[{"abstract":[{"text":"Climate change is leading to increased mortality in spruce-dominated forests in Central Europe. Noble fir (Abies procera Rehd.) and giant sequoia (Sequoiadendron giganteum (Lindl.) Buchholz) are characterised as climate-adaptive tree species. Therefore, the suitability of these wood species from the wood technology perspective is investigated. Defect-free specimens and lamellas are subjected to bending tests. Non-destructive tests (eigenfrequency measurements, visual grading) are performed and property influencing wood characteristics recorded. The results for the investigated species are lower than from comparative studies on spruce (30 – 59 %). Multivariate models generated using the parameters listed above to predict elasto-mechanical properties show very good model quality (adj. R² = 0.93 - 0.97), with exception of the giant sequoia lamella bending strength model (adj. R² = 0.30).","lang":"eng"}],"language":[{"iso":"eng"}],"date_updated":"2026-09-30T10:27:33Z","citation":{"van":"Hackel M. Modelling Elasto-Mechanical Properties of Noble Fir and Giant Sequoia from Macroscopic to Product Size Level. 2026.","ieee":"M. Hackel, <i>Modelling Elasto-Mechanical Properties of Noble Fir and Giant Sequoia from Macroscopic to Product Size Level</i>. 2026.","apa":"Hackel, M. (2026). <i>Modelling Elasto-Mechanical Properties of Noble Fir and Giant Sequoia from Macroscopic to Product Size Level</i>. 9th International Scientific Conference on Hardwood Products and Wood Quality Modelling Working Party (IUFRO 5.01.04), Stellenbosch, South Africa.","chicago-de":"Hackel, Martin. 2026. <i>Modelling Elasto-Mechanical Properties of Noble Fir and Giant Sequoia from Macroscopic to Product Size Level</i>.","mla":"Hackel, Martin. <i>Modelling Elasto-Mechanical Properties of Noble Fir and Giant Sequoia from Macroscopic to Product Size Level</i>. 2026.","ufg":"<b>Hackel, Martin</b>: Modelling Elasto-Mechanical Properties of Noble Fir and Giant Sequoia from Macroscopic to Product Size Level, o. O. 2026.","bjps":"<b>Hackel M</b> (2026) <i>Modelling Elasto-Mechanical Properties of Noble Fir and Giant Sequoia from Macroscopic to Product Size Level</i>. .","din1505-2-1":"<span style=\"font-variant:small-caps;\">Hackel, Martin</span>: <i>Modelling Elasto-Mechanical Properties of Noble Fir and Giant Sequoia from Macroscopic to Product Size Level</i>, 2026","ama":"Hackel M. <i>Modelling Elasto-Mechanical Properties of Noble Fir and Giant Sequoia from Macroscopic to Product Size Level</i>.; 2026.","havard":"M. Hackel, Modelling Elasto-Mechanical Properties of Noble Fir and Giant Sequoia from Macroscopic to Product Size Level, 2026.","chicago":"Hackel, Martin. <i>Modelling Elasto-Mechanical Properties of Noble Fir and Giant Sequoia from Macroscopic to Product Size Level</i>, 2026.","short":"M. Hackel, Modelling Elasto-Mechanical Properties of Noble Fir and Giant Sequoia from Macroscopic to Product Size Level, 2026."},"year":"2026","date_created":"2026-09-30T10:27:06Z","type":"conference_scientific_abstract","title":"Modelling Elasto-Mechanical Properties of Noble Fir and Giant Sequoia from Macroscopic to Product Size Level","status":"public","author":[{"full_name":"Hackel, Martin","id":"79798","last_name":"Hackel","first_name":"Martin"}],"conference":{"location":"Stellenbosch, South Africa","name":"9th International Scientific Conference on Hardwood Products and Wood Quality Modelling Working Party (IUFRO 5.01.04)","end_date":"2026-09-11","start_date":"2026-09-08"},"user_id":"79798","_id":"14073","department":[{"_id":"DEP7018"},{"_id":"DEP1309"}]}]
