This study examines the determinants of hydrological degradation of Lake Abkhan, an endorheic wetland in the Middle Atlas Mountains of Morocco, over four decades (1984-2024). The methodological approach combines the analysis of drought indices (SPI, SPEI), remote sensing (Sentinel-2) from 2015 to 2023 to assess lake dynamics and land cover, as well as statistical methods (Pettitt test, correlations).
The results reveal a major hydrological disruption in September 2019, marking the beginning of a chronic structural drought. From 2015 to 2023, the lake's surface area shrank by 94.67%, from 25.91 to 1.38 hectares. Simultaneously, human impact on the watershed accelerated, with irrigated agriculture expanding by 181%. Statistically, temperature is the strongest predictor of this contraction (r = -0.576, p < 0.001). The increase in evapotranspiration demand, exacerbated by massive agricultural withdrawals, has now exceeded rainfall.
In conclusion, the collapse of Lake Abkhan is the result of a destructive synergy between climate change and human pressures. The long-term viability of this hydrosystem requires an urgent overhaul of water management and strict regulation of irrigation in the face of these new arid conditions.