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Lake depth governs the multi-stressor climate vulnerability of Mediterranean lakes: code and data

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Zenodo2026-06-18 更新2026-06-21 收录
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Processing code, processed input data (Sentinel-2 NDCI bloom intensity, ERA5-Land air temperature, DAHITI satellite-altimetric water levels, CMIP6 temperature and precipitation, GBIF biodiversity occurrences) and Delft3D-FLOW hydrodynamic-thermal model configurations reproducing the analyses and figures of the manuscript 'Lake depth governs the multi-stressor climate vulnerability of Mediterranean lakes: blooms, water level, oxygen and aquatic biodiversity across ten Greek lakes' (submitted to Hydrobiologia, Springer Nature). Across ten Greek lakes the interannual climate response of algal blooms, thermal stratification, surface and deep-water dissolved oxygen, evaporative demand and water level is organised by lake depth acting through stratification: after deseasonalisation the bloom sensitivity beta_T declines monotonically with maximum depth (Spearman rho = -0.89), a Delft3D-FLOW model confirms the stratify-versus-mix contrast, and a per-lake multi-stressor vulnerability matrix combines CMIP6-projected stressors with GBIF biodiversity context. Code is released under the MIT licence and data/figures under CC-BY-4.0.

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2026-06-18
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