. (2022) Detection of Surface Water and Floods with Multispectral Satellites. Remote Sensing 14:23, pages 6005.
Crossref
Wen Liu, Kazuki Inoue & Fumio Yamazaki. 2022. Remote Sensing of Water‐Related Hazards. Remote Sensing of Water‐Related Hazards 135 147 .
Sai Kiran Kuntla. (2021) An era of Sentinels in flood management: Potential of Sentinel-1, -2, and -3 satellites for effective flood management. Open Geosciences 13:1, pages 1616-1642.
Crossref
Siquan Yang & Haixia He. 2021. Global Drought and Flood. Global Drought and Flood 271 287 .
Ankur Pandit, Suryakant Sawant, Jayantrao Mohite & Srinivasu Pappula. (2021) Assessing InSAR Coherence for Quantification of Agriculture Area Affected by Rainfall Events in Gujrat, India. Assessing InSAR Coherence for Quantification of Agriculture Area Affected by Rainfall Events in Gujrat, India.
Rajesh Kumar. 2021. Advances in Remote Sensing for Natural Resource Monitoring. Advances in Remote Sensing for Natural Resource Monitoring 389 404 .
Andreas Tsatsaris, Kleomenis Kalogeropoulos, Nikolaos Stathopoulos, Panagiota Louka, Konstantinos Tsanakas, Demetrios E. Tsesmelis, Vassilios Krassanakis, George P. Petropoulos, Vasilis Pappas & Christos Chalkias. (2021) Geoinformation Technologies in Support of Environmental Hazards Monitoring under Climate Change: An Extensive Review. ISPRS International Journal of Geo-Information 10:2, pages 94.
Crossref
Ioanna Zotou, Vasilis Bellos, Angeliki Gkouma, Vassilia Karathanassi & Vassilios A. Tsihrintzis. (2020) Using Sentinel-1 Imagery to Assess Predictive Performance of a Hydraulic Model. Water Resources Management 34:14, pages 4415-4430.
Crossref
Kazi Aminul Islam, Mohammad Shahab Uddin, Chiman Kwan & Jiang Li. (2020) Flood Detection Using Multi-Modal and Multi-Temporal Images: A Comparative Study. Remote Sensing 12:15, pages 2455.
Crossref
Juliane Huth, Ursula Gessner, Igor Klein, Hervé Yesou, Xijun Lai, Natascha Oppelt & Claudia Kuenzer. (2020) Analyzing Water Dynamics Based on Sentinel-1 Time Series—a Study for Dongting Lake Wetlands in China. Remote Sensing 12:11, pages 1761.
Crossref
Thibault Catry, Christophe Révillion, Pascal Mouquet & Gwenaëlle Pennober. (2020) Apports de l’imagerie satellite pour le suivi de l’impact des événements cycloniques à Madagascar. EchoGéo:51.
Crossref
Soohyun Kim, Sangku Lee, Tae-Woong Kim & Dongkyun Kim. (2019) Estimation of Flooded Area Using Satellite Imagery and DSM Terrain Data. Journal of the Korean Society of Hazard Mitigation 19:7, pages 471-483.
Crossref
Bilal Ahmad Munir, Sajid Rashid Ahmad & Sidrah Hafeez. (2019) Integrated Hazard Modeling for Simulating Torrential Stream Response to Flash Flood Events. ISPRS International Journal of Geo-Information 9:1, pages 1.
Crossref
Isabel Caballero, Javier Ruiz & Gabriel Navarro. (2019) Sentinel-2 Satellites Provide Near-Real Time Evaluation of Catastrophic Floods in the West Mediterranean. Water 11:12, pages 2499.
Crossref
Sofia Hakdaoui, Anas Emran, Biswajeet Pradhan, Chang-Wook Lee & Salomon Cesar Nguemhe Fils. (2019) A Collaborative Change Detection Approach on Multi-Sensor Spatial Imagery for Desert Wetland Monitoring after a Flash Flood in Southern Morocco. Remote Sensing 11:9, pages 1042.
Crossref
Stathopoulos Nikolaos, Kalogeropoulos Kleomenis, Dimitriou Elias, Skrimizeas Panagiotis, Louka Panagiota, Papadias Vagelis & Chalkias Christos. 2019. Spatial Modeling in GIS and R for Earth and Environmental Sciences. Spatial Modeling in GIS and R for Earth and Environmental Sciences 391 410 .
