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Articles

Acoustic segregation of Australian-grown Pinus radiata logs for structural board production

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Pages 261-266 | Received 11 Aug 2004, Published online: 15 Apr 2013

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K. O. Olaoye & M. O. Ojo. (2022) Non-destructive acoustic assessment of wood quality in trees and logs and the effects of silvicultural treatments: a review. International Wood Products Journal 13:3, pages 156-171.
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Damian Walsh, Martin Strandgard & Peter Carter. (2014) Evaluation of the Hitman PH330 acoustic assessment system for harvesters. Scandinavian Journal of Forest Research 29:6, pages 593-602.
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Ross Dickson, Bill Joe, Darrel Johnstone, Stuart Austin & Frank Ribton-Turner. (2005) Pre-processing prediction of wood quality in peeler logs grown in northern New South Wales. Australian Forestry 68:3, pages 186-191.
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Articles from other publishers (11)

Munkaila Musah, Abiodun O. Alawode, Javier Hernandez Diaz, Osei Asafu-Adjaye, Tom Gallagher, Maria S. Peresin, Yucheng Peng, Dana Mitchell, Mathew Smidt & Brian Via. (2023) Prediction of Acoustic Velocity Properties of Downed Pine Trees Using Near-Infrared Spectroscopy. Forest Products Journal 73:2, pages 133-141.
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Tracye M. Murphy, Laurence Schimleck & Albert Landers. (2022) Evaluating Log Stiffness Using Acoustic Velocity for Manufacturing Structural Oriented Strand Board. Wood and Fiber Science 54:2, pages 99-110.
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Charles Essien, Brian K. Via, Gifty Acquah, Thomas Gallagher, Timothy McDonald & Lori Eckhardt. (2017) Effect of genetic sources on anatomical, morphological, and mechanical properties of 14-year-old genetically improved loblolly pine families from two sites in the southern United States. Journal of Forestry Research 29:6, pages 1519-1531.
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Charles Essien, Brian K. Via, Qingzheng Cheng, Thomas Gallagher, Timothy McDonald & Lori Eckhardt. (2018) Determining the predictive accuracy of whole tree modulus of elasticity (MOE) of 14-year-old loblolly pine using density and dynamic MOEs estimated by three different acoustic tools. European Journal of Wood and Wood Products 76:5, pages 1535-1546.
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Christine L. Todoroki & Eini C. Lowell. (2016) Validation of models predicting modulus of elasticity in Douglas-fir trees, boles, and logs. New Zealand Journal of Forestry Science 46:1.
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Mathew Legg & Stuart Bradley. (2016) Measurement of stiffness of standing trees and felled logs using acoustics: A review. The Journal of the Acoustical Society of America 139:2, pages 588-604.
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John R. Moore, Andrew J. Lyon, Gregory J. Searles, Stefan A. Lehneke & Daniel J. Ridley-Ellis. (2013) Within- and between-stand variation in selected properties of Sitka spruce sawn timber in the UK: implications for segregation and grade recovery. Annals of Forest Science 70:4, pages 403-415.
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C.L. Todoroki, E.C. Lowell & D. Dykstra. (2010) Automated knot detection with visual post-processing of Douglas-fir veneer images. Computers and Electronics in Agriculture 70:1, pages 163-171.
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Carolyn A. Raymond, M. Henson & B. Joe. (2009) Genetic Variation Amongst and Within The Native Provenances of Pinus radiata D. Don in South-eastern Australia. 2.Wood Density and Stiffness to Age 26 Years. Silvae Genetica 58:1-6, pages 192-204.
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B. Wielinga, C. A. Raymond, R. James & A. C. Matheson. (2009) Genetic Parameters and Genotype by Environment Interactions for Green and Basic Density and Stiffness of Pinus radiata D. Don Estimated Using Acoustics. Silvae Genetica 58:1-6, pages 112-122.
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Carolyn A. RaymondBill JoeDean W. AndersonDuncan J. Watt. (2008) Effect of thinning on relationships between three measures of wood stiffness in Pinus radiata : standing trees vs. logs vs. short clear specimens . Canadian Journal of Forest Research 38:11, pages 2870-2879.
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