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Development and Structure of Three High-elevation Old Spruce-fir Stands in the Quesnel Highland of East-central British Columbia
This document examines the composition and development of high-elevation spruce-fir forests in British Columbia's Quesnel Highland to support the survival of the mountain caribou. By analyzing three specific old-growth stands, the authors reveal that...This document examines the composition and development of high-elevation spruce-fir forests in British Columbia's Quesnel Highland to support the survival of the mountain caribou. By analyzing three specific old-growth stands, the authors reveal that while subalpine fir dominates in density, Engelmann spruce comprises the largest, oldest trees, though it struggles to reach the canopy without significant environmental disturbances. The study highlights that essential old-growth attributes, such as large-diameter dead wood and complex decay structures, may require over 400 years to fully materialize. This document provides guidance for implementing alternative silvicultural systems that balance timber harvesting with the preservation of critical winter habitats and arboreal lichen sources. -
Development of a Drought Risk Assessment Tool for British Columbia Forests Using a Stand-level Water-balance Approach
This technical report introduces a drought risk assessment tool designed to help forest managers in British Columbia navigate the challenges of a warming climate. By using a stand-level water-balance approach, the researchers calculated the ratio of ...This technical report introduces a drought risk assessment tool designed to help forest managers in British Columbia navigate the challenges of a warming climate. By using a stand-level water-balance approach, the researchers calculated the ratio of water availability to evaporative demand to establish drought tolerance thresholds for ten common tree species. The study concludes that many species face significant threats of stress and mortality on drier sites, whereas moist, water-receiving areas may serve as critical climate refugia for conservation. This document provides a practical framework for applying this data to silvicultural decisions, such as selecting resilient species for reforestation and identifying areas at higher risk for wildfires or invasive species. -
Using Silviculture to Maintain and Enhance Grizzly Bear Habitat in Six Variants of the Prince George Forest Region
This document presents a methodology for refining silviculture guidelines in British Columbia's Prince George region to enhance habitat for grizzly bears. The analysis highlights key ecological differences, noting that mountain bears flourish in open...This document presents a methodology for refining silviculture guidelines in British Columbia's Prince George region to enhance habitat for grizzly bears. The analysis highlights key ecological differences, noting that mountain bears flourish in open, naturally gappy environments, while plateau bears struggle in dense stands that lack forage opportunities. To address this, the authors recommend using partial cutting systems and reduced tree density to create and maintain canopy gaps that maximize light penetration, stimulating the growth of critical shrubs, roots, and berries, and also suggests protecting features like high stumps and coarse woody debris. Furthermore, this document stresses the importance of minimizing human interaction by deactivating roads and retaining vegetation for security cover, especially near high-value riparian areas. This document provides an adaptive management framework to integrate wildlife needs directly into sustainable forest planning.