73
Meshram SG, Singh SK, Meshram C et al (2018) Statistical evaluation of rainfall time series in concurrence with agriculture and water resources of Ken River basin, Central India (1901–2010).
Theor Appl Climatol 134(3–4):1231–1243
Michiels P, Gabriels D, Hartmann R (1992) Using the seasonal and temporal precipitation concentration index for characterizing the monthly rainfall distribution in Spain. Catena 19(1):43–58
MonirulQaderMirza M (2004) The Ganges water diversion: environmental effects and implications – an introduction. In: MonirulQaderMirza M (ed) The Ganges water diversion: environmental effects and implications. Water science and technology library, vol 49. Springer,
Dordrecht
Mukhopadhyay S, Kulkarni S, Kulkarni P et al (2016) Rainfall statistics change in West Bengal
(India) from period 1901–2000. In: Raju N (ed) Geostatistical and geospatial approaches for
the characterization of natural resources in the environment. Springer, Cham
Nalley D, Adamowski J, Khalil B et al (2013) Trend detection in surface air temperature in Ontario
and Quebec, Canada during 1967–2006 using the discrete wavelet transform. Atmos Res
132:375–398
Nishat A, Faisal IM (2000) An assessment of the institutional mechanisms for water negotiations
in the Ganges-Brahmaputra-Meghna system. Int Negot 5(2):289–310
Nunes AN, Lourenço L (2015) Precipitation variability in Portugal from 1960 to 2011. J Geogr
Sci 25(7):784–800
Oliver JE (1980) Monthly precipitation distribution: a comparative index. Prof Geogr 32(3):300–309
Onyutha C (2016) Identification of sub-trends from hydro-meteorological series. Stoch Env Res
Risk A 30(1):189–205
Pearson ES, Hartley HO (1966) Biometrika tables for statisticians, vol 1, 3rd edn. Cambridge
University Press, London
Rahman A, Jiban MJH, Munna SA (2015) Regional variation of temperature and rainfall in
Bangladesh: estimation of trend. Open J Stat 5(07):652
Rahman MA, Yunsheng L, Sultana N (2017) Analysis and prediction of rainfall trends over
Bangladesh using Mann–Kendall, Spearman’s rho tests and ARIMA model. Meteorog Atmos
Phys 129(4):409–424
Rahman ATMS, Jahan CS, Mazumder QH, et al (2017) Drought analysis and its implication in sustainable water resource management in Barind Area, Bangladesh. J Geol Soc India 89(1):47–56
Rahman ATMS, Ahmed MS, Adnan HM et al (2018) Modeling the changes in water balance components of the highly irrigated western part of Bangladesh. Hydrol Earth Syst Sci
22(8):4213–4228
Ramos MC (2001) Rainfall distribution patterns and their change over time in a Mediterranean
area. Theor Appl Climatol 69(3–4):163–170
Rashid H (1977) Geography of Bangladesh. The University Press Limited, Dhaka
Sa’adi Z, Shahid S, Ismail T et al (2019) Trends analysis of rainfall and rainfall extremes in
Sarawak, Malaysia using modified Mann–Kendall test. Meteorog Atmos Phys 131(3):263–277
Salahuddin A, Isaac RH, Curtis S et al (2006) Teleconnections between the sea surface temperature
in the bay of Bengal and monsoon rainfall in Bangladesh. Glob Planet Chang 53(3):188–197
Sen PK (1968) Estimates of the regression coefficient based on Kendall’s tau. J Am Stat Assoc
63(324):1379–1389
Sen Z (2012) Innovative trend analysis methodology. J Hydrol Eng 17(9):1042–1046
Sethi R, Pandey BK, Krishan R et al (2015) Performance evaluation and hydrological trend detection of a reservoir under climate change condition. Model Earth Syst Environ 1(4):1–33.
https://doi.org/10.1007/s40808-015-0035-0
Shah HL, Mishra V (2016) Uncertainty and bias in satellite-based precipitation estimates over
indiansubcontinental basins: implications for real-time streamflow simulation and flood prediction. J Hydrometeorol 17(2):615–636
Shahid S (2010) Recent trends in the climate of Bangladesh. Clim Res 42(3):185–193
Shahid S, Khairulmaini OS (2009) Spatio-temporal variability of rainfall over Bangladesh during
the time period 1969–2003. Asia-Pac J Atmos Sci 45(3):375–389
3 Rainfall Insight in Bangladesh and India: Climate Change and Environmental…
Meshram SG, Singh SK, Meshram C et al (2018) Statistical evaluation of rainfall time series in concurrence with agriculture and water resources of Ken River basin, Central India (1901–2010).