Rabiul Islam Jony, Alan Woodley, Aishvarya Raj & Dimitri Perrin. (2018) Ensemble Classification Technique for Water Detection in Satellite Images. Ensemble Classification Technique for Water Detection in Satellite Images.
Rajesh Kumar, Rupendra Singh, Hemant Gautam & Manish Kumar Pandey. (2018) Flood hazard assessment of August 20, 2016 floods in Satna District, Madhya Pradesh, India. Remote Sensing Applications: Society and Environment 11, pages 104-118.
Crossref
Zeqiang Chen, Nengcheng Chen, Wenying Du & Jianya Gong. (2018) An active monitoring method for flood events. Computers & Geosciences 116, pages 42-52.
Crossref
Chang Huang, Yun Chen, Shiqiang Zhang & Jianping Wu. (2018) Detecting, Extracting, and Monitoring Surface Water From Space Using Optical Sensors: A Review. Reviews of Geophysics 56:2, pages 333-360.
Crossref
Madhurima Ganguly, Rahul Aynyas, Abhishek Nandan & Prasenjit Mondal. (2018) Hazardous area map: an approach of sustainable urban planning and industrial development—a review. Natural Hazards 91:3, pages 1385-1405.
Crossref
Krishna Kant Singh & Akansha Singh. (2017) Identification of flooded area from satellite images using Hybrid Kohonen Fuzzy C-Means sigma classifier. The Egyptian Journal of Remote Sensing and Space Science 20:1, pages 147-155.
Crossref
Valentina Nikolova & Plamena Zlateva. 2017. Information Technology in Disaster Risk Reduction. Information Technology in Disaster Risk Reduction 254 265 .
Rajesh Kumar. (2016) Flood hazard assessment of 2014 floods in Sonawari sub-district of Bandipore district (Jammu&Kashmir): An application of geoinformatics. Remote Sensing Applications: Society and Environment 4, pages 188-203.
Crossref
Rajesh Kumar & Prasenjit Acharya. (2016) Flood hazard and risk assessment of 2014 floods in Kashmir Valley: a space-based multisensor approach. Natural Hazards 84:1, pages 437-464.
Crossref
Stefania Grimaldi, Yuan Li, Valentijn R. N. Pauwels & Jeffrey P. Walker. (2016) Remote Sensing-Derived Water Extent and Level to Constrain Hydraulic Flood Forecasting Models: Opportunities and Challenges. Surveys in Geophysics 37:5, pages 977-1034.
Crossref
Biswajeet Pradhan, Mahyat Shafapour Tehrany & Mustafa Neamah Jebur. (2016) A New Semiautomated Detection Mapping of Flood Extent From TerraSAR-X Satellite Image Using Rule-Based Classification and Taguchi Optimization Techniques. IEEE Transactions on Geoscience and Remote Sensing 54:7, pages 4331-4342.
Crossref
Seungho Hwang, Kyehyun Kim, Geonhwi Lee & Miran Lee. (2016) A Study on the Development of Automated Damage Estimation System using High Resolution Satellite Imagery. Journal of Korean Society of Hazard Mitigation 16:2, pages 161-172.
Crossref
N. Mueller, A. Lewis, D. Roberts, S. Ring, R. Melrose, J. Sixsmith, L. Lymburner, A. McIntyre, P. Tan, S. Curnow & A. Ip. (2016) Water observations from space: Mapping surface water from 25 years of Landsat imagery across Australia. Remote Sensing of Environment 174, pages 341-352.
Crossref
Ratna Dewi, Wietske Bijker, Alfred Stein & Muh Marfai. (2016) Fuzzy Classification for Shoreline Change Monitoring in a Part of the Northern Coastal Area of Java, Indonesia. Remote Sensing 8:3, pages 190.
Crossref
Yong Wang. (2015) Advances in Remote Sensing of Flooding. Water 7:11, pages 6404-6410.
Crossref
Panchagnula Manjusree, Chandra Mohan Bhatt, Asiya Begum, Goru Srinivasa Rao & Veerubhotla Bhanumurthy. (2015) A decadal historical satellite data analysis for flood hazard evaluation: A case study of B ihar ( N orth I ndia) . Singapore Journal of Tropical Geography 36:3, pages 308-323.
Crossref
Quanlong Feng, Jianhua Gong, Jiantao Liu & Yi Li. (2015) Flood Mapping Based on Multiple Endmember Spectral Mixture Analysis and Random Forest Classifier—The Case of Yuyao, China. Remote Sensing 7:9, pages 12539-12562.
