Hydrological analysis reveals falling transboundary river inflows and excessive groundwater pumping accelerate national water stress, indicating vulnerability to regional water management.
Azerbaijan faces escalating water stress driven by climate variability, socio-economic pressures, and pronounced transboundary dependence. This study presents a transparent, reproducible framework that decomposes the Water Stress Index (WSI = TAWW/TRWR × 100) into its hydrological (internal runoff, transboundary inflows, groundwater) and sectoral (agricultural, domestic, industrial) components, and integrates it with hydro-climatic drivers (P, ETₐ) and GRACE/GRACE-FO total water storage (TWS). Applied to Azerbaijan for 2000–2023, the framework yields mean TRWR of 21.8 km3 year−1, mean TAWW of 11.7 km3 year−1, and mean WSI of 56% (range 35–88%); the high-stress threshold (40%) was exceeded in 20 of 24 years, peaking at 88% in 2020. TRWR declined at −524 Mm3 year−1 (p < 0.001), driven almost entirely by falling transboundary inflows, while TAWW rose at +89 Mm3 year−1 and WSI at +1.8 percentage points year−1. GRACE mascons show a basin-scale TWS decline of −1.1 to −1.5 cm year−1 over 2002–2025 (p < 0.001). A key new result is a national water-balance closure test: a climate-only budget (ΔS = P − ETₐ − Q) is essentially flat (+0.10 cm year−1) and negatively correlated with GRACE (r = −0.61), whereas a full budget that includes the documented anthropogenic groundwater over-abstraction (which grew 4.3-fold between 2000 and 2020) matches GRACE with r = +0.96, RMSE = 2.5 cm, and trend agreement within 0.07 cm year−1. This provides an independent, budget-based attribution of the observed storage decline to unsustainable groundwater extraction rather than climatic variability. Sensitivity analysis reveals a supply-side dominance: a 20% reduction in Q, raises WSI by ≈10 percentage points, versus ≈ 7 for an equivalent demand reduction.
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Salazar et al. (2026) studied this question.
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