Attribution of changes in the water balance of a basin to land-use changes through combined modelling of basin hydrology and land-use dynamics

Author:

Gunacti Mert Can1ORCID,Kandemir Fulya Aydin2ORCID,Najar Mohamed3ORCID,Kuzucu Aysegul3ORCID,Uyar Meltem3ORCID,Barbaros Filiz1ORCID,Boyacioglu Hulya4ORCID,Gul Gulay Onusluel1ORCID,Gul Ali1ORCID

Affiliation:

1. a Faculty of Engineering, Department of Civil Engineering, Dokuz Eylül University, Izmir, Turkey

2. b Graduate Faculty of Solar Energy, Ege University, Izmir, Turkey

3. c The Graduate School of Natural and Applied Sciences, Dokuz Eylül University, Izmir, Turkey

4. d Faculty of Engineering, Department of Environmental Engineering, Dokuz Eylül University, Izmir, Turkey

Abstract

Abstract Land use and land cover change (LULCC) is considered one of the major drivers of climate change, although climate change can also foster direct or indirect influences leading to LULCC. The objective of the presented study is to offer a strategic observation frame as the land use and land cover (LULC) transitions are grouped to define the cover flows (CFs). The Küçük Menderes River Basin (KMRB), which is located in the west of Turkey was examined as the case study. Through LULCC modelling via the employment of multi-layer perceptron (MLP), cellular automata (CA), and Markov Chain methods, future LULC maps were projected up to the horizon of 2050. Hydrologic responses of the basin to LULCC were determined by the developed hydrologic model, which is generated by the Soil and Water Assessment Tool (SWAT). The superimposed impacts of the examined effects of LULCC have been investigated by the CF types. This way, the individual impacts of the CFs have been assessed. In the case of the KMRB, projected annual runoffs for the year 2050 cover map represent a 9.06% reduction and the major responsible CF type for this reduction is the conversion from forest to non-irrigated agricultural land cover by 22.90%.

Publisher

IWA Publishing

Subject

Management, Monitoring, Policy and Law,Atmospheric Science,Water Science and Technology,Global and Planetary Change

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