Crossref
Stephen Chignell, Ryan Anderson, Paul Evangelista, Melinda Laituri & David Merritt. (2015) Multi-Temporal Independent Component Analysis and Landsat 8 for Delineating Maximum Extent of the 2013 Colorado Front Range Flood. Remote Sensing 7:8, pages 9822-9843.
Crossref
Victor Klemas. (2015) Remote Sensing of Floods and Flood-Prone Areas: An Overview. Journal of Coastal Research 314, pages 1005-1013.
Crossref
Quanlong Feng, Jiantao Liu & Jianhua Gong. (2015) Urban Flood Mapping Based on Unmanned Aerial Vehicle Remote Sensing and Random Forest Classifier—A Case of Yuyao, China. Water 7:12, pages 1437-1455.
Crossref
Gareth Ireland, Michele Volpi & George Petropoulos. (2015) Examining the Capability of Supervised Machine Learning Classifiers in Extracting Flooded Areas from Landsat TM Imagery: A Case Study from a Mediterranean Flood. Remote Sensing 7:3, pages 3372-3399.
Crossref
Konstantinos M. Andreadis & Guy J-P. Schumann. (2014) Estimating the impact of satellite observations on the predictability of large-scale hydraulic models. Advances in Water Resources 73, pages 44-54.
Crossref
Richard L. Miller, Ramón López, Ryan P. Mulligan, Robert E. Reed, Cheng-Chien Liu, Christopher J. Buonassissi & Matthew M. Brown. 2014. Remote Sensing and Modeling. Remote Sensing and Modeling 333 364 .
Ashraf DewanAshraf M. Dewan. 2013. Floods in a Megacity. Floods in a Megacity 35 74 .
R.O. Strobl, F. Forte & T. Lonigro. (2012) Comparison of the feasibility of three flood‐risk extent delineation techniques using Geographic Information System: case study in T avoliere d elle P uglie, I taly . Journal of Flood Risk Management 5:3, pages 245-257.
Crossref
Kumar Gaurav, R. Sinha & P. K. Panda. (2011) The Indus flood of 2010 in Pakistan: a perspective analysis using remote sensing data. Natural Hazards 59:3, pages 1815-1826.
Crossref
Sadiq I. Khan, Yang Hong, Jiahu Wang, Koray K. Yilmaz, Jonathan J. Gourley, Robert F. Adler, G. Robert Brakenridge, Fritz Policelli, Shahid Habib & Daniel Irwin. (2011) Satellite Remote Sensing and Hydrologic Modeling for Flood Inundation Mapping in Lake Victoria Basin: Implications for Hydrologic Prediction in Ungauged Basins. IEEE Transactions on Geoscience and Remote Sensing 49:1, pages 85-95.
Crossref
Renzong Ruan & Li Zhang. (2010) Discrepancy of Extraction of Standing Water between Index Methods and TM5 Thresholding. Discrepancy of Extraction of Standing Water between Index Methods and TM5 Thresholding.
Jean-Marie Cariolet. (2010) Use of high water marks and eyewitness accounts to delineate flooded coastal areas: The case of Storm Johanna (10 March 2008) in Brittany, France. Ocean & Coastal Management 53:11, pages 679-690.
Crossref
John Wiens, Robert Sutter, Mark Anderson, Jon Blanchard, Analie Barnett, Naikoa Aguilar-Amuchastegui, Chadwick Avery & Stephen Laine. (2009) Selecting and conserving lands for biodiversity: The role of remote sensing. Remote Sensing of Environment 113:7, pages 1370-1381.
Crossref
Scott Curtis, Thomas W. Crawford & Scott A. Lecce. (2007) A comparison of TRMM to other basin-scale estimates of rainfall during the 1999 Hurricane Floyd flood. Natural Hazards 43:2, pages 187-198.
Crossref
M. Gianinetto, P. Villa & G. Lechi. (2006) Postflood damage evaluation using Landsat TM and ETM+ data integrated with DEM. IEEE Transactions on Geoscience and Remote Sensing 44:1, pages 236-243.
Crossref
Jessika Töyrä & Alain Pietroniro. (2005) Towards operational monitoring of a northern wetland using geomatics-based techniques. Remote Sensing of Environment 97:2, pages 174-191.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.