7. Congalton RG, Green K (1995) The ABCs of GIS: an introduction to geographic information
systems. In: Lyon JG, Mccarthy J (eds) Wetland and environmental applications of GIS. CRC
Press, Inc., Boca Raton, p 16
8. DeMers MN (2000) Fundamentals of geographic information systems, 2nd edn. John Wiley &
Sons, Inc., New York, p 498
9. Darkwah SO (1997) Analyses of Beach Changes Around A River Mouth Using Satellite Data
and Numerical Model, Dissertation presented to the united graduate school, Kagoshima
University
10. Blasco F, Bellan MF, Chaudhury MU (1992) Estimating the extent of floods in Bangladesh
using SPOT data. Remote Sens d 39(3):167–178
11. Philipson WR, Hafker WR (1981) Manual versus digital Landsat analysis for delineating river
flooding. Photogramm Eng 47(9):1351–1356
12. Wang Y, Colby J, Mulcahy K (2001) An efficient method for mapping flood extent in a coastal
floodplain by Landsat TM and DEM data. Int J Remote Sens:20
13. Jone JL, Haluska TL, Williamson AK, Erwin ML. Updating flood maps efficiently: Building on
existing hydraulic information and modern elevation data with a GIS, U.S. Geological Survey
Open-File Report 98–200
14. Darkwah SO, Deguchi C, Sugio S, Kunitake M (1998) A simple method to estimate nearshore
zone water depth. J Remote Sens Soc Japan 18(2):13–27
15. Jensen JR, Huang X, Mackey HE (1997) Remote sensing of successional changes in wetland
vegetation as monitored during a four-year drawdown of a former cooling lake. Appl Geogr
Stud 1(1):31–44
16. Bryant ES, Pangburn T, Bolus RL, Pedrick GA, Peacock G, Tracy BG, Evelyn JB (1999)
Painted rock reservoir: water surface area and storage capacity estimate derived from Landsat
data classification US Army Corps of Engineers Special Report 99–6
17. Feng J (1995) Suspended sediment concentrations analysis using TM, spot images and GIS
technique: a case study of the Chao Phraya estuary, Masters thesis presented to Asian Institute
of Technology, Thailand
18. Silberbauer MJ (1997) The application of geographic information systems to water quality
monitoring. Remote sensing and geographic information systems for design and operation of
water resources systems. Proceedings of Rabat symposium S3, April 1997, IAHS Publication,
No. 242, 189–195.
19. Deutsch M, Ruggles FH (1974) Optical data processing and projected applications of the ERTS1 imagery covering the 1973 Mississippi River Valley floods. Water Res Bull 10(5):1023–1039
20. Struve H, Judson FE (1979) Development of stage area tables for the Yazoo backwater area
using Landsat data. Proceedings of the U.S. Army Corps of Engineers Remote Sensing
Symposium, Reston, Virginia, 193–199
21. Darkwah SO, Scoville MS (2001) Floodplain mapping using remote sensing, GIS and hydrological/hydraulic models. Proceeding of AWRA/UCOWR on Decision Support Systems for
Water Resources Management, Snowbird, Utah, 315–320
22. Sonu CJ (1965) Study of shore processes with the aid of aerial photogrammetry. Photogram Eng
30(6):404–406
23. El Ashry MT, Wanless HR (1967) Shoreline features and changes. Photogram Eng 33
(2):184–189
24. DanDanforth WW, Theiler ER (1992) Digital Shoreline Analysis System Users Guide, Reston,
Virginia, U.S. Geological Survey Open-File Report Number 92-355, 42
25. Darkwah SO, Kunitake M, Sugio S, Deguchi C, Kondo F, Imayama K (1998) Estimation of
longshore sediment transport rate using deep water wave data and sediment grain size, Transaction of the Japanese Society of Irrigation, Drainage and Reclamation Engineering, No
193, 159–167
26. Abdullah K, Din ZB, Mahamod Y, Rainis R, MatJafri MZ (2000) Remote sensing of total
suspended solids in Penang coastal waters, Malaysia. Proceeding Asian Conference on Remote
