Interdisciplinary Perspectives on Disaster Risk Management: Linking Science to Policy and Practice

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Interdisciplinary Perspectives on Disaster Risk Management: Linking Science to Policy and Practice David Johnston Chair, IRDR Science Committee Director, Joint Centre for Disaster Research Massey University Wellington, New Zealand

What is integrated research? Integrated disaster risk research engages multiple disciplines and researchers, scales (local to global), methodological approaches, and stakeholders in the co-production of problem-focused, and policy relevant research related to disaster risk.

How does research progress? Disciplinary Multi-Disciplinary Inter-disciplinary Transdisciplinary Pure Disseminated Co-produced

What is IRDR? A decade-long research program focused on Integrated Research on Disaster Risk Mission: To develop trans-disciplinary, multi-sectorial alliances for in-depth, practical disaster risk reduction research studies, and the implementation of effective evidence-based disaster risk policies and practices. IRDR, 2015. Annual Report 2014. Beijing: IRDR, p. 2 Vision: to offer an integrated approach to natural and human-induced environmental hazards through a combination of natural, socio-economic, health and engineering sciences, including socio-economic analysis, understanding the role of communications, and public and political responses to reduce the risk. --ICSU 2008. A Science Plan for Integrated Research on Disaster Risk: Addressing the challenge of natural and human-induced environmental hazards. Paris: ISCU, p. 18.

Who is IRDR? A community of interested stakeholders from academe, private sector, government, NGOs who are addressing the challenge of managing disaster risk to reduce losses Affiliated projects Partnered projects Working Groups (AIRDR, DATA, FORIN, RIA, SERA) Science Committee ISSC Unions National Science Institutions ICSU Unions UN Organizations (UNISDR, WMO, etc.) IRDR International Centres of Excellence RIA CR VaRM Taipei UR&S REaL IRDR National Committees (Australia, Canada, China, Colombia, France, Germany, JAPAN, New Zealand, USA) International Program Office (IPO) Beijing National & International Development Assistance Agencies ICSU Regional Offices (Africa, Asia, Latin America) Other Research & Funding Entities

What is the integrated research program and how is it implemented? Research objectives 1. Promote integrated research 2. Characterize hazards, vulnerability, and risk 3. Understand decision-making 4. Reduce risk and curb losses Implementation: Focus on research, capacity-building, networking, and knowledge sharing activities Working Group Projects (AIRDR, DATA, FORIN, RIA)

Assessing and Advancing Integrated Research on Disaster Risk Assessment of Integrated Research on Disaster Risk (AIRDR) Project Co-chairs: Susan Cutter (USA), Allan Lavell (Costa Rica) Goals: 1. provide a baseline of the current state of the science on integrated research on disaster risk; 2. identify and support a longer-term science agenda for the research community and funding entities; 3. create a mechanism for substantiating advances in the scientific evidentiary basis for supporting policy and practice.

AIRDR findings: Bibliometric analysis of English-language peer reviewed research publications Disaster risk research remains academic and multi-disciplinary, little stakeholder engagement Little evidence that research put into practice or policy-making Theory has advanced (vulnerability, resilience, climate adaptation) Limited geographic coverage; limited integration ICSU Ad-Hoc Expert Group Synthesis (in progress): Science-driven approaches to disaster risk management help reduce impacts, build resilience, and facilitate post-hfa2 goals Periodic assessment of research helps to monitor progress and catalyze policy

