| dc.description.abstract |
Bangladesh, a low-lying riparian country situated within the Ganges
Brahmaputra-Meghna Basin, comprises 7% of the total GBM catchment area. The
country experiences abundant rainfall during the wet season; however, it
encounters low rainfall and subsequent water scarcity in the dry season. Such an
uneven distribution of water resources both spatially and temporally results
pressure on the resource base. For an efficient management of the resource, the
study aims to formulate an effective monthly water conservation strategy. The
study estimated water demands across various sectors in Bangladesh, including
domestic, industrial, irrigation, and environmental, while contrasting these with
supply sources such as surface runoff, groundwater recharge, and transboundary
inflows. The total annual water demand was calculated to be 1,017 BCM, while
the renewable water availability amounted to 1,138 BCM, indicating no yearly
water deficit. Nevertheless, the country-wide seasonal analysis indicated a
distinct scenario. During the dry season, a deficit of 8 BCM was observed,
whereas the other three seasons had a surplus of water. Analyses of individual
basins revealed that all basins experienced water shortages throughout the dry
season. Both the Ganges and Southeastern basins additionally faced deficits
during the pre-monsoon, while the Meghna basin suffered even in the post
monsoon. To address the seasonal difference in water balance, the surplus water
was evaluated for its potential monthly storage utilizing the mass curve method.
The Storage to Allocation Ratios (SAR) were calculated as 0.345 for the
Brahmaputra, 0.313 for the Meghna, 0.245 for the Ganges, and 0.077 for the
Southeastern Basin, thereby highlighting the potential for the efficient utilization
of available water resources. This methodology can be reproduced for any
changes in future demand and supply to establish a monthly water
conservation strategy. |
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