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Operational Implementation of a Commercial Thinning Trial Using Micro-Forestry Equipment
This document details a 2024 commercial thinning trial conducted by Burns Lake Community Forest in British Columbia, using specialized micro-forestry equipment to improve stand health and reduce wildfire risk. By using smaller harvesters and forwarde...This document details a 2024 commercial thinning trial conducted by Burns Lake Community Forest in British Columbia, using specialized micro-forestry equipment to improve stand health and reduce wildfire risk. By using smaller harvesters and forwarders, the project aimed to minimize soil disturbance and tree damage while thinning from below to remove suppressed or defective stems. The document outlines a rigorous scientific framework, comparing different tree-marking strategies and machine trail layouts to determine the most efficient way to achieve a specific target basal area. This document provides operational guidance for implementing low-impact silviculture, providing data on machine productivity, financial feasibility, and the ecological benefits of enhancing species diversity in managed forests. -
Effect of Manual Treatment Timing on Red Alder Regrowth and Conifer Response
This document details an investigation into the manual control of red alder to promote the growth of planted Douglas-fir and grand fir seedlings. By testing five different cutting schedules, researchers sought to determine if the timing of brush remo...This document details an investigation into the manual control of red alder to promote the growth of planted Douglas-fir and grand fir seedlings. By testing five different cutting schedules, researchers sought to determine if the timing of brush removal influenced how effectively it prevented the alder from resprouting and competing for resources. The study concludes that performing this work during the late growing season maximizes the death of the alder stumps while minimizing new growth, though environmental factors like moisture stress significantly impacted the overall health of both the deciduous and coniferous trees. -
Shelterwoods in Root Disease Infected Stands Preliminary Results
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Commercial Thinning on Mule Deer Winter Range Improving Habitat Through Management
This technical report examines the feasibility of using commercial thinning to restore mule deer winter range in the interior Douglas-fir forests of British Columbia. The authors argue that a century of fire suppression has created unnaturally dense ...This technical report examines the feasibility of using commercial thinning to restore mule deer winter range in the interior Douglas-fir forests of British Columbia. The authors argue that a century of fire suppression has created unnaturally dense stands that lack the large-tree structure necessary for deer survival, while simultaneously increasing the risk of high-severity wildfires. Through two case studies at the Alex Fraser Research Forest, the document details the environmental, social, and economic objectives of removing small-diameter trees to improve stand vigour and health. The findings reveal significant challenges, noting that while the thinning successfully moves forest structure toward long-term habitat targets, the financial viability remains marginal due to low harvest volumes and the negative conversion return of small-log processing. -
IDF Strategy for Williams Lake and 100 Mile TSAs
This document details a silviculture strategy for the Interior Douglas-fir zones within British Columbia's Williams Lake and 100 Mile House regions. The report establishes a comprehensive framework for forest management by categorizing the landscape...This document details a silviculture strategy for the Interior Douglas-fir zones within British Columbia's Williams Lake and 100 Mile House regions. The report establishes a comprehensive framework for forest management by categorizing the landscape into working groups based on tree species and their role as critical mule deer winter habitat. The authors argue for a shift toward partial cutting systems and higher density planting to combat challenges like climate change, mountain pine beetle outbreaks, and stand stagnation. This document serves as a roadmap to improve timber productivity and ecological resilience through sixteen targeted recommendations, emphasizing the need for updated inventory data and adaptive management trials. -
Fuel Management Guidance for Wildland-Urban Interface Areas of the Interior Douglas-Fir Biogeoclimatic Zone in the Williams Lake Timber Supply Area
This guidance document provides a strategic framework for managing forest vegetation to protect communities within the Williams Lake Timber Supply Area from wildfire. The document outlines a systematic approach to fuel-reduction treatments, which inc...This guidance document provides a strategic framework for managing forest vegetation to protect communities within the Williams Lake Timber Supply Area from wildfire. The document outlines a systematic approach to fuel-reduction treatments, which includes dividing landscapes into specific zones ranging from private property to tactical fuel breaks while balancing safety with resource management objectives like wildlife habitat preservation. By prioritizing the thinning of stand density and the removal of surface fuels, the authors aim to transform high-risk forests into resilient ecosystems that can survive fire and provide safe access for emergency crews. This document defines precise long-range target stand structures, emphasizing that maintaining a high canopy base height and low fuel loading is essential for reducing fire intensity in the wildland-urban interface. -
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. -
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. -
