267
Multispectral Satellite Data for Flood Monitoring and Inundation Mapping
Khan, S. I., Adhikari, P., Hong, Y., Vergara, H., Adler, R. F., Policelli, F., Irwin, D., Korme,
T., and Okello, L. (2011a). Hydroclimatology of Lake Victoria region using hydrologic
model and satellite remote sensing data. Hydrology and Earth System Science, 15(1),
107–117.
Khan, S. I., Hong, Y., Wang, J., Yilmaz, K., Gourley, J. J., Adler, R. F., Brakenridge, G. R.,
Policelli, F., Habib, S., and Irwin, D. (2009). Satellite remote sensing and hydrological
modeling for flood inundation mapping in Lake Victoria Basin: Implications for hydrologic prediction in ungauged basins. AGU Fall Meeting, San Francisco, CA.
Khan, S. I., Hong, Y., Wang, J., Yilmaz, K. K., Gourley, J. J., Adler, R. F., Brakenridge, G. R.,
Policelli, F., Habib, S., and Irwin, D. (2011b). 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), 85–95.
Lang, R. L., Shao, G. F., Pijanowski, B. C., and Farnsworth, R. L. (2008). Optimizing unsupervised classifications of remotely sensed imagery with a data-assisted labeling approach.
Computers & Geosciences, 34(12), 1877–1885.
Lehner, B., Verdin, K., and Jarvis, A. (2008). New global hydrography derived from spaceborne elevation data. EOS, 89(10), 93–104.
McCarthy, J. J. (2001). Climate Change 2001: Impacts, Adaptation, and Vulnerability:
Contribution of Working Group II to the Third Assessment Report of the Intergovernmental Panel on Climate Change. Cambridge University Press, Cambridge, UK.
Nash, J. E. and Sutcliffe, J. V. (1970). River flow forecasting through conceptual models. Part
I—A discussion of principles. Journal of Hydrology, 10(3), 282–290.
Puech, C. and Raclot, D. (2002). Using geographical information systems and aerial photo graphs
to determine water levels during floods. Hydrological Processes, 16(8), 1593–1602.
Rabus, B., Eineder, M., Roth, A., and Bamler, R. (2003). The shuttle radar topography mission—A new class of digital elevation models acquired by spaceborne radar. ISPRS
Journal of Photogrammetry and Remote Sensing, 57(4), 241–262.
Rasid, H. and Pramanik, M. A. H. (1993). Areal extent of the 1988 flood in Bangladesh: How
much did the satellite imagery show? Natural Hazards, 8(2), 189–200.
Sandholt, I., Nyborg, L., Fog, B., Lô, M., Bocoum, O., and Rasmussen, K. (2003). Remote
sensing techniques for flood monitoring in the Senegal River Valley. Geografisk
Tidsskrift, Danish Journal of Geography, 103(1), 71.
Schumann, G., Hostache, R., Puech, C., Hoffmann, L., Matgen, P., Pappenberger, F., and Pfister,
L. (2007). High-resolution 3-D flood information from radar imagery for flood hazard
management. IEEE Transactions on Geoscience and Remote Sensing, 45(6), 1715–1725.
Smith, L. C. (1997). Satellite remote sensing of river inundation area, stage, and discharge: A
review. Hydrological Processes, 11(10), 1427–1439.
Stancalie, G., Diamandi, A., Corbus, C., and Catana, S. (2006). Application of EO data in
flood forecasting for the Crisuri Basin, Romania. In Flood Risk Management: Hazards,
Vulnerability and Mitigation Measures, vol. 67, edited by J. Schanze, E. Zeman, and J.
Marsalek, pp. 101–113. Springer, The Netherlands.
Wang, Y. (2004). Using Landsat 7 TM data acquired days after a flood event to delineate the
maximum flood extent on a coastal floodplain. International Journal of Remote Sensing,
25(5), 959–974.
Wang, Y., Colby, J. D., and Mulcahy, K. A. (2002). An efficient method for mapping flood
extent in a coastal floodplain using Landsat TM and DEM data. International Journal of
Remote Sensing, 23(18), 3681–3696.
Wang, J., Hong, Y., Li, L., Gourley, J. J., Khan, S. I., Yilmaz, K. K., Adler, R. F., Policelli, F. S.,
Habib, S., Irwn, D., Limaye, A. S., Korme, T., and Okello, L. (2011). The coupled routing and excess storage (CREST) distributed hydrological model. Hydrological Sciences
Journal, 56(1), 84–98.