Sensing, 312
234
S. O. Darkwah et al.
systems. In: Lyon JG, Mccarthy J (eds) Wetland and environmental applications of GIS. CRC
Press, Inc., Boca Raton, p 16
8. DeMers MN (2000) Fundamentals of geographic information systems, 2nd edn. John Wiley &
Sons, Inc., New York, p 498
9. Darkwah SO (1997) Analyses of Beach Changes Around A River Mouth Using Satellite Data
and Numerical Model, Dissertation presented to the united graduate school, Kagoshima
University
10. Blasco F, Bellan MF, Chaudhury MU (1992) Estimating the extent of floods in Bangladesh
using SPOT data. Remote Sens d 39(3):167–178
11. Philipson WR, Hafker WR (1981) Manual versus digital Landsat analysis for delineating river
flooding. Photogramm Eng 47(9):1351–1356
12. Wang Y, Colby J, Mulcahy K (2001) An efficient method for mapping flood extent in a coastal
floodplain by Landsat TM and DEM data. Int J Remote Sens:20
13. Jone JL, Haluska TL, Williamson AK, Erwin ML. Updating flood maps efficiently: Building on
existing hydraulic information and modern elevation data with a GIS, U.S. Geological Survey
Open-File Report 98–200
14. Darkwah SO, Deguchi C, Sugio S, Kunitake M (1998) A simple method to estimate nearshore
zone water depth. J Remote Sens Soc Japan 18(2):13–27
15. Jensen JR, Huang X, Mackey HE (1997) Remote sensing of successional changes in wetland
vegetation as monitored during a four-year drawdown of a former cooling lake. Appl Geogr
Stud 1(1):31–44
16. Bryant ES, Pangburn T, Bolus RL, Pedrick GA, Peacock G, Tracy BG, Evelyn JB (1999)
Painted rock reservoir: water surface area and storage capacity estimate derived from Landsat
data classification US Army Corps of Engineers Special Report 99–6
17. Feng J (1995) Suspended sediment concentrations analysis using TM, spot images and GIS
technique: a case study of the Chao Phraya estuary, Masters thesis presented to Asian Institute
of Technology, Thailand
18. Silberbauer MJ (1997) The application of geographic information systems to water quality
monitoring. Remote sensing and geographic information systems for design and operation of
water resources systems. Proceedings of Rabat symposium S3, April 1997, IAHS Publication,
No. 242, 189–195.
19. Deutsch M, Ruggles FH (1974) Optical data processing and projected applications of the ERTS1 imagery covering the 1973 Mississippi River Valley floods. Water Res Bull 10(5):1023–1039
20. Struve H, Judson FE (1979) Development of stage area tables for the Yazoo backwater area
using Landsat data. Proceedings of the U.S. Army Corps of Engineers Remote Sensing
Symposium, Reston, Virginia, 193–199
21. Darkwah SO, Scoville MS (2001) Floodplain mapping using remote sensing, GIS and hydrological/hydraulic models. Proceeding of AWRA/UCOWR on Decision Support Systems for
Water Resources Management, Snowbird, Utah, 315–320
22. Sonu CJ (1965) Study of shore processes with the aid of aerial photogrammetry. Photogram Eng
30(6):404–406
23. El Ashry MT, Wanless HR (1967) Shoreline features and changes. Photogram Eng 33
(2):184–189
24. DanDanforth WW, Theiler ER (1992) Digital Shoreline Analysis System Users Guide, Reston,
Virginia, U.S. Geological Survey Open-File Report Number 92-355, 42
25. Darkwah SO, Kunitake M, Sugio S, Deguchi C, Kondo F, Imayama K (1998) Estimation of
longshore sediment transport rate using deep water wave data and sediment grain size, Transaction of the Japanese Society of Irrigation, Drainage and Reclamation Engineering, No
193, 159–167
26. Abdullah K, Din ZB, Mahamod Y, Rainis R, MatJafri MZ (2000) Remote sensing of total
suspended solids in Penang coastal waters, Malaysia. Proceeding Asian Conference on Remote
Sensing, 312
234
S. O. Darkwah et al.
