Optimal Management of Potential Water and Sediment Yield from Urban Hilly Watershed
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-99-3687-8_3
Reference34 articles.
1. Chang NB, Wen CG, Wu SL (1995) Optimal management of environmental and land resources in a reservoir watershed by multiobjective programming. J Environ Manag 44(2):144–161
2. Das J, Jha S, Goyal MK (2020) On the relationship of climatic and monsoon teleconnections with monthly precipitation over meteorologically homogenous regions in India: Wavelet & global coherence approaches. Atmos Res 238:104889. https://doi.org/10.1016/j.atmosres.2020.104889
3. Flinker P (2010) The need to reduce impervious cover to prevent flooding and protect water quality. Rhode Island Department of Environmental Management, Rhode Island. http://www.dem.ri.gov/programs/bpoladm/suswshed/pdfs/imperv.pdf
4. Gabriel SA, Faria JA, Moglen GE (2006) A multiobjective optimization approach to smart growth in land development. Socio Econ Plan Sci 40(3):212–248
5. Gelagay HS, Minale AS (2016) Soil loss estimation using GIS and remote sensing techniques: a case of Koga watershed, northwestern Ethiopia. Int Soil Water Conserv Res 4(2):126–136
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