Thinning and Prescribed Fire Effects on Overstory Tree and Snag Structure in Dry Coniferous Forests of the Interior Pacific Northwest
This study investigates how different forest management techniques influence the physical makeup and fire resilience of dry coniferous forests in the Pacific Northwest. By comparing mechanical thinning and prescribed burning, both independently and i...This study investigates how different forest management techniques influence the physical makeup and fire resilience of dry coniferous forests in the Pacific Northwest. By comparing mechanical thinning and prescribed burning, both independently and in combination, the authors demonstrate that thinning is the most reliable method for reducing tree density and raising the canopy to prevent crown fires. While fire alone had a minimal impact on living overstory structure in this study, it played a vital role in creating snags, or standing dead trees, which are essential for wildlife habitat. This study concludes that combining both treatments offers the most comprehensive approach to restoring historical forest conditions while simultaneously lowering the risk of catastrophic wildfire. -
Out on a Limb with Alkali Resource Management
Out On A Limb is a series that uplifts trailblazers in BC communities who are leading innovative management practices for the betterment of the forests of tomorrow. In this episode of Out on a Limb, the SIP joins Alkali Resource Management, which is ...Out On A Limb is a series that uplifts trailblazers in BC communities who are leading innovative management practices for the betterment of the forests of tomorrow. In this episode of Out on a Limb, the SIP joins Alkali Resource Management, which is 100% owned by Esk'etemc First Nation, and project partners from the Government of BC to learn more about the impacts and benefits of ARM's innovative approaches just south of Williams Lake, BC. Francis Johnson and Julian Paul walk through some ways ARM aims to create resilience in stands that possess dense understories of small trees, increasing wildfire risk, and decreasing suitability as wildlife habitat using partial harvest with clumpy spacing and prescribed burning to restore forest health and revitalize cultural uses and values. This collaborative project evaluates the efficacy of ARM's treatments on understory vegetation and wildlife use, wildfire risk, disturbance agents, and overall forest integrity and resiliency. By blending Indigenous stewardship, applied research, and on-the-ground treatments, the trial is generating valuable insights into how these forests can become more resilient to disturbance while supporting mule deer winter range, biodiversity, and culturally important plants. -
Out on a Limb with Harrop-Procter Community Forest
Out On A Limb is a series that uplifts trailblazers in BC communities who are leading innovative management practices for the betterment of the forests of tomorrow. In this episode of Out on a Limb, the SIP joins Harrop-Procter Community Forest to le...Out On A Limb is a series that uplifts trailblazers in BC communities who are leading innovative management practices for the betterment of the forests of tomorrow. In this episode of Out on a Limb, the SIP joins Harrop-Procter Community Forest to learn about their innovative approach to anticipate and adapt to climate change impacts. Harrop-Procter CF has spent the past 15 years adapting their forest management approach to respond to climate change impacts on their forest and surrounding landscape. Using a risk assessment approach, they are able to identify areas with varying risk to climate change and prioritize management actions. Erik Leslie, Forest Manager at Harrop-Procter, unpacks the three types of Operations Strategies he employs using his climate adaptation framework: Resistance, Resilience, and Transition. the SIP joins him in the field to visit three sites where these strategies have resulted in specific treatments to make the site either resistant, resilient, or completely transitioned on a new trajectory. Erik shows us how managers can integrate climate science and risk assessment into practical forestry decision making. -
Aspen Restoration in the Eastern Sierra Nevada - Effectiveness of Prescribed Fire and Conifer Removal
This case study investigates the effectiveness of conifer removal and prescribed fire as tools to rejuvenate declining aspen stands in the eastern Sierra Nevada. Researchers found that both methods can successfully stimulate asexual regeneration, tho...This case study investigates the effectiveness of conifer removal and prescribed fire as tools to rejuvenate declining aspen stands in the eastern Sierra Nevada. Researchers found that both methods can successfully stimulate asexual regeneration, though their efficacy is often threatened by environmental stressors like herbivory, drought, and sunscald. Specifically, while most treated sites saw a significant rise in young stem density, older aspen trees in heavily thinned areas suffered from sudden exposure, and small burned plots were frequently targeted by foraging animals. The authors suggest that successful aspen restoration requires a long-term management strategy that includes protecting new growth and carefully timing the removal of competing trees to ensure the biological diversity of the landscape. -
The Use of Silviculture and Prescribed Fire to Manage Stand Structure and Fuel Profiles in a Multi-aged Lodgepole Pine Forest
This case study evaluates how different logging and fire management techniques can simulate natural disturbance patterns in Montana's lodgepole pine forests. The authors compared two specific shelterwood silvicultural treatments: one where remaining ...This case study evaluates how different logging and fire management techniques can simulate natural disturbance patterns in Montana's lodgepole pine forests. The authors compared two specific shelterwood silvicