Economic, Social and Environmental Vulnerability to Drought in the Northwest River Basin System, Mexico

Economic, Social and Environmental Vulnerability to Drought in the Northwest River Basin System, Mexico

David Ortega-Gaucin Heidy V. Castellano Jesús de La Cruz

Mexican Institute of Water Technology, Mexico

Page: 
240–253
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DOI: 
https://doi.org/10.2495/EI-V1-N3-240-253
Received: 
N/A
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Revised: 
N/A
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Accepted: 
N/A
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Available online: 
N/A
| Citation

OPEN ACCESS

Abstract: 

Vulnerability to drought is the degree to which a system is susceptible to damage by drought and incapable of coping with its adverse effects. This article presents a method to calculate drought vulnerability indices in the Northwest River Basin System, Mexico. The method is based on the concept of vulnerability developed by the Intergovernmental Panel on Climate Change (IPCC, 2007), which differentiates three components of vulnerability: degree of exposure, sensitivity and adaptive capacity. Each of these components is represented by a set of relative indicators at the municipal level that allow for the determination of three basic types of vulnerability: economic, social and environmental, which converge in overall vulnerability. The successful use of the method in the Northwest River Basin System shows that it can be applied to the rest of river basin systems in Mexico, and it can also be adapted to be used at the state or national level. The strength of the method lies in its approach as an objective analytic procedure that makes it possible to identify the most vulnerable municipalities from economic, social and environmental perspectives, which is useful in managing resources and efforts to reduce vulnerability to drought in the different regions of the country.

Keywords: 

adaptive capacity, degree of exposure, drought, sensitivity, vulnerability

  References

[1] Kim, T., Valdés, J.B. & Aparicio, J., Frequency and spatial characteristics of droughts in the Conchos River Basin, Mexico. Water International, 27(3), pp. 420–430, 2002. DOI: 10.1061/(ASCE)1084-0699(2000)5:2(145).

[2] Vásquez-León, M., West, C.T. & Finan, T.J., A comparative assessment of climate vulnerability: agriculture and ranching on both sides of the US-Mexico border. Global Environmental Change, 13, pp. 159–173, 2003. DOI: 10.1016/S0959-3780(03)00034-7.

[3] Velasco, I., Ochoa, L. & Gutiérrez, C., Sequía, un problema de perspectiva y gestión. Región y Sociedad, XVII(34), pp. 35–71, 2005. DOI: 10.22198/rys.2005.34.a615.

[4] Feng, S., Krueger, A.B. & Oppenheimer, M., Linkages among climate change, crop yields and Mexico-US cross-border migration. Proceedings of the National Academy of Sciences, 107(32), pp. 14257–14262, 2010. DOI: 10.1126/science.1114722.

[5] Arreguín-Cortés, F., López-Pérez, M., Ortega-Gaucin, D. & Ibáñez-Hernández, O., La política pública contra la sequía en México: avances, necesidades y perspectivas. Tecnología y Ciencias del Agua, 7(5), pp. 63–76, 2016.

[6] Panel Intergubernamental de Expertos sobre el Cambio Climático (IPCC), Cambio Climático 2007, Informe de Síntesis, Contribución de los Grupos de Trabajo I, II y III al Cuarto Informe de Evaluación del Panel Intergubernamental de Expertos sobre el Cambio Climático, WMO-UNEP: Ginebra, Suiza, 2007.

[7] Wilches-Chaux, G., La vulnerabilidad global. Los desastres no son naturales, comp. A. Maskrey, Red de Estudios Sociales en Prevención de Desastres en América Latina: Puerto Limón, Costa Rica, pp. 11–47, 1993.

[8] Iyengar, N.S. & Sudarshan, P., A method of classifying regions from multivariate data. Economic and Political Weekly, 17(51), pp. 2048–2052, 1982.

[9] Instituto Nacional de Estadística y Geografía (INEGI), Marco Geoestadístico Nacional, INEGI: Aguascalientes, Ags., 2010.