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Climate risk management based on climate modes and indices - the potential in Australian agribusinesses

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  • Best, Peter
  • Stone, Roger
  • Sosenko, Olena

Abstract

Global and hemispheric climate indicators have proved useful in many countries for characterising intra- and inter-annual variability in climate processes, agricultural output and biomass production. They also form the basis of successful seasonal climate and production prediction systems for the probability distributions of allied parameters such as rainfall or crop yield. Climate risk management via derivative, insurance or bond instruments has only recently incorporated non-local climate parameters such as "teleconnection" indices in payoff functions and overall design. A feasibility study of using the Southern Oscillation Index in weather derivatives for the Australian wheat industry has suggested several such climate-anomaly indicators as suitable vehicles for managing risks of various types, including the hedging of likely errors in seasonal climate forecasting. The potential benefits should accrue if the co-joining of weather/climate risk management and seasonal forecasting is encouraged across many weather-sensitive industries (e.g. agriculture, mining, energy and tourism), if longer-term perspectives of risk across many seasons are adopted and if support is given to suitable trading mechanisms and industry extension programmes.

Suggested Citation

  • Best, Peter & Stone, Roger & Sosenko, Olena, 2007. "Climate risk management based on climate modes and indices - the potential in Australian agribusinesses," 101st Seminar, July 5-6, 2007, Berlin Germany 9257, European Association of Agricultural Economists.
  • Handle: RePEc:ags:eaa101:9257
    DOI: 10.22004/ag.econ.9257
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    References listed on IDEAS

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    1. Kevin Dowd & David Blake, 2006. "After VaR: The Theory, Estimation, and Insurance Applications of Quantile‐Based Risk Measures," Journal of Risk & Insurance, The American Risk and Insurance Association, vol. 73(2), pages 193-229, June.
    2. Hélène Hamisultane, 2006. "Pricing the Weather Derivatives in the Presence of Long Memory in Temperatures," Working Papers halshs-00079197, HAL.
    3. Richards, Timothy J. & Manfredo, Mark R. & Sanders, Dwight R., 2004. "Pricing Weather Derivatives," Working Papers 28536, Arizona State University, Morrison School of Agribusiness and Resource Management.
    4. Jewson,Stephen & Brix,Anders With contributions by-Name:Ziehmann,Christine, 2005. "Weather Derivative Valuation," Cambridge Books, Cambridge University Press, number 9780521843713.
    5. George, David A. & Birch, C. & Buckley, D. & Partridge, I.J. & Clewett, J.F., . "Assessing Climate Risk to Improve Farm Business Management," Extension Farming Systems Journal - EFS Journal, Australasian Farm Business Management Network, vol. 1(1).
    6. Chambers, Robert G. & Quiggin, John C., 2004. "Technological and financial approaches to risk management in agriculture: an integrate approach," Australian Journal of Agricultural and Resource Economics, Australian Agricultural and Resource Economics Society, vol. 48(2), pages 1-25.
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    Cited by:

    1. Nguyen-Huy, Thong & Deo, Ravinesh C. & An-Vo, Duc-Anh & Mushtaq, Shahbaz & Khan, Shahjahan, 2017. "Copula-statistical precipitation forecasting model in Australia’s agro-ecological zones," Agricultural Water Management, Elsevier, vol. 191(C), pages 153-172.

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    Keywords

    Agribusiness; Risk and Uncertainty;

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