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14 - National Climate Change Adaptation Case Study: Early Adaptation to Climate Change through Climate-Compatible Development and Adaptation Pathways

from Cities and Industry

Published online by Cambridge University Press:  08 October 2021

Kenneth G. H. Baldwin
Affiliation:
Australian National University, Canberra
Mark Howden
Affiliation:
Australian National University, Canberra
Michael H. Smith
Affiliation:
Australian National University, Canberra
Karen Hussey
Affiliation:
University of Queensland
Peter J. Dawson
Affiliation:
P. J. Dawson & Associates
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Summary

This chapter describes four case studies – three from Australia and one from rural Indonesia – that build the argument that to enhance the potential for multiple benefits, climate adaptation needs to be integrated into development and planning processes. The case studies demonstrate (1) the early benefits from adaptation to coastal inundation, (2) the importance of considering the distribution of costs and benefits across communities, (3) the low-regrets nature of some early adaptation actions and (4) the synergies between adaptation measures and sustainable development. By demonstrating the multiple benefits of climate adaptation, case studies like these have stimulated thinking about climate adaptation in terms of adaptation pathways and climate-compatible development. Early adaptation creates resilience by maintaining diversity, flexibility and adaptability – factors that enable people to benefit from future opportunities. Adaptation pathways approaches help stakeholders better understand how adaptation can address the systemic drivers of vulnerability and how to integrate adaptation into broader planning approaches.

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Publisher: Cambridge University Press
Print publication year: 2021

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References

Australian Department of Home Affairs (2018). Profiling Australia’s Vulnerability: The Interconnected Causes and Cascading Effects of Systemic Disaster Risk. Australia: Commonwealth Government of Australia. Available at: www.aidr.org.au/media/6682/national-resilience-taskforce-profiling-australias-vulnerability.pdf.Google Scholar
Barnett, J., Waters, E., Pendergast, S. and Puleston, A. (2013). Barriers to Adaptation to Sea-Level Rise. Final report. Gold Coast, Australia: National Climate Change Adaptation Research Facility. Available at: https://apo.org.au/sites/default/files/resource-files/2013-05/apo-nid33956.pdf.Google Scholar
Ben-Haim, Y. (2006). Info-Gap Decision Theory: Decisions under Severe Uncertainty, 2nd ed. London: Academic Press.Google Scholar
Bloemen, P., Reeder, T., Zevenbergen, C., Rijke, J. and Kingsborough, A. (2017). Lessons learned from applying adaptation pathways in flood risk management and challenges for the further development of this approach. Mitigation and Adaptation Strategies for Global Change, 23, 10831108; online 2017.Google Scholar
Bosomworth, K., Harwood, A., Leith, P. and Wallis, P. (2015). Adaptation Pathways: A Playbook for Developing Robust Options for Climate Change Adaptation in Natural Resource Management. Southern Slopes Climate Change Adaptation Research Partnership (SCARP). Hobart: RMIT University, University of Tasmania and Monash University.Google Scholar
Bosomworth, K., Leith, P., Harwood, A. and Wallis, P. J. (2017). What’s the problem in adaptation pathways planning? The potential of a diagnostic problem-structuring approach. Environmental Science & Policy, 76, 2328.CrossRefGoogle Scholar
Butler, J. R. A., Suadnya, W., Puspadi, K. et al. (2014). Framing the application of adaptation pathways for rural livelihoods and global change in eastern Indonesian islands. Global Environmental Change, 28, 368382.CrossRefGoogle Scholar
Butler, J. R. A., Wise, R. M., Skewes, T. D. et al. (2015). Integrating top-down and bottom-up adaptation planning to build adaptive capacity: A structured learning approach. Coastal Management, 43, 346364.CrossRefGoogle Scholar