Theor Appl Climatol 134(3–4):1231–1243
Michiels P, Gabriels D, Hartmann R (1992) Using the seasonal and temporal precipitation concentration index for characterizing the monthly rainfall distribution in Spain. Catena 19(1):43–58
MonirulQaderMirza M (2004) The Ganges water diversion: environmental effects and implications – an introduction. In: MonirulQaderMirza M (ed) The Ganges water diversion: environmental effects and implications. Water science and technology library, vol 49. Springer,
Dordrecht
Mukhopadhyay S, Kulkarni S, Kulkarni P et al (2016) Rainfall statistics change in West Bengal
(India) from period 1901–2000. In: Raju N (ed) Geostatistical and geospatial approaches for
the characterization of natural resources in the environment. Springer, Cham
Nalley D, Adamowski J, Khalil B et al (2013) Trend detection in surface air temperature in Ontario
and Quebec, Canada during 1967–2006 using the discrete wavelet transform. Atmos Res
132:375–398
Nishat A, Faisal IM (2000) An assessment of the institutional mechanisms for water negotiations
in the Ganges-Brahmaputra-Meghna system. Int Negot 5(2):289–310
Nunes AN, Lourenço L (2015) Precipitation variability in Portugal from 1960 to 2011. J Geogr
Sci 25(7):784–800
Oliver JE (1980) Monthly precipitation distribution: a comparative index. Prof Geogr 32(3):300–309
Onyutha C (2016) Identification of sub-trends from hydro-meteorological series. Stoch Env Res
Risk A 30(1):189–205
Pearson ES, Hartley HO (1966) Biometrika tables for statisticians, vol 1, 3rd edn. Cambridge
University Press, London
Rahman A, Jiban MJH, Munna SA (2015) Regional variation of temperature and rainfall in
Bangladesh: estimation of trend. Open J Stat 5(07):652
Rahman MA, Yunsheng L, Sultana N (2017) Analysis and prediction of rainfall trends over
Bangladesh using Mann–Kendall, Spearman’s rho tests and ARIMA model. Meteorog Atmos
Phys 129(4):409–424
Rahman ATMS, Jahan CS, Mazumder QH, et al (2017) Drought analysis and its implication in sustainable water resource management in Barind Area, Bangladesh. J Geol Soc India 89(1):47–56
Rahman ATMS, Ahmed MS, Adnan HM et al (2018) Modeling the changes in water balance components of the highly irrigated western part of Bangladesh. Hydrol Earth Syst Sci
22(8):4213–4228
Ramos MC (2001) Rainfall distribution patterns and their change over time in a Mediterranean
area. Theor Appl Climatol 69(3–4):163–170
Rashid H (1977) Geography of Bangladesh. The University Press Limited, Dhaka
Sa’adi Z, Shahid S, Ismail T et al (2019) Trends analysis of rainfall and rainfall extremes in
Sarawak, Malaysia using modified Mann–Kendall test. Meteorog Atmos Phys 131(3):263–277
Salahuddin A, Isaac RH, Curtis S et al (2006) Teleconnections between the sea surface temperature
in the bay of Bengal and monsoon rainfall in Bangladesh. Glob Planet Chang 53(3):188–197
Sen PK (1968) Estimates of the regression coefficient based on Kendall’s tau. J Am Stat Assoc
63(324):1379–1389
Sen Z (2012) Innovative trend analysis methodology. J Hydrol Eng 17(9):1042–1046
Sethi R, Pandey BK, Krishan R et al (2015) Performance evaluation and hydrological trend detection of a reservoir under climate change condition. Model Earth Syst Environ 1(4):1–33.
https://doi.org/10.1007/s40808-015-0035-0
Shah HL, Mishra V (2016) Uncertainty and bias in satellite-based precipitation estimates over
indiansubcontinental basins: implications for real-time streamflow simulation and flood prediction. J Hydrometeorol 17(2):615–636
Shahid S (2010) Recent trends in the climate of Bangladesh. Clim Res 42(3):185–193
Shahid S, Khairulmaini OS (2009) Spatio-temporal variability of rainfall over Bangladesh during
the time period 1969–2003. Asia-Pac J Atmos Sci 45(3):375–389
3 Rainfall Insight in Bangladesh and India: Climate Change and Environmental…