Improving the Infrastructure of Disaster Loss Data Disaster Loss Data (DATA) Project Co-Chairs: Daniele Ehrlich (Italy), Sisi Zlatanova (The Netherlands), Susan Cutter (USA) Members representing CIESIN (Columbia University, USA), CRED (University of Louvain, Belgium), Swiss Re, EU Joint Research Centre, MunichRe, UNISDR, NCDC/NOAA (USA), National S&T Center for Disaster Reduction (Taiwan), Austrian Government, Delft University (The Netherlands), IFRC, Eclac Cepal, The World Bank, UNDP Vision: to improve the infrastructure of disaster loss data globally and locally Goals: Identify quality of existing data and data needs for improving integrated disaster risk management Bring together loss data stakeholders to identify common issues and develop synergies Develop standards/protocols to minimize data uncertainty Define losses and create transparent methodologies for assessing them Advocate for loss data at sub-national geographies Educate users on database biases and data interpretation

DATA activities Reconcile peril classification across loss databases with implementation Outreach and Consultations: WMO technical review 2 nd WMO User Workshop EU Data Loss Experts UNESCAP EM-DAT Technical Advisory Committee IRDR China Implementation of Peril Classification: EM-DAT, DesInventar, SHELDUS, EU, UNESCAP Revision in progress (March 2015) Forthcoming: Guidelines on Measuring Losses from Disasters: Human and Economic Impact Indicators

Advancing the Understanding of Risk Perception, Communication, and Decision-making Risk Interpretation and Action (RIA) Project Co-Chairs: Ann Bostrom (USA) and Mark Pelling (UK) Goal: build a community of practice on risk perception, communication and decision-making that focuses on better understanding how people make decisions in the face of risk, with special emphasis on disaster risk and resilience building. Four focus areas: 1. Decision-making for uncertainty 2. Early warning systems 3. Adaptive management and resilience 4. Individual perceptions and risk behavior

Publications: RIA activities Capacity Building: 25 World Social Science (WWS) fellows on Risk Interpretation and Action (RIA) Support GAR15 (Pathways for Transformation) Establish ICoE-RIA at Kings College, London UK

Uncovering the Root Causes of Disasters Forensic Investigations of Disasters (FORIN) Project Co-Chairs: Irasema Alcántara-Ayala (Mexico) and Anthony Oliver-Smith (USA) Goal: to provide a framework for examining the root causes and underlying risk drivers of disaster through comprehensive, in-depth, and integrated investigations that aim to shift disaster management policies. The FORIN Methodology: 1. Critical cause analysis 2. Meta-analysis 3. Longitudinal analysis 4. Scenarios of disaster

FORIN activities Capacity Building: 4 Training workshops (Taiwan, Mexico, US) Completed FORIN case studies: Typhoon Morakot Great East Japan Earthquake Tsunami Metro Manila (FORIN and Climate Change) FORIN s impact: Significant recognition of the approach globally Provides structured approach to identify true cause of disasters and the actions to reduce or eliminate the risk Not fully realized; research takes time and resources that are beyond the scope of existing studies to date Review of FORIN*: it gives power to analysis that conceptualises disasters as intrinsic to development and societal processes more broadly, based on its inter-disciplinary and comprehensiveness. Next: An advanced version is now in development (mid-2015) * A review of the FORIN methodology and existing FORIN case studies, by A. Fraser, S. Patterson, and M. Pelling (2014), for EU FP7 funded PEARL (Preparing For Extreme and Rare Events) project., p. 6. Draft available at: http://www.irdrinternational.org/projects/forin/

Where is disaster risk research progress today? Disciplinary Multi-Disciplinary Inter-disciplinary Transdisciplinary Pure Disseminated Co-produced --

Why has integrated research on disaster risk not progressed further? No common synthesis (e.g. lack common integrative questions and concepts, inconsistent methodologies; variability in definitions) Scientists not good at translating findings into action; practitioners not always understand the nuances of science Takes time and resources to pull teams together, to develop research networks Geographic disparities between researchers and places studies (hard to translate into local action) Limited engagement with non-academic stakeholders Lack trust and social networks between all stakeholders Leadership and willingness to work in a new knowledge environment Career reward mechanisms and challenges imposed by employers (especially academia) Constraints imposed by funding entities (lack of vision, biases of program officers) Lack good examples of integrated disaster research

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