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Modelling environmental variation in Young's modulus for Pinus radiata and implications for determination of critical buckling height.

作者信息

Watt Michael S, Moore John R, Façon Jean-Philippe, Downes Geoff M, Clinton Peter W, Coker Graham, Davis Murray R, Simcock Robyn, Parfitt Roger L, Dando John, Mason Euan G, Bown Horacio E

机构信息

Ensis, PO Box 29237, Christchurch, New Zealand.

出版信息

Ann Bot. 2006 Oct;98(4):765-75. doi: 10.1093/aob/mcl161. Epub 2006 Jul 24.

Abstract

BACKGROUND AND AIMS

Although density-specific stiffness, E/rho, (where E is Young's modulus and rho is wood density) is often assumed constant by the elastic similarity model, and in determination of critical buckling height (H(crit)), few studies have tested this assumption within species. Here this assumption is tested for Pinus radiata growing across an environmental gradient, and theory is combined with data to develop a model of Young's modulus.

METHODS

Analyses use an extensive series of environmental plots covering the range of climatic and edaphic conditions over which P. radiata is grown in New Zealand. Reduced major axis regression was used to determine scaling exponents between log-log plots of H(crit) vs. groundline diameter (D), and E/rho vs. D. Path analysis was used to identify significant direct and indirect (through stem slenderness) edaphic and climatic influences on E.

KEY RESULTS

Density-specific stiffness exhibited 3-fold variation. As E/rho scaled positively with D, the exponent of 0.95 between H(crit) and D exceeded the assumed value of 0.67 under constant E/rho. The final path analysis model included mean air temperature in early autumn (T(aut)) and slenderness as significant (P < 0.05) positive direct influences on E. Tree leaf area index and T(aut) were indirectly associated with E through their significant (P < 0.05) positive direct relationship with stem slenderness. Young's modulus was most sensitive to T(aut), followed by stem slenderness then leaf area index, and the final model explained 76 % of the variance in E.

CONCLUSIONS

The findings suggest that within species E/rho variation may influence H(crit) and the scaling exponent between D and H(crit) so important in assumptions regarding allometric relationships. The model presented may provide a useful means of determining variation in E, E/rho and H(crit) across environmental gradients.

摘要

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引用本文的文献

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Stand variation in Pinus radiata and its relationship with allometric scaling and critical buckling height.
Ann Bot. 2013 Apr;111(4):675-80. doi: 10.1093/aob/mct015. Epub 2013 Feb 6.

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