Butler, J. R. A., Suadnya, W., Yanuartati, Y. et al. (2016). Priming adaptation pathways through adaptive co-management: Design and evaluation for developing countries. Climate Risk Management, 12, 116.Google Scholar
City of Melbourne (2017). Climate Adaptation Strategy Refresh 2017. City of Melbourne. Available at: www.melbourne.vic.gov.au/sitecollectiondocuments/climate-change-adaptation-strategy-refresh-2017.pdf.Google Scholar
Climate Change in Australia (n.d.). Climate Change in Australia. Available at: www.climatechangeinaustralia.gov.au.Google Scholar
CSIRO (Commonwealth Scientific and Industrial Research Organisation) (n.d.a). AdaptNRM. Available at: https://adaptnrm.csiro.au/.Google Scholar
CSIRO (n.d.b). Climate Adaptation. Available at: https://research.csiro.au/climate.Google Scholar
Dopfer, K. and Potts, J. (2009). On the theory of economic evolution. Evolutionary and Institutional Economics Review, 6, 2344.Google Scholar
Downing, T. E. (2012). Views of the frontiers in climate change adaptation economics. WIREs Climate Change, 3, 161170.Google Scholar
Ellis, K., Cambray, A. and Lemma, A. (2013). Drivers and Challenges for Climate Compatible Development. Climate and Development Knowledge Network. Available at: https://cdkn.org/resource/drivers-and-challenges-for-climate-compatible-development/?loclang=en_gb.Google Scholar
Fazey, I., Wise, R. M., Lyon, C., Câmpeanu, C., Moug, P. and Davies, T. E. (2015). Past and future adaptation pathways. Climate and Development, 8, 119.Google Scholar
Fletcher, C. S., Taylor, B. M., Rambaldi, A. N. et al. (2013). Costs and Coasts: An Empirical Assessment of Physical and Institutional Climate Adaptation Pathways. Final report. Gold Coast, Australia: National Climate Change Adaptation Research Facility. Available at: https://nccarf.edu.au/costs-and-coasts-empirical-assessment-physical-and-institutional-climate-adaptation/. Google Scholar
Global Commission on Adaptation (2019). Adapt Now: A Global Call for Leadership on Climate Resilience. Global Commission on Adaptation. Global Centre on Adaptation. Available at: https://gca.org/wp-content/uploads/2019/09/GlobalCommission_Report_FINAL.pdf.Google Scholar
Gold Coast City Council (2014). The A-line Seawall. Available at: www.goldcoast.qld.gov.au/thegoldcoast/gold-coast-seawalls-40670.html.Google Scholar
Gorddard, R., Colloff, M., Wise, R. M., Ware, D. and Dunlop, M. (2016). Values rules and knowledge: Adaptation as change in the decision context. Environmental Science & Policy, 57, 6069. Available at: www.sciencedirect.com/science/article/pii/S1462901115301210.CrossRefGoogle Scholar
Haasnoot, M., Kwakkel, J. H., Walker, W. E. and ter Maat, J. (2013). Dynamic adaptive policy pathways: A method for crafting robust decisions for a deeply uncertain world. Global Environmental Change, 23, 485498.CrossRefGoogle Scholar
Haasnoot, M., Brown, S., Scussolini, P., Jimenez, J. A., Vafeidis, A. T. and Nicholls, R. J. (2019). Generic adaptation pathways for coastal archetypes under uncertain sea-level rise. Environmental Research Communications, 1, 071006.Google Scholar
Hallegatte, S., Shar, A., Lempert, R., Brown, C. Gill, S. (2012). Investment Decision Making under Deep Uncertainty: Application to Climate Change. Policy Research Working Paper 6193. The World Bank. doi.org/10.1596/1813-9450-6193.Google Scholar
Hennessy, K., Fawcett, R., Kirono, D. et al. (2008). An Assessment of the Impact of Climate Change on the Nature and Frequency of Exceptional Climatic Events: Report to Australian Government. Canberra: Bureau of Meteorology and Commonwealth Scientific and Industrial Research Organisation (CSIRO).Google Scholar
Ison, R., Blackmore, C. and Iaquinto, B. L. (2013). Towards systemic and adaptive governance: Exploring the revealing and concealing aspects of contemporary social-learning metaphors. Ecological Economics, 87, 3442.Google Scholar
Jacobsson, S. and Bergek, A. (2011). Innovation system analyses and sustainability transitions: Contributions and suggestions for research. Environmental Innovation and Societal Transitions, 1, 4157.Google Scholar
Jeuland, M. and Whittington, D. (2013). Water Resources Planning under Climate Change: A ‘Real Options’ Application to Investment Planning in the Blue Nile. Discussion Paper Series EfD DP 13-05. Environment for Development Resources for the Future. Available at: www.jstor.org/stable/resrep14977?seq=1#metadata_info_tab_contents.Google Scholar