Multispectral Satellite Data for Flood Monitoring and Inundation Mapping
Khan, S. I., Adhikari, P., Hong, Y., Vergara, H., Adler, R. F., Policelli, F., Irwin, D., Korme,
T., and Okello, L. (2011a). Hydroclimatology of Lake Victoria region using hydrologic
model and satellite remote sensing data. Hydrology and Earth System Science, 15(1),
107–117.
Khan, S. I., Hong, Y., Wang, J., Yilmaz, K., Gourley, J. J., Adler, R. F., Brakenridge, G. R.,
Policelli, F., Habib, S., and Irwin, D. (2009). Satellite remote sensing and hydrological
modeling for flood inundation mapping in Lake Victoria Basin: Implications for hydrologic prediction in ungauged basins. AGU Fall Meeting, San Francisco, CA.
Khan, S. I., Hong, Y., Wang, J., Yilmaz, K. K., Gourley, J. J., Adler, R. F., Brakenridge, G. R.,
Policelli, F., Habib, S., and Irwin, D. (2011b). 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), 85–95.
Lang, R. L., Shao, G. F., Pijanowski, B. C., and Farnsworth, R. L. (2008). Optimizing unsupervised classifications of remotely sensed imagery with a data-assisted labeling approach.
Computers & Geosciences, 34(12), 1877–1885.
Lehner, B., Verdin, K., and Jarvis, A. (2008). New global hydrography derived from spaceborne elevation data. EOS, 89(10), 93–104.
McCarthy, J. J. (2001). Climate Change 2001: Impacts, Adaptation, and Vulnerability:
Contribution of Working Group II to the Third Assessment Report of the Intergovernmental Panel on Climate Change. Cambridge University Press, Cambridge, UK.
Nash, J. E. and Sutcliffe, J. V. (1970). River flow forecasting through conceptual models. Part
I—A discussion of principles. Journal of Hydrology, 10(3), 282–290.
Puech, C. and Raclot, D. (2002). Using geographical information systems and aerial photo graphs
to determine water levels during floods. Hydrological Processes, 16(8), 1593–1602.
Rabus, B., Eineder, M., Roth, A., and Bamler, R. (2003). The shuttle radar topography mission—A new class of digital elevation models acquired by spaceborne radar. ISPRS
Journal of Photogrammetry and Remote Sensing, 57(4), 241–262.
Rasid, H. and Pramanik, M. A. H. (1993). Areal extent of the 1988 flood in Bangladesh: How
much did the satellite imagery show? Natural Hazards, 8(2), 189–200.
Sandholt, I., Nyborg, L., Fog, B., Lô, M., Bocoum, O., and Rasmussen, K. (2003). Remote
sensing techniques for flood monitoring in the Senegal River Valley. Geografisk
Tidsskrift, Danish Journal of Geography, 103(1), 71.
Schumann, G., Hostache, R., Puech, C., Hoffmann, L., Matgen, P., Pappenberger, F., and Pfister,
L. (2007). High-resolution 3-D flood information from radar imagery for flood hazard
management. IEEE Transactions on Geoscience and Remote Sensing, 45(6), 1715–1725.
Smith, L. C. (1997). Satellite remote sensing of river inundation area, stage, and discharge: A
review. Hydrological Processes, 11(10), 1427–1439.
Stancalie, G., Diamandi, A., Corbus, C., and Catana, S. (2006). Application of EO data in
flood forecasting for the Crisuri Basin, Romania. In Flood Risk Management: Hazards,
Vulnerability and Mitigation Measures, vol. 67, edited by J. Schanze, E. Zeman, and J.
Marsalek, pp. 101–113. Springer, The Netherlands.
Wang, Y. (2004). Using Landsat 7 TM data acquired days after a flood event to delineate the
maximum flood extent on a coastal floodplain. International Journal of Remote Sensing,
25(5), 959–974.
Wang, Y., Colby, J. D., and Mulcahy, K. A. (2002). An efficient method for mapping flood
extent in a coastal floodplain using Landsat TM and DEM data. International Journal of
Remote Sensing, 23(18), 3681–3696.
Wang, J., Hong, Y., Li, L., Gourley, J. J., Khan, S. I., Yilmaz, K. K., Adler, R. F., Policelli, F. S.,
Habib, S., Irwn, D., Limaye, A. S., Korme, T., and Okello, L. (2011). The coupled routing and excess storage (CREST) distributed hydrological model. Hydrological Sciences
Journal, 56(1), 84–98.
