References
This page lists the project documents used as the scientific authority for the website and key methodological references explicitly contained in those supplied documents.
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1
ClimEmpower Consortium (2026). CLIMEMPOWER – Risk maps AIT full methodology description, final version.
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2
ClimEmpower Consortium (2026). Methodology: Regional River-Flood Risk Assessment — adaptation of the tested CLIMAAX Jupyter workflow for river-flood risk assessment.
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3
CLIMAAX CRA Handbook. Risk assessment for river flooding (DamageScanner workflow).
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4
Molina-LĂłpez, P., et al. (2026). From Rainfall to Flood Maps in Andalucia: Understanding and using pluvial flood hazard information. ClimEmpower educational library.
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5
Huizinga, J., de Moel, H., & Szewczyk, W. (2017). Global flood depth-damage functions.
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6
MartĂnez-Gomariz et al. (2019). Experimental depth–velocity thresholds for pedestrian and vehicle flood hazard, as cited in the ClimEmpower pluvial-flood educational material.
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7
Carrão, H., Naumann, G. and Barbosa, P. (2016). Mapping global patterns of drought risk: An empirical framework based on sub-national estimates of hazard, exposure and vulnerability. Global Environmental Change, 39, 108–124.
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8
Chukalla, A. D., et al. (2025). Global spatially explicit crop water consumption shows an overall increase of 9% for 46 agricultural crops from 2010 to 2020. Nature Food.
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9
Jandaghian, Z., & Colombo, A. (2024). The Role of Water Bodies in Climate Regulation: Insights from Recent Studies on Urban Heat Island Mitigation. Buildings, 14(9), 2945.
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10
Peña-Guerrero, M. D., et al. (2026). Climate change has increased crop water consumption in Central Asia despite less water-intensive cropping. Nature Portfolio.
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11
Rahman, G., Jung, M.-K., Kim, T.-W., & Kwon, H.-H. (2025). Drought impact, vulnerability, risk assessment, management and mitigation under climate change: A comprehensive review. KSCE Journal of Civil Engineering, 29(1), 100120.