Juma, C. (2014). Complexity, innovation, and development: Schumpeter revisited. Policy and Complex Systems, 1, 421.Google Scholar
Kingston, C. and Caballero, G. (2009). Comparing theories of institutional change. Journal of Institutional Economics, 5, 151180.Google Scholar
Kwakkel, J. H., Haasnoot, M. and Walker, W. E. (2015). Developing dynamic adaptive policy pathways: A computer-assisted approach for developing adaptive strategies for a deeply uncertain world. Climatic Change, 132, 373386.Google Scholar
Lavorel, S., McIntyre, S., Colloff, M. et al. (2015). Ecological mechanisms underpinning climate adaptation services. Global Change Biology, 21, 1231.CrossRefGoogle ScholarPubMed
Leach, M., Scoones, I. and Stirling, A. (2010). Governing epidemics in an age of complexity: Narratives, politics and pathways to sustainability. Global Environmental Change, 20, 369377.Google Scholar
Leith, P., O’Toole, K., Haward, M., Coffey, B., Rees, C. and Ogier, E. (2014). Analysis of operating environments: A diagnostic model for linking science, society and policy for sustainability. Environmental Science & Policy, 39, 162171.Google Scholar
Lempert, R. J. (2019). Robust decision making (RDM). In Marchau, V. A. W. J., Walker, W. E., Bloemen, P. J. T. M. and Popper, S. W., eds., Decision Making under Deep Uncertainty: From Theory to Practice. Cham: Springer International Publishing, pp. 2351.Google Scholar
Lempert, R. J., Popper, S. W. and Bankes, S. C. (2003). Shaping the Next One Hundred Years: New Methods for Quantitative, Long-Term Policy Analysis. Report prepared for the RAND Pardee Centre, Santa Monica. Available at: www.rand.org/pubs/monograph_reports/2007/MR1626.pdf.Google Scholar
Lempert, R. J., Groves, D. G., Popper, S. W. and Bankes, S. C. (2006). A general, analytic method for generating robust strategies and narrative scenarios. Management Science, 52, 514528.Google Scholar
Leslie, L. M., Leplastrier, M. and Buckley, B. W. (2008). Estimating future trends in severe hailstorms over the Sydney Basin: A climate modelling study. Atmospheric Research, 87, 3751.Google Scholar
Lin, B. B., Capon, T., Langston, A. et al. (2017). Adaptation pathways in coastal case studies: Lessons learned and future directions. Coastal Management, 45, 384405.Google Scholar
Lloyd’s of London (2018). Innovative Finance for Resilient Infrastructure: Innovation Report 2018 – Understanding Risk. Lloyd’s of London and the Centre for Global Disaster Protection. Available at: www.lloyds.com/news-and-risk-insight/risk-reports/library/understanding-risk/innovative-finance-for-resilient-infrastructure.Google Scholar
Lonsdale, K. (2012). Beyond Tools: Building Learning Organisations to Adapt to a Changing Climate. Final report, Victorian Centre for Climate Change Adaptation Research Visiting Fellowship. Melbourne: Victorian Centre for Climate Change Adaptation Research. Available at: www.vcccar.org.au/sites/default/files/publications/VCCCAR_Final_Report_Kate_Lonsdale_forweb_150713.pdf.Google Scholar
Lucas, C., Hennessy, K., Mills, G. and Bathols, J. (2007). Bushfire Weather in Southeast Australia: Recent Trends and Projected Climate Change Impacts. Consultancy report prepared for the Climate Institute of Australia. Melbourne: Bushfire Cooperative Research Centre. Available at: https://publications.csiro.au/rpr/download?pid=procite:5910842c-f62e-4006-b88f-1055d8e981fa&dsid=DS1. Google Scholar
Maru, Y. T., Stafford Smith, M., Sparrow, A., Pinho, P. F. and Dube, O. P. (2014). A linked vulnerability and resilience framework for adaptation pathways in remote disadvantaged communities. Global Environmental Change, 28, 337350.Google Scholar
Middelmann-Fernandes, M. (2010). Flood damage estimation beyond stage–damage functions: An Australian example. Journal of Flood Risk Management, 3, 8896.Google Scholar
Moss, A. and Martin, S. (2012). Flexible Adaptation Pathways. Policy brief. Scotland: ClimateXChange. Available at: www.climatexchange.org.uk/media/1595/flexible_adaptation_pathways.pdf.Google Scholar
Nakićenović, N., Davidson, O., Davis, G. et al. (2000). Summary for policymakers. In Nakićenović, N., Davidson, O., Davis, G. et al., Emissions Scenarios: A Special Report of Working Group III of the Intergovernmental Panel on Climate Change. Cambridge: Cambridge University Press, pp. 120. Available at: www.ipcc.ch/site/assets/uploads/2018/03/emissions_scenarios-1.pdf.Google Scholar
NCCARF (National Climate Change Adaptation Research Facility) (n.d.). NCCARF Publications. NCCARF. Available at: https://nccarf.edu.au/nccarf-publications/.Google Scholar
Nelson, R. (2012). Why Schumpeter has had so little influence on today’s main line economics, and why this may be changing. Journal of Evolutionary Economics, 22, 901916.CrossRefGoogle Scholar
Newig, J., Voß, J.-P. and Monstadt, J. (2007). Governance for sustainable development in the face of ambivalence, uncertainty and distributed power: An introduction [editorial]. Journal of Environmental Policy and Planning, 9, 185192.Google Scholar
North, D. C. (1992). Institutions and economic theory. American Economist, 36(1), 36.Google Scholar
North, D. C. (1994). Institutional change: A framework of analysis. Economic History, 9412001. Available at: http://ideas.repec.org/p/wpa/wuwpeh/9412001.html.Google Scholar
NSW Office of Environment & Heritage (2014). Australian Capital Territory Climate Change Snapshot. Sydney, New South Wales. Available at: www.environment.act.gov.au/__data/assets/pdf_file/0009/671274/ACTsnapshot_WEB.pdf.Google Scholar
O’Connell, D., Maru, Y., Grigg, N. et al. (2019). Resilience, Adaptation Pathways and Transformation Approach. A Guide for Designing, Implementing and Assessing Interventions for Sustainable Futures, version 2. Canberra: Commonwealth Scientific and Industrial Research Organisation (CSIRO). Available at: https://research.csiro.au/eap/rapta/.Google Scholar
Ostrom, E. (1990). Governing the Commons: The Evolution of Institutions for Collective Action. New York: Cambridge University Press.Google Scholar
Ostrom, E. (2011). Background on the Institutional Analysis and Development Framework. Policy Studies Journal, 39, 727.Google Scholar
Ostrom, E., Gardner, R. and Walker, J. (1994). Rules, Games, and Common-Pool Resources. Ann Arbor, MI: The University of Michigan Press.Google Scholar
Pahl-Wostl, C. (2009). A conceptual framework for analysing adaptive capacity and multi-level learning processes in resource governance regimes. Global Environmental Change, 19, 354365.Google Scholar
Park, S. E., Marshall, N. A., Jakku, E. et al. (2012). Informing adaptation responses to climate change through theories of transformation. Global Environmental Change, 22, 115126.Google Scholar
Pelling, M. (2011). Adaptation to Climate Change: From Resilience to Transformation. London: Routledge.Google Scholar
Potts, J., Foster, J. and Straton, A. (2010). An entrepreneurial model of economic and environmental co-evolution. Ecological Economics, 70, 375383.CrossRefGoogle Scholar
Rambaldi, A. N., Fletcher, C. S., Collins, K. and McAllister, R. R. J. (2012). Housing shadow prices in an inundation-prone suburb. Urban Studies, 50, 18891905.Google Scholar
Ramm, T. D., Watson, C. S. and White, C. J. (2018). Strategic adaptation pathway planning to manage sea-level rise and changing coastal flood risk. Environmental Science & Policy, 87, 92101.CrossRefGoogle Scholar
Reeder, T. and Ranger, N. (2011). How Do You Adapt in an Uncertain World? Lessons from the Thames Estuary 2100 Project. World Resources Report Uncertainty Series. Washington, DC: World Resources Institute. Available at: https://wriorg.s3.amazonaws.com/s3fs-public/uploads/wrr_reeder_and_ranger_uncertainty.pdf.Google Scholar
Reisinger, A., Kitching, R. L., Chiew, F. et al. (2014). Australasia. In Barros, V. R., Field, C. B., Dokken, D. J. et al., eds., Climate Change 2014: Impacts, Adaptation, and Vulnerability. Part B: Regional Aspects. Contribution of Working Group II to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change. Cambridge: Cambridge University Press, pp. 13711438. Available at: www.ipcc.ch/site/assets/uploads/2018/02/WGIIAR5-Chap25_FINAL.pdf.Google Scholar
