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Profitable Sheep Farming in South-west Victoria: Specialisation or Diversification Under Volatile Prices, Costs and Climate

Author

Listed:
  • Tocker, Jonathon
  • Malcolm, B.
  • Heard, J.
  • Ho, C.
  • Behrendt, R.

Abstract

Changes in seasonal and market conditions and the cost-price squeeze have implications for the profit and risk of a farm business. Farming a range of activities is a common approach for reducing exposure to risk, whilst still making reasonable profits. Such diversification spreads yield and price risk across several activities. The effectiveness of diversification in reducing risk and maintaining satisfactory profit depends on the correlations between yields and prices of the various activities, complementarities between enterprises, and the ability of the farmer to manage the various systems. Alternatively, specialisation by producing one commodity well has the potential to generate higher profits than the diversified system, but also has higher exposure to price risk. A case study farm running prime lamb, Merino fine wool and cropping in south-west Victoria, was analysed to compare choices about diversification and specialisation in the farm system, and to examine the impact on profit and risk. The biophysical, economic, financial, wealth and risk dimensions of the business were simulated to examine how six different farm systems were likely to perform under volatile seasonal, price and cost conditions over a seven-year planning period. The study focused on changes to the farm business that would increase profits from producing either one or a combination of different commodities – prime lamb, fine wool, beef and cereal crops – and evaluating the profit and the risk of making these changes. The six changes analysed were: (C1) increase soil fertility and develop all pastures to improve the base farm; (C2) all prime lamb; (C3) prime lamb and beef breeding cow and calf; (C4) prime lamb and cropping; (C5) lambing later and finishing all lambs in a feedlot; and (C6) lambing later and finishing all lambs on forage crops. Options that involved diversification of livestock enterprises, such as farming multiple sheep enterprises, or sheep and beef cattle, were sound approaches for managing risk, whilst achieving reasonable net profits and returns on capital ($254,000, 6.1 per cent and $275,000, 6.5 per cent, respectively). If higher profits are sought, then specialisation and focusing on a single enterprise, such as prime lamb, appeared the best option ($320,000, 7.2 per cent), but there was greater variation associated with the average profit over a run of years. For this analysis, farming a prime lamb enterprise based on pasture supply to finish the majority of lambs was generally more favourable than lambing later to maximise reproduction performance and finishing lambs in a feedlot ($294,000, 6.8 per cent) or forage crop system ($276,000, 6.5 per cent). Cereal cropping ($196,000, 5.2 per cent) was not a profitable option for this farm business when compared with prime lamb production. Finally, analysis of the factors contributing to variability of profit indicated that the price, particularly of lamb, was the substantial contributor to overall risk.

Suggested Citation

  • Tocker, Jonathon & Malcolm, B. & Heard, J. & Ho, C. & Behrendt, R., 2022. "Profitable Sheep Farming in South-west Victoria: Specialisation or Diversification Under Volatile Prices, Costs and Climate," AFBM Journal, Australasian Farm Business Management Network, vol. 19(1), April.
  • Handle: RePEc:ags:afbmau:333928
    DOI: 10.22004/ag.econ.333928
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    References listed on IDEAS

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    1. John M. Antle, 1983. "Incorporating Risk in Production Analysis," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 65(5), pages 1099-1106.
    2. Browne, Natalie & Kingwell, Ross & Behrendt, Ralph & Eckard, Richard, 2013. "The relative profitability of dairy, sheep, beef and grain farm enterprises in southeast Australia under selected rainfall and price scenarios," Agricultural Systems, Elsevier, vol. 117(C), pages 35-44.
    3. Armstrong, Dan P. & Ho, Christie K.M. & Doyle, Peter T. & Malcolm, Bill & Gibb, I. & Brown, Stuart, 2005. "Analysing drought impacts and recovery options by adapting a dairy farming systems modelling approach," AFBM Journal, Australasian Farm Business Management Network, vol. 2(1), pages 1-6.
    4. Christopher A. Wolf & J. Roy Black & Joleen C. Hadrich, 2009. "Upper Midwest dairy farm revenue variation and insurance implications," Agricultural Finance Review, Emerald Group Publishing Limited, vol. 69(3), pages 346-358, November.
    5. Antle, John M., 1983. "Incorporating Risk In Production Analysis," 1983 Annual Meeting, July 31-August 3, West Lafayette, Indiana 279106, American Agricultural Economics Association (New Name 2008: Agricultural and Applied Economics Association).
    6. Moore, A. D. & Donnelly, J. R. & Freer, M., 1997. "GRAZPLAN: Decision support systems for Australian grazing enterprises. III. Pasture growth and soil moisture submodels, and the GrassGro DSS," Agricultural Systems, Elsevier, vol. 55(4), pages 535-582, December.
    7. Heard, Joanna & Malcolm, Bill & Jackson, T. & Tocker, J. & Graham, P. & White, A., 2013. "Whole farm analysis versus activity gross margin analysis: a sheep farm example," AFBM Journal, Australasian Farm Business Management Network, vol. 10, pages 1-14.
    8. Robertson, Michael J. & Pannell, David J. & Chalak, Morteza, 2012. "Whole-farm models: a review of recent approaches," AFBM Journal, Australasian Farm Business Management Network, vol. 9(2), pages 1-14, December.
    9. Malcolm, Bill & Ho, Christie K.M. & Armstrong, Dan P. & Doyle, Peter T. & Tarrant, Katherine A. & Heard, J.W. & Leddin, C.M. & Wales, W.J., 2012. "Dairy Directions: a decade of whole farm analysis of dairy systems," Australasian Agribusiness Review, University of Melbourne, Department of Agriculture and Food Systems, vol. 20, pages 1-20.
    10. Shingo Kimura & Jesús Antón & Christine LeThi, 2010. "Farm Level Analysis of Risk and Risk Management Strategies and Policies: Cross Country Analysis," OECD Food, Agriculture and Fisheries Papers 26, OECD Publishing.
    11. Ho, Christie K.M. & Nesseler, R. & Doyle, Peter T. & Malcolm, Bill, 2005. "Future dairy farming systems in irrigation regions," AFBM Journal, Australasian Farm Business Management Network, vol. 2(1), pages 1-10.
    12. Graham, Phil & White, A., 2010. "Sheep enterprises—what are the differences?," AFBM Journal, Australasian Farm Business Management Network, vol. 7(1), pages 1-9, October.
    13. Christopher A. Wolf & J. Roy Black & Joleen C. Hadrich, 2009. "Upper Midwest dairy farm revenue variation and insurance implications," Agricultural Finance Review, Emerald Group Publishing Limited, vol. 69(3), pages 346-358, November.
    14. Martin, Sandra, 1996. "Risk Management Strategies in New Zealand Agriculture and Horticulture," Review of Marketing and Agricultural Economics, Australian Agricultural and Resource Economics Society, vol. 64(01), pages 1-14, April.
    15. Lewis, Claire & Malcolm, Bill & Farquharson, Robert J. & Leury, Brian & Behrendt, Ralph & Clark, Steve, 2012. "Economic analysis of improved perennial pasture systems," AFBM Journal, Australasian Farm Business Management Network, vol. 9(2), pages 1-19, December.
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