Process-based modeling deriving a long-term sediment budget for the Ganges-Brahmaputra-Meghna Delta, Bangladesh

被引:13
作者
Akter, Jakia [1 ,2 ]
Roelvink, Dano [1 ]
van der Wegen, Mick [1 ]
机构
[1] IHE Delft Inst Water Educ, Delft, Netherlands
[2] Ctr Environm & Geog Informat Serv CEGIS, Dhaka, Bangladesh
关键词
Hydro-morphology; Process-based Delft3D; Sediment budget and pathways; Morphological evolution; Bengal Delta; CLIMATE-CHANGE; RIVER; EVOLUTION; DISCHARGE; MANAGEMENT; MORPHOLOGY; DYNAMICS; IMPACT; BAY;
D O I
10.1016/j.ecss.2021.107509
中图分类号
Q17 [水生生物学];
学科分类号
071004 ;
摘要
Fluvial, tidal, and combined hydro-morphodynamics interaction in a complex, seasonal, sediment transport regime has been the subject of extensive research. It becomes particularly challenging when there is limited data. The Ganges-Brahmaputra-Meghna (GBM) Delta is one example of a huge system lacking data. Bathymetric data simultaneously covering the rivers and estuaries is hardly present, let alone sequences of bathymetries or a system-wide sediment budget. Hence it is difficult to understand and predict future developments. This research aims to make a sediment budget for the GBM delta with a process-based model. It is a first-ever sediment budget simulation for the GBM system. A process-based morphological model, Delft3D, has been used to reproduce the bathymetric evolution over time and the associated sediment budget. This chapter demonstrates the possibilities for the application of a robust modeling system to assess the morphodynamic evolution and sediment budget and pathways. The Ganges and Jamuna rivers carry sediment load in the ranges of 216-1038 million tonnes/yr and 80-228 million tonnes/yr respectively. The total accumulation in the estuary system is 1150 million tonnes/yr, out of which more than eighty percent of sediment is in suspension. The model results show that about 22% of the total sediment coming into the system is deposited in the floodplains and tidal plains and causes river morphology changes. The rest of the sediment is lost to the pro-delta, to the deep ocean bed, or leaves the domain. The results also indicate that Padma, Gorai, Pussur-Sibsa, Bishkhali, Shahbajpur channel, Lower Meghna, Tentulia Channel, and Arial Khan rivers are mainly in the aggrading phase, whereas, the Ganges, Jamuna, and Baleshwar are in the degrading phase. This particular delta model offers many opportunities to compare with sediment data, where it deals with a poorly surveyed area.
引用
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页数:15
相关论文
共 63 条
[1]   A 2-D process-based model for suspended sediment dynamics: a first step towards ecological modeling [J].
Achete, F. M. ;
van der Wegen, M. ;
Roelvink, D. ;
Jaffe, B. .
HYDROLOGY AND EARTH SYSTEM SCIENCES, 2015, 19 (06) :2837-2857
[2]   How can climate change and engineered water conveyance affect sediment dynamics in the San Francisco Bay-Delta system? [J].
Achete, Fernanda ;
van der Wegen, Mick ;
Roelvink, Jan Adriaan ;
Jaffe, Bruce .
CLIMATIC CHANGE, 2017, 142 (3-4) :375-389
[3]   Evolution of the Bengal Delta and Its Prevailing Processes [J].
Akter, Jakia ;
Sarker, Maminul Haque ;
Popescu, Ioana ;
Roelvink, Dano .
JOURNAL OF COASTAL RESEARCH, 2016, 32 (05) :1212-1226
[4]   Stratigraphic evolution of the late Holocene Ganges-Brahmaputra lower delta plain [J].
Allison, MA ;
Khan, SR ;
Goodbred, SL ;
Kuehl, SA .
SEDIMENTARY GEOLOGY, 2003, 155 (3-4) :317-342
[5]  
Allison MA, 2001, GEO-MAR LETT, V21, P66
[6]  
[Anonymous], 2007, P INT C WAT FLOOD MA
[7]  
[Anonymous], 2021, US
[8]  
Bangladesh Water Development Board (BWDB), 2014, ANN FLOOD REP FLOOD, P90
[9]   Wave-influenced deltas: geomorphological implications for facies reconstruction [J].
Bhattacharya, JP ;
Giosan, L .
SEDIMENTOLOGY, 2003, 50 (01) :187-210
[10]  
COLEMAN JM, 1969, SEDIMENT GEOL, V3, P131