Rosenzweig, C. and Solecki, W. (2014). Hurricane Sandy and adaptation pathways in New York: Lessons from a first-responder city. Global Environmental Change, 28, 395408.Google Scholar
Scott, W. (2008). Approaching adulthood: The maturing of institutional theory. Theory and Society, 37(5), 427442.Google Scholar
Siebentritt, M., Halsey, N. and Stafford Smith, M. (2014 ). Regional Climate Change Adaptation Plan for the Eyre Peninsula. South Australia: Eyre Peninsula Integrated Climate Change Agreement Committee. Available at: www.naturalresources.sa.gov.au/files/sharedassets/eyre_peninsula/corporate/climate-change-adaptation-2014-plan.pdf.Google Scholar
Smith, A., Stirling, A. and Berkhout, F. (2005). The governance of sustainable socio-technical transitions. Research Policy, 34, 14911510.Google Scholar
Stafford Smith, M. D., Horrocks, L., Harvey, A. B. and Hamilton, C. (2011). Rethinking adaptation for a four degree world. Philosophical Transactions of the Royal Society A, 369, 196216.Google Scholar
Stephens, S. A., Bell, R. G. and Lawrence, J. (2018). Developing signals to trigger adaptation to sea-level rise. Environmental Research Letters, 13, 104004.Google Scholar
Stern, N. (2006). The Stern Review: The Economics of Climate Change. Cambridge: Cambridge University Press.Google Scholar
Stern, N. (2013). The structure of economic modeling of the potential impacts of climate change: Grafting gross underestimation of risk onto already narrow science models. Journal of Economic Literature, 51, 838–59.Google Scholar
Stewart, M. G. and Wang, X. (2011). Risk Assessment of Climate Adaptation Strategies for Extreme Wind Events in Queensland. Canberra: Commonwealth Scientific and Industrial Research Organisation (CSIRO). Available at: https://publications.csiro.au/rpr/download?pid=csiro:EP112958&dsid=DS1.Google Scholar
Suckall, N., Stringer, L. and Tompkins, E. (2015). Presenting triple-wins? Assessing projects that deliver adaptation, mitigation and development co-benefits in rural Sub-Saharan Africa. Ambio, 44, 3441.Google Scholar
UK Government Office for Science (2012). Reducing Risks of Future Disasters: Priorities for Decision Makers. UK Government Office for Science. Available at: www.gov.uk/government/publications/reducing-risk-of-future-disasters-priorities-for-decision-makers.Google Scholar
UNISDR (UN International Strategy for Disaster Reduction) (2007). Costs and Benefits of Disaster Risk Reduction. High level dialogue information note No. 3. Available at: www.unisdr.org/files/1084_InfoNote3HLdialogueCostsandBenefits.pdf. Google Scholar
Voß, J.-P., Newig, J., Kastens, B., Monstadt, J. and Nölting, B. (2007). Steering for sustainable development: A typology of problems and strategies with respect to ambivalence, uncertainty and distributed power. Journal of Environmental Policy and Planning, 9, 193212.Google Scholar
Wang, C.-H., Baynes, T., McFallan, S. et al. (2015). Rising tides: Adaptation policy alternatives for coastal residential buildings in Australia. Structure and Infrastructure Engineering: Maintenance, Management, Life-Cycle Design and Performance, 12, 463476.Google Scholar
Webb, L. B. and Hennessy, K. (2015). Climate Change in Australia: Projections for Selected Australian Cities. Commonwealth Scientific and Industrial Research Organisation (CSIRO) and Bureau of Meteorology. Available at: www.climatechangeinaustralia.gov.au/en/publications-library/brochures/.Google Scholar
Weitzman, M. L. (2011). Fat-tailed uncertainty in the economics of catastrophic climate change. Review of Environmental Economics and Policy, Symposium on Fat Tails, 5, 275292. Symposium originally held at Harvard University, Cambridge, MA.Google Scholar
Wise, R. M., Fazey, I., Stafford Smith, M. et al. (2014). Reconceptualising adaptation to climate change as part of pathways of change and response. Global Environmental Change, 28, 325336.CrossRefGoogle Scholar
Yohe, G. and Leichenko, R. (2010). Adopting a risk-based approach. Annals of the New York Academy of Sciences, 1196, 2940.Google Scholar
Young, K. and Hall, J. (2015). Introducing system interdependency into infrastructure appraisal: From projects to portfolios to pathways. Infrastructure Complexity, 2, 118.Google Scholar

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