Risk reduction through community-based monitoring: the vigías of Tungurahua, Ecuador

被引:0
作者
Stone J. [1 ,3 ]
Barclay J. [1 ]
Simmons P. [1 ]
Cole P.D. [2 ]
Loughlin S.C. [3 ]
Ramón P. [4 ]
Mothes P. [4 ]
机构
[1] School of Environmental Sciences, University of East Anglia, Norwich Research Park, Norwich
[2] School of Geography, Earth and Environmental Sciences, University of Plymouth, Plymouth
[3] British Geological Survey, Murchison House, West Mains Road, Edinburgh
[4] Instituto Geofísico, Escuala Politécnica Nacional, Quito
基金
英国自然环境研究理事会;
关键词
Citizen science; Community-based monitoring; Disaster risk reduction; Participatory; Tungurahua;
D O I
10.1186/s13617-014-0011-9
中图分类号
学科分类号
摘要
Since 2000, a network of volunteers known as vigías has been engaged in community-based volcano monitoring, which involves local citizens in the collection of scientific data, around volcán Tungurahua, Ecuador. This paper provides the first detailed description and analysis of this well-established initiative, drawing implications for volcanic risk reduction elsewhere. Based on 32 semi-structured interviews and other qualitative data collected in June and July 2013 with institutional actors and with vigías themselves, the paper documents the origins and development of the network, identifies factors that have sustained it, and analyses the ways in which it contributes to disaster risk reduction. Importantly, the case highlights how this community-based network performs multiple functions in reducing volcanic risk. The vigías network functions simultaneously as a source of observational data for scientists; as a communication channel for increasing community awareness, understanding of hazard processes and for enhancing preparedness; and as an early warning system for civil protection. Less tangible benefits with nonetheless material consequences include enhanced social capital – through the relationships and capabilities that are fostered – and improved trust between partners. Establishing trust-based relationships between citizens, the vigías, scientists and civil protection authorities is one important factor in the effectiveness and resilience of the network. Other factors discussed in the paper that have contributed to the longevity of the network include the motivations of the vigías, a clear and regular communication protocol, persistent volcanic activity, the efforts of key individuals, and examples of successful risk reduction attributable to the activities of the network. Lessons that can be learned about the potential of community-based monitoring for disaster risk reduction in other contexts are identified, including what the case tells us about the conditions that can affect the effectiveness of such initiatives and their resilience to changing circumstances. © 2014, Stone et al.; licensee Springer.
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共 65 条
  • [31] Hall M.L., Samaniego P., Le Pennec J.-L., Johnson J.B., Ecuadorian Andes volcanism: a review of late Pliocene to present activity, J Volcanol Geotherm Res, 176, 1, pp. 1-6, (2008)
  • [32] Haynes K., Barclay J., Pidgeon N., The issue of trust and its influence on risk communication during a volcanic crisis, Bull Volcanol, 70, 5, pp. 605-621, (2008)
  • [33] Holcombe E., Anderson M.G., Implementation of community-based landslide hazard mitigation measures: the role of stakeholder engagement in “sustainable” project scale-up, Sustain Dev, 18, 6, pp. 331-349, (2010)
  • [34] Holcombe E., Smith S., Wright E., Anderson MG, (2011)
  • [35] IGEPN, Tungurahua daily and special activity reports, (2014)
  • [36] Kelman I., Mather T.A., Living with volcanoes: the sustainable livelihoods approach for volcano-related opportunities, J Volcanol Geotherm Res, 172, 3, pp. 189-198, (2008)
  • [37] Lane L.R., Tobin G.A., Whiteford L.M., Volcanic hazard or economic destitution: hard choices in Baños, Ecuador, Environ Hazards, 5, 1, pp. 23-34, (2003)
  • [38] Lawrence A., Paudel K., Barnes R., Malla Y., Adaptive value of participatory biodiversity monitoring in community forestry, Environ Conserv, 33, 4, pp. 325-334, (2006)
  • [39] Le Pennec J.-L., Ruiz G.A., Ramon P., Palacios E., Mothes P., Yepes H., Impact of tephra falls on Andean communities: The influences of eruption size and weather conditions during the 1999–2001 activity of Tungurahua volcano, Ecuador, J Volcanol Geotherm Res, 217-218, pp. 91-103, (2011)
  • [40] Loughlin S.C., Baxter P.J., Aspinall W.P., Darroux B., Harford C.L., Miller A.D., Eyewitness accounts of the 25 June 1997 pyroclastic flows and surges at Soufrière Hills Volcano, Montserrat, and implications for disaster mitigation, Mem Geol Soc Lond, 21, 1, pp. 211-230, (2002)