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Welfare Analysis in a Two-Stage Inverse Demand Model: An Application to Harvest Changes in the Chesapeake Bay

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  • Chris Moore
  • Charles Griffiths

Abstract

Like many agricultural commodities, fish and shellfish are highly perishable and producers cannot easily adjust supply in the short run to respond to changes in demand. In these cases, it is more appropriate to conduct welfare analysis using inverse demand models that take quantities as given and allow prices to adjust to clear the market. One challenge faced by economists conducting demand analysis is how to limit the number of commodities in the analysis while accounting for the relevant substitutability and complementarity among goods. A common approach in direct demand modeling is to assume weak separability of the utility function and apply a multi-stage budgeting approach. This approach has not, however, been applied to an inverse demand system or the associated welfare analysis. This paper develops a two-stage inverse demand model and derives the total quantity flexibilities which describe how market clearing prices respond to supply changes in other commodity groups. The model provides the means to estimate consumer welfare impacts of an increase in finfish and shellfish harvest from the Chesapeake Bay while recognizing that harvests from other regions are potential substitutes. Comparing the two-stage results with single-stage analysis of the same data shows that ignoring differentiation of harvests from different regions, or the availability of substitutes not affected by a supply shock, can bias welfare estimates.

Suggested Citation

  • Chris Moore & Charles Griffiths, 2017. "Welfare Analysis in a Two-Stage Inverse Demand Model: An Application to Harvest Changes in the Chesapeake Bay," NCEE Working Paper Series 201704, National Center for Environmental Economics, U.S. Environmental Protection Agency, revised Jul 2017.
  • Handle: RePEc:nev:wpaper:wp201704
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    File URL: https://www.epa.gov/environmental-economics/working-paper-welfare-analysis-two-stage-inverse-demand-model-application
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    References listed on IDEAS

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    1. James Eales & Catherine Durham & Cathy R. Wessells, 1997. "Generalized Models of Japanese Demand for Fish," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 79(4), pages 1153-1163.
    2. Eales, James S. & Unnevehr, Laurian J., 1994. "The inverse almost ideal demand system," European Economic Review, Elsevier, vol. 38(1), pages 101-115, January.
    3. Robert H. Beach & Matthew T. Holt, 2001. "Incorporating Quadratic Scale Curves in Inverse Demand Systems," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 83(1), pages 230-245.
    4. Min-Yang A. Lee & Eric M. Thunberg, 2013. "An Inverse Demand System for New England Groundfish: Welfare Analysis of the Transition to Catch Share Management," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 95(5), pages 1178-1195.
    5. Moschini, GianCarlo & Vissa, Anuradha, 1992. "A Linear Inverse Demand System," Journal of Agricultural and Resource Economics, Western Agricultural Economics Association, vol. 17(2), pages 1-9, December.
    6. Shenggen Fan & Eric J. Wailes & Gail L. Cramer, 1995. "Household Demand in Rural China: A Two-Stage LES-AIDS Model," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 77(1), pages 54-62.
    7. Barten, A. P. & Bettendorf, L. J., 1989. "Price formation of fish : An application of an inverse demand system," European Economic Review, Elsevier, vol. 33(8), pages 1509-1525, October.
    8. David L. Edgerton, 1997. "Weak Separability and the Estimation of Elasticities in Multistage Demand Systems," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 79(1), pages 62-79.
    9. Brown, Mark G & Lee, Jonq-Ying & Seale, James L, Jr, 1995. "A Family of Inverse Demand Systems and Choice of Functional Form," Empirical Economics, Springer, vol. 20(3), pages 519-530.
    10. James P. Houck, 1965. "The Relationship of Direct Price Flexibilities to Direct Price Elasticities," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 47(3), pages 789-792.
    11. K. K. Gary Wong & Keith R. McLaren, 2005. "Specification and Estimation of Regular Inverse Demand Systems: A Distance Function Approach," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 87(4), pages 823-834.
    12. David M. Massey & Chris Moore & Stephen C. Newbold & Tom Ihde & Howard Townsend, 2017. "Commercial fishing and outdoor recreation benefits of water quality improvements in the Chesapeake Bay," NCEE Working Paper Series 201702, National Center for Environmental Economics, U.S. Environmental Protection Agency, revised Jul 2017.
    13. Hsiang-tai Cheng & Oral Capps, 1988. "Demand Analysis of Fresh and Frozen Finfish and Shellfish in the United States," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 70(3), pages 533-542.
    14. Richard C. Bishop & Matthew T. Holt, 2002. "A semiflexible normalized quadratic inverse demand system: an application to the price formation of fish," Empirical Economics, Springer, vol. 27(1), pages 23-47.
    15. Angus Deaton, 1979. "The Distance Function in Consumer Behaviour with Applications to Index Numbers and Optimal Taxation," The Review of Economic Studies, Review of Economic Studies Ltd, vol. 46(3), pages 391-405.
    16. Krinsky, Itzhak & Robb, A Leslie, 1986. "On Approximating the Statistical Properties of Elasticities," The Review of Economics and Statistics, MIT Press, vol. 68(4), pages 715-719, November.
    17. Brown, Murray & Heien, Dale M, 1972. "The S-Branch Utility Tree: A Generalization of the Linear Expenditure System," Econometrica, Econometric Society, vol. 40(4), pages 737-747, July.
    18. Deaton, Angus S & Muellbauer, John, 1980. "An Almost Ideal Demand System," American Economic Review, American Economic Association, vol. 70(3), pages 312-326, June.
    19. Hoanjae Park & Walter N. Thurman, 1999. "On Interpreting Inverse Demand Systems: A Primal Comparison of Scale Flexibilities and Income Elasticities," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 81(4), pages 950-958.
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    More about this item

    Keywords

    Two-stage budgeting; Inverse demands; Compensating surplus;
    All these keywords.

    JEL classification:

    • D12 - Microeconomics - - Household Behavior - - - Consumer Economics: Empirical Analysis
    • D61 - Microeconomics - - Welfare Economics - - - Allocative Efficiency; Cost-Benefit Analysis
    • Q11 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Agriculture - - - Aggregate Supply and Demand Analysis; Prices
    • Q22 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Renewable Resources and Conservation - - - Fishery

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