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[ABSTRACT] => Forestry is an important component of Canada’s economy with British Columbia (BC) contributing almost half to the national roundwood production. Yet, the country’s timber supply and forest economy are threatened by climate change, with increased frequency and severity of natural disturbances and changes in forest productivity. Mountain pine beetle ( Dendroctonus ponderosae) outbreaks are endemic in BC, but the latest climate change-driven outbreak has resulted in a cumulative loss of over half of all merchantable pine, leading to a mid-term timber supply shortage. In this study, we investigate the potential of commercial thinning and alternative planting regimes based on species diversification and assisted species migration to mitigate the anticipated decrease in timber supply in BC. We simulated the long-term effects of these management options in a case study area in interior BC, using a toolbox that combines management- and research-oriented data and models. We found that combining commercial thinning and species diversification has the best potential to mitigate future timber supply shortages in BC. We discuss the limits of this toolbox approach and identify research needs and recommendations for future studies aiming at modelling cumulative effects of management, climate change, and natural disturbances on timber supply.
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[ABSTRACT] => Modern forestry research emphasizes infusing management practices with an understanding of natural disturbance regimes—often called ecological forestry. Forestry practices that emulate aspects of natural disturbance regimes are considered an effective approach to balance silvicultural and ecological objectives. Silvicultural research is often available to guide successful regeneration in many forest types, but little information is available about gap patterns from common disturbances in the eastern U.S. like hurricanes. We examined the size, shape, and spatial distribution of canopy gaps formed in a longleaf pine woodland by Hurricane Michael across multiple landscape factors including stand size, composition, and soil types. We found high variation in many gap characteristics but no significant differences in gap size or shape among landscape factors. However, spatial distribution of gaps differed among landscape types in nuanced ways. We also found that stand size complexity may prevent the formation of very large gaps that can disrupt fire continuity in systems managed with frequent fire. The results highlight the ecological importance of hurricane events and provide insight into hurricane gap formation at the landscape scale. The implementation of silviculture practices that emulate a large, rapid, single disturbance event may be more practically applied than management based on disturbances such as lightning or insects which occur over longer timeframes.
[KEYWORDS] => Hurricanes, Trpical cyclone, Forest disturbance, Gap dynamics, Ecological forestry, Pinus palustris
[FULL_TEXT] => ah3798/intellcont/Arko et al. - 2024 - The effects of a moderate severity hurricane on ga-1.pdf
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[TITLE] => Whole Stand Variable Density Yield Equations for Oak-Gum-Cypress Bottomland Hardwood Forests
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[TITLE] => Diversity-productivity relationships in forests of the southeastern United States: Leveraging national inventory data and tree functional traits
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[ABSTRACT] => Numerous studies have evaluated the relationship between tree species diversity and productivity, with general trends suggesting a positive relationship. While most studies only use species richness, this study also analyzed how productivity changes with functional diversity and Shannon-Wiener's diversity index, to compare the impact of these different indicators of tree species diversity. This study used data from the USDA Forest Service Forest Inventory and Analysis (FIA) database collected in Alabama, Louisiana, and Mississippi to estimate plot-level productivity and diversity. Structural equation modeling was used to determine the strength of the relationship between different measures of tree species diversity and forest productivity directly and indirectly. This study found that species richness had the greatest influence on forest productivity, but it was largely an indirect effect mediated by stand density. Functional diversity did not have a substantial relationship with productivity while Shannon- Wiener's diversity index was negatively related to productivity when modeled with the other diversity indicators and mediated through stand density. The methodology of this research provides a framework for a similar analysis expanded spatially to other regions of the US to include more forest types for comparison of trends with the use of FIA data.
[KEYWORDS] => Diversity-productivity relationship, Tree species diversity, National forest inventory data, Functional diversity, Structural equation modeling, FIA
[FULL_TEXT] => ah3798/intellcont/Himes et al. - 2022 - Perspectives Thirty years of triad forestry a cr-1.pdf
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[TITLE] => Western Spruce Budworm Effects on Forest Resilience
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[ABSTRACT] => Western spruce budworm (Choristoneura freemani Razowski) is the most destructive defoliator of forests in the western US. Forests in northern New Mexico experienced high levels of WSBW-caused defoliation and subsequent mortality between the 1980s and 2010s. The effects of severe western spruce budworm outbreaks on stand dynamics in the US Southwest are still relatively unknown, but understanding the impacts is important to the management and resilience of these forests. To begin addressing this knowledge gap, we conducted a study along two gradients: an elevational gradient from mixed-conifer to spruce-fir forests and a gradient of WSBW-caused defoliation intensity. We recorded overstory and understory stand conditions (size structure, species composition, damaging agents). Western spruce budworm was the primary damaging agent of host trees in all stands andcaused host tree mortality across all size classes, particularly in spruce-fir stands. Results indicate an unsustainable level of mortality in spruce-fir stands and a transition towards non-host species in mixed-conifer stands. Low levels of regeneration coupled with high overstory mortality rates indicate a potential lack of resilience in spruce-fir stands, whereas resilience to future western spruce budworm defoliation events may have increased in mixed-conifer stands affected by these outbreaks.
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[TITLE] => The Predicting Tree Growth App: an algorithmic approach to modelling individual tree growth
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[ABSTRACT] => Understanding of wood quality of hybrid poplar is critically important for manufacturers who want to know the suitability of the wood for specific products. To this end, lumber was milled from the merchantable stem of four hybrid poplar clones ages 10-11 yr., grown at single site near Boardman, OR. The vertical and radial position in the stem were recorded for each board and the boards were kiln dried, surfaced, and samples from each board tested to determine specific gravity (SG), dimensional stability, hardness, screw withdrawal, and bending strength and stiffness (modulus of rupture [MOR] and modulus of elasticity [MOE], respectively) from small clear specimens. Results show differences in wood properties relative to vertical and radial position in the stem. SG, hardness, screw withdrawal, and bending properties of lumber samples generally increased with height in tree. Tangential hardness, SG, and MOR varied significantly between different sides of the trees corresponding to predominant wind in the area. Boards milled from the center of the stem had lower MOE and MOR than boards milled from nearer the bark. The results of this study may be used to target specific stem locations for different end uses.
[KEYWORDS] => Hybrid poplar, wood quality, lumber quality, wood specific gravity, MOE, MOR.
[FULL_TEXT] => ah3798/intellcont/Himes et al. - 2021 - VARIATION IN WOOD PROPERTIES OF HYBRID POPLAR LUMB-1.pdf
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[ABSTRACT] => Forestry literature often suggests that the scope of forestry and forest research has changed, though there is limited empirical evidence to support this hypothesis. We used a bibliometric approach to quantify changes in word frequency in titles of documents in the Web of Science category “forestry”. Single words and word pairs (bigrams) were extracted from a total of 150 679 documents across 651 sources that spanned the period of 1956–2019. We identified increasing and decreasing trends in word frequency, identified influential documents, and examined country of origin. The number of documents published in forestry research has increased annually, with the United States, Canada, and China producing the highest quantities. The most influential documents in the data set involved methodology, stand development, and climate change. Word frequencies revealed a shift in research away from sustained-yield-based forestry and towards a more interdisciplinary view of forests as ecologically important, dynamic systems. We argue that changes in research trends reflect a broader paradigm shift towards sustainable forest management.
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