245
References
Abdullah J, Muhammad NS, Julien PY, Ariffin J, Shafie A (2018) Flood flow simulations and
return period calculation for the Kota Tinggi watershed, Malaysia. J Flood Risk Manag
11:S766–S782
Ahmadi F, Radmaneh F, Parham GA, Mirabbasi R (2017) Comparison of the performance of
power law and probability distributions in the frequency analysis of flood in Dez Basin, Iran.
Nat Hazards 87(3):1313–1331
Alexander DE (1993) Natural disasters. Springer
Ali AMS (2007) September 2004 flood event in southwestern Bangladesh: a study of its nature,
causes, and human perception and adjustments to a new hazard. Nat Hazards 40(1):89–111
Anselmo V, Galeati G, Palmieri S, Rossi U, Todini E (1996) Flood risk assessment using an integrated hydrological and hydraulic modelling approach: a case study. J Hydrol 175(1–4):533–554
Arnaud P, Cantet P, Aubert Y (2016) Relevance of an at-site flood frequency analysis method for
extreme events based on stochastic simulation of hourly rainfall. Hydrol Sci J 61(1):36–49
Bagchi K (1977) The Damodar Valley development and its impact on the region. In: Noble AG,
Dutt AK (eds) Indian urbanization and planning: vehicle of modernization. Tata McGraw-Hill
Publishing, New Delhi, pp 232–241
Bandyopadhyay S, Ghosh PK, Jana NC, Sinha S (2016) Probability of flooding and vulnerability
assessment in the Ajay River, eastern India: implications for mitigation. Environ Earth Sci
75(7):578
Bera K, Pal M, Bandyopadhyay J (2012) Application of RS and GIS in flood management: A case
study of Mongalkote blocks, Burdwan, West Bengal, India. Int J Sci Res Publ 2(11):1–9
Bezak N, Brilly M, Šraj M (2014) Comparison between the peaks-over-threshold method and the
annual maximum method for flood frequency analysis. Hydrol Sci J 59(5):959–977
Bhattacharyya K (2011) The lower Damodar River, India: understanding the human role in changing fluvial environment. Springer, Cham
Chow VT (1951) A general formula for hydrologic frequency analysis. EOS Trans Am Geophys
Union 32(2):231–237
Chow VT, Maidment DR, Mays LW (1988) Applied Hydrology. McGraw-Hill, Singapore
Deraman WHAW, Mutalib NJA, Mukhtar NZ (2017) Determination of return period for flood
frequency analysis using normal and related distributions. J Phys Conf Ser 890(1):012162
Escalante-Sanboval CA, Raynal-Villasenor JA (1998) Multivariate estimation of floods: the trivariate Gumbel distribution. J Stat Comput Simul 61(4):313–340
Farooq M, Shafique M, Khattak MS (2018) Flood frequency analysis of river swat using log
Pearson type 3, generalized extreme value, Normal, and Gumbel max distribution methods.
Arab J Geosci 11(9):216
Ghosh S (2011) Hydrological changes and their impact on fluvial environment of the lower damodar basin over a period of fifty years of damming the mighty Damodar River in eastern India.
Procedia Soc Behav Sci 19:511–519
Ghosh S (2013) Estimation of flash flood magnitude and flood risk in the lower segment of
Damodar River basin, India. Int J Geol Earth Environ Sci 3(2):97–114
Godschalk DR (1991) Disaster mitigation and hazard management. In: Emergency management:
principles and practice for local government, pp 131–160
Government of West Bengal (2015) Annual flood report for the year 2015. Irrigation & Waterways
Directorate, Government of West Bengal
Gumbel EJ (1941) The return period of flood flows. Ann Math Stat 12(2):163–190
Hsu WK, Huang PC, Chang CC, Chen CW, Hung DM, Chiang WL (2011) An integrated flood risk
assessment model for property insurance industry in Taiwan. Nat Hazards 58(3):1295–1309
Islam MM, Sado KIMITERU, Owe M, Brubaker K, Ritchie J, Rango A (2001) Flood damage and
management modelling using satellite remote sensing data with GIS: case study of Bangladesh.
IAHS Publ:455–457
13 Flood Frequency Analysis and Its Management in Selected Part of Bardham…
References
Abdullah J, Muhammad NS, Julien PY, Ariffin J, Shafie A (2018) Flood flow simulations and
return period calculation for the Kota Tinggi watershed, Malaysia. J Flood Risk Manag
11:S766–S782
Ahmadi F, Radmaneh F, Parham GA, Mirabbasi R (2017) Comparison of the performance of
power law and probability distributions in the frequency analysis of flood in Dez Basin, Iran.
Nat Hazards 87(3):1313–1331
Alexander DE (1993) Natural disasters. Springer
Ali AMS (2007) September 2004 flood event in southwestern Bangladesh: a study of its nature,
causes, and human perception and adjustments to a new hazard. Nat Hazards 40(1):89–111
Anselmo V, Galeati G, Palmieri S, Rossi U, Todini E (1996) Flood risk assessment using an integrated hydrological and hydraulic modelling approach: a case study. J Hydrol 175(1–4):533–554
Arnaud P, Cantet P, Aubert Y (2016) Relevance of an at-site flood frequency analysis method for
extreme events based on stochastic simulation of hourly rainfall. Hydrol Sci J 61(1):36–49
Bagchi K (1977) The Damodar Valley development and its impact on the region. In: Noble AG,
Dutt AK (eds) Indian urbanization and planning: vehicle of modernization. Tata McGraw-Hill
Publishing, New Delhi, pp 232–241
Bandyopadhyay S, Ghosh PK, Jana NC, Sinha S (2016) Probability of flooding and vulnerability
assessment in the Ajay River, eastern India: implications for mitigation. Environ Earth Sci
75(7):578
Bera K, Pal M, Bandyopadhyay J (2012) Application of RS and GIS in flood management: A case
study of Mongalkote blocks, Burdwan, West Bengal, India. Int J Sci Res Publ 2(11):1–9
Bezak N, Brilly M, Šraj M (2014) Comparison between the peaks-over-threshold method and the
annual maximum method for flood frequency analysis. Hydrol Sci J 59(5):959–977
Bhattacharyya K (2011) The lower Damodar River, India: understanding the human role in changing fluvial environment. Springer, Cham
Chow VT (1951) A general formula for hydrologic frequency analysis. EOS Trans Am Geophys
Union 32(2):231–237
Chow VT, Maidment DR, Mays LW (1988) Applied Hydrology. McGraw-Hill, Singapore
Deraman WHAW, Mutalib NJA, Mukhtar NZ (2017) Determination of return period for flood
frequency analysis using normal and related distributions. J Phys Conf Ser 890(1):012162
Escalante-Sanboval CA, Raynal-Villasenor JA (1998) Multivariate estimation of floods: the trivariate Gumbel distribution. J Stat Comput Simul 61(4):313–340
Farooq M, Shafique M, Khattak MS (2018) Flood frequency analysis of river swat using log
Pearson type 3, generalized extreme value, Normal, and Gumbel max distribution methods.
Arab J Geosci 11(9):216
Ghosh S (2011) Hydrological changes and their impact on fluvial environment of the lower damodar basin over a period of fifty years of damming the mighty Damodar River in eastern India.
Procedia Soc Behav Sci 19:511–519
Ghosh S (2013) Estimation of flash flood magnitude and flood risk in the lower segment of
Damodar River basin, India. Int J Geol Earth Environ Sci 3(2):97–114
Godschalk DR (1991) Disaster mitigation and hazard management. In: Emergency management:
principles and practice for local government, pp 131–160
Government of West Bengal (2015) Annual flood report for the year 2015. Irrigation & Waterways
Directorate, Government of West Bengal
Gumbel EJ (1941) The return period of flood flows. Ann Math Stat 12(2):163–190
Hsu WK, Huang PC, Chang CC, Chen CW, Hung DM, Chiang WL (2011) An integrated flood risk
assessment model for property insurance industry in Taiwan. Nat Hazards 58(3):1295–1309
Islam MM, Sado KIMITERU, Owe M, Brubaker K, Ritchie J, Rango A (2001) Flood damage and
management modelling using satellite remote sensing data with GIS: case study of Bangladesh.
IAHS Publ:455–457
13 Flood Frequency Analysis and Its Management in Selected Part of Bardham…
