Drainage Basin Shape Indices to Understanding Channel Hydraulics
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Agarwal KK, Bali R, Singh PV (2008) Morphometric analysis for the neotectonic evaluation of the Pein River Basin, Lower Subansiri district, Arunachal Pradesh, India. J Indian Soc Eng Geol 35:163–170
Ahmed SA, Chandrashekarappa KN, Raj SK, Nischitha V, Kavitha G (2010) Evaluation of morphometric parameters derived from ASTER and SRTM DEM—a study on Bandihole sub-watershed basin in Karnataka. Journal of the Indian Society of Remote Sensing 38(2):227–238
Angillieri MYE (2007) Morphometric analysis of Colanguil river basin and flash flood hazard, San Juan, Argentina. Environ Geol 55:1. https://doi.org/10.1007/s00254-007-0969-2
Bali R, Agarwal KK, Nawaz Ali S, Rastogi SK, Krishna K (2012) Drainage morphometry of Himalayan Glacio-fluvial basin, India: Hydrologic and neotectonic implications. Environ Earth Sci 66(4):1163–1174
Black PE (1972) Hydrograph responses to geomorphic model watershed characteristics and precipitation variables. J Hydrol 17(4):309–329
Bras RL (1990) Hydrology: an introduction to hydrologic science. Addison-Wesley-Longman, Reading, Mass
Breyer SP, Snow RS (1992) Drainage basin perimeters: a fractal significance. Geomorphology 5(1–2):143–157
Chakrabarti B (1985) A geomorphological analysis of the Mayurakshi river basin, unpublished Ph.D. thesis. The University of Burdwan: India
Chorley RJ, Malm DEG, Pogorzelski HA (1957) A new standard for estimating drainage basin shape. Am J Sci 255:138–141
Corps of Engineers (1949) Dept. of the Army, Washington District, Unit hydrograph compilations: Civil works inv., Project CW 153
Dick GS, Anderson RS, Sampson DE (1997) Controls on flash flood magnitude and hydrograph shape, upper Blue Hills badlands. Utah Geol 25(1):45–48
Farhan Y, Anbar A, Enaba O, Al-Shaikh N (2015) Quantitative analysis of geomorphometric parameters of Wadi Kerak, Jordan, using remote sensing and GIS. J Water Resour Prot 7:456–475. https://doi.org/10.4236/jwarp.2015.76037
Gardiner V (1975) Drainage basin morphometry. Br Geomorph Res Group Tech Bull 14:48
Gardiner V (1981) Drainage basin morphometry. In: Goudie A (ed) Geomorphological Techniques. Allen and Unwin, London, pp 47–55
Gardiner V, Park CC (1978) Drainage basin morphometry: Review and assessment. Prog Phys Geogr 2(1):1–35
Gravelius H (1914) Grundriß der gesamten Gewâsserkunde, Band 1: Flußkunde (Compendium of Hydrology, vol. 1: Rivers, in German). Goschen, Berlin, Germany
Gregory KJ, Walling DE (1973) Drainage basin form and process. Edward Arnold, London, p 456
Guidolini JF, Ometto JPHB, Nery TD, Arcoverde GFB, Giarolla A (2020) Hydro-geomorphological characterization of the Rio Grande Basin, Brazil, using geospatial approach. Sustain Water Resour Manag 6(5):1–10. https://doi.org/10.1007/s40899-020-00454-z
Hack JT (1957) Studies of longitudinal stream profiles in Virginia and Maryland (vol. 294). US Government Printing Office
Harbaugh TE (1966) Time distribution of runoff from watersheds. Ph.d. Dissertation, University of Illinois, Urbana, II1. pp 130
Horton RE (1945) Erosional development of streams and their drainage basins; hydrophysical approach to quantitative morphology. Bull Geol Soc Am 56:275–370, 40 Figs
Islam A, Deb Barman S (2020) Drainage basin morphometry and evaluating its role on flood-inducing capacity of tributary basins of Mayurakshi River, India. SN Appl Sci 2:1–23. https://doi.org/10.1007/s42452-020-2839-4
Islam A, Sarkar B (2020) Analysing flood history and simulating the nature of future floods using Gumbel method and Log-Pearson Type III: the case of the Mayurakshi River Basin, India. Bull Geogr Phys Geogr Ser 19(1):43–69
Jarvis RS (1976) Classification of nested tributary basins in the analysis of drainage basin shape. Water Resour Res 12:1151–1164
Knighton AD (1981) Asymmetry of river channel cross-sections: Part I. Quantitative indices. Earth Surf Process Landf 6:581–588. https://doi.org/10.1002/esp.3290060607
Kudnar NS, Rajasekhar M (2020) A study of the morphometric analysis and cycle of erosion in Waingangā Basin, India. Model Earth Syst Environ 6(1):311–327
Kumar B, Venkatesh M, Triphati A (2018) A GIS-based approach in drainage morphometric analysis of Rihand River Basin. Central India. Sustain Water Resour Manag 4(1):45–54. https://doi.org/10.1007/s40899-017-0118-3
Linsley RK, Kohler MA, Paulhus JLH (1949) Applied hydrology. McGraw Hill Book Co., Inc, New York, p 689
McArthur DS, Ehrlich R (1977) An efficiency evaluation of four drainage basin shape ratios. Prof Geogr 29(3):290–295. https://doi.org/10.1111/j.0033-0124.1977.00290.x
Melton MA (1958) Correlation structure of morphometric properties of drainage systems and their controlling agents. J Geol 66:442–460
Melton MA (1989) Drainage development on basaltic lava flows, Cima volcanic field, southeast California, and Lunar Crater volcanic field, south-central Nevada: Alternative interpretation. Geol Soc Am Bull 101:595–599
Melton MA (1957) An analysis of the relations among elements of climate, surface properties and geomorphology. Office of Naval Research, Geography Branch, Columbia University, New York, NY, USA, Project NR 389–042, Tech. Rep. 11, p 102
Mesa LM (2006) Morphometric analysis of a subtropical Andean basin (Tucuman, Argentina). Environ Geol 50(8):1235–1242
Miller VC (1953) A quantitative geomorphic study of drainage basin characteristics in the Clinch Mountain Area, Virginia and Tennessee. New York: Columbia University, Office of Naval Research Project NR 389 - 042, Technical Report No. 3
Morisawa M (1985) Rivers: Form and process. Geomorphology texts, (7). Longman Group, London
Morisawa ME (1962) Quantitative geomorphology of some watersheds in the Appalachian Plateau. Geol Soc Am Bull 73:1025–1046
Patton PC (1988) Flood geomorphology. Wiley-Interscience, New York
Patton PC, Baker VR (1976) Morphometry and floods in small drainage basins subject to diverse hydrogeomorphic controls. Water Resour Res 12(5):941–952
Pettis CB (1927) A new theory of river flood flow (published privately, copyrighted 1927). c.f. Langbein, W. B. (1947). Topographic characteristics of drainage basins. Krug J A (1944). Water-Supply Paper 968-C. United States Government Printing Office Washington: 1947. pp 125–158
Prabu P, Baskaran R (2013) Drainage morphometry of upper Vaigai river sub-basin, Western Ghats, South India using remote sensing and GIS. J Geol Soc India 82(5):519–528
Prasad RN, Pani P (2017) Geo-hydrological analysis and sub watershed prioritization for flash flood risk using weighted sum model and Snyder’s synthetic unit hydrograph. Model Earth Syst Environ 3(4):1491–1502
Rinaldo A, Vogel GK, Rigon R, Rodriguez-Iturbe I (1995) Can one gauge the shape of a basin? Water Resour Res 31:1119–1127
Rodriguez-Iturbe I, Valdes JB (1979) The geomorphologic structure of hydrologic response. Water Resour Res 15:1409–1420
Sarkar B, Islam A, Das BC (2020) Anthropo-footprints on Churni River: A river of stolen water. In: Anthropogeomorphology of Bhagirathi-Hooghly river system in India. CRC Press, pp 433–468
Schumm SA (1956) Evolution of Drainage Systems and Slopes in Badlands at Perth Amboy, New Jersey. Bull Geol Soc Am 67:597–646
Sherman LK (1932) The relation of hydrographs of runoff to size and character of drainage basins. Am Geophys Union Trans 13:332–339
Singh DS, Awasthi A (2011) Implication of drainage basin parameters of Chhoti Gandak River, Ganga Plain, India. J Geol Soc India 78(4):370
Smart JS, Surkan AJ (1967) The relation between mainstream length and area in drainage basins. Water Resour Res 3(4):963–974
Sólyom PB, Tucker GE (2004) Effect of limited storm duration on landscape evolution, drainage basin geometry, and hydrograph shapes. J Geophys Res 109:F03012. https://doi.org/10.1029/2003JF000032
Sreedevi PD, Owais S, Khan HH, Ahmed S (2009) Morphometric analysis of a watershed of South India using SRTM data and GIS. J Geol Soc India 73:543–552. https://doi.org/10.1007/s12594-009-0038-4
Stoddart DR (1965) The shape of atolls. Mar Geol 3(5):369–383. https://doi.org/10.1016/0025-3227(65)90025-3
Strahler AN (1964) Quantitative geomorphology of drainage basins and channel networks In Chow VT (Edition). Handbook of Applied Hydrology, McGraw-Hill, New York, p 439–476
Strahler AN (1958) Dimensional analysis applied to fluvially eroded landforms. Geol Soc Am Bull 69:279–299
Subramanya K (2013) Engineering hydrology, 4e. Tata McGraw-Hill Education, p 197
Veneziano D, Moglen GE, Furcolo P, Iacobellis V (2000) Stochastic model of the width function. Water Resour Res 36:1143–1157
Wohl E, Allen AO, Mersel MK, Kichefski SL, Fritz KM, Lichvar RW, Vanderbilt FB (2016) Synthesizing the scientific foundation for ordinary high-water mark delineation in fluvial systems. US Army Engineer Research and Development Center (ERDC) Hanover United States
Youssef AM, Hegab MA (2005) Using geographic information systems and statistics for developing a database management system of the flood hazard for Ras Gharib area, Eastern Desert, Egypt. In: The Fourth International Conference on the Geology of Africa, vol 2. pp 1–15.