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Land assessment for flood spreading site selection using geospatial information system
International Journal of Environmental Science and Technology. 2008; 5 (4): 455-462
in English | IMEMR | ID: emr-86946
ABSTRACT
Irregular patterns of precipitations from temporal as well as spatial perspectives not only cause destructions but also waste surface water resources. Hence, controlling surface water and leading the flood to underground stores improve the efficiency of water usage. Selecting appropriate sites for optimal use of water floods is one of the most important factors in recharging underground water tables in dry lands where the agricultural and rangelands are vulnerable. Traditional methods of site selections are, however, time consuming and error prone. This paper attempts to; analyze existing schemes of site selection; introduces an appropriate method of locating flood-spreading sites using Geospatial Information System; implements the strategy in a case study; and scientifically assesses its results. The study area of this research is Samal sub-basin covering 31571.7 ha of Ahrom basin in Boushehr province. In the present research, factors pertain to earth sciences [quaternary units, slope and landuse] and hydrology [runoff infiltration rate and aquifers' depth] are considered. Information layers are weighted, classified and integrated through several models such as boolean logics, index overlay and fuzzy logics. The results are then checked against the existing sites to estimate their accuracy. The results of this research demonstrated that fuzzy logic operators including gamma=0.1, gamma=0.2 and products of fuzzy logics yield the best when compared to control fields and therefore, the models are introduced as the most suitable site selection strategies for flood spreading
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Index: IMEMR (Eastern Mediterranean) Main subject: Water / Fuzzy Logic / Maps as Topic Language: English Journal: Int. J. Environ. Sci. Technol. Year: 2008

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Index: IMEMR (Eastern Mediterranean) Main subject: Water / Fuzzy Logic / Maps as Topic Language: English Journal: Int. J. Environ. Sci. Technol. Year: 2008