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Journal Article

Assessing Uncertainty in a Stand Growth Model by Bayesian Synthesis

Edwin J. Green; David W. MacFarlane; Harry T. Valentine; William E. Strawderman
Forest Science · Vol. 45, Issue 4 · pp. 528-538 · 1999

Abstract

The Bayesian synthesis method (BSYN) was used to bound the uncertainty in projections calculated with PIPESTEM, a mechanistic model of forest growth. The application furnished posterior distributions of (a) the values of the model's parameters, and (b) the values of three of the model's output variables--basal area per unit land area, average tree height, and tree density--at different points in time. Confidence or credible intervals for the output variables were obtained directly from the posterior distributions. The application also provided estimates of correlation among the parameters and output variables. BSYN, which originally was applied to a population dynamics model for bowhead whales (Raftery et al. 1996, JASA 90:402-442), is generally applicable to deterministic models. Extension to two or more linked models is discussed. A simple worked example is included in an appendix. For. Sci. 45(4):528-538.

Bibliographic Information

JournalForest Science
PublisherSpringer
Publication Date1999-11-01
Publication Year1999
Volume45
Issue4
Pages528-538
Document TypeJournal Article
Print ISSN0015-749X
eISSN1938-3738
DOI10.1093/forestscience/45.4.528

Access Information

NARA Access Coverage1955-01-01~Current
Journal Homepagehttps://www.springer.com/journal/44391
Publisher PageOpen Publisher Page
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