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The Effects of Planting Density on the Growth and Yield of Lodgepole Pine Interior Spruce Interior Douglas-fir and Western Larch - 16 to 26 Year Results from EP964
This technical report summarizes nearly three decades of research from Experimental Project 964, a large-scale study investigating how planting density influences the development of four major conifer species in British Columbia. By evaluating 17 dif...This technical report summarizes nearly three decades of research from Experimental Project 964, a large-scale study investigating how planting density influences the development of four major conifer species in British Columbia. By evaluating 17 different sites over 16 to 26 years, the authors analyze the critical trade-offs between individual tree size and total timber yield per hectare. The findings reveal that higher densities maximize total wood volume and biomass and lower densities produce thicker trees with less taper, though vertical height growth remains largely unaffected across all treatments. This document serves as a guide for forest managers to select optimal stocking levels based on specific commercial goals, such as high-value lumber production versus biomass for carbon credits. -
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. -
A Summary of Early Results from Recent Lodgepole Pine Thinning Experiments in the British Columbia Interior
This document summarizes the long-term results of pre-commercial thinning experiments on lodgepole pine in the British Columbia interior. Researchers have tracked eleven distinct trials across various sites and ages to determine how reducing stand de...This document summarizes the long-term results of pre-commercial thinning experiments on lodgepole pine in the British Columbia interior. Researchers have tracked eleven distinct trials across various sites and ages to determine how reducing stand density influences future growth and yield. The study highlights that while thinning significantly increases individual-tree diameter and volume, it also results in lower net stand basal area and total volume compared to unthinned control plots. This document serves as a data source for calibrating growth models and informs forest managers on how different spacing intensities affect tree development and potential merchantable yields. -
Mountain Pine Beetle and Salvage Harvesting Small Stream and Riparian Zone Response in the Sub-Boreal Spruce Zone
This extension note presents findings from investigations into how the mountain pine beetle infestation and subsequent salvage harvesting near streams impact small stream and riparian zone health in British Columbia's Sub-Boreal Spruce zone. The res...This extension note presents findings from investigations into how the mountain pine beetle infestation and subsequent salvage harvesting near streams impact small stream and riparian zone health in British Columbia's Sub-Boreal Spruce zone. The research focused on understanding the riparian stand structure in these affected areas and assessing the influence of both the beetle infestation and harvesting on riparian zones, particularly shade levels and overall stream function. Through basal area studies and a stream health evaluation protocol, the authors aimed to provide short-term answers to guide forest management practices in regions heavily affected by the mountain pine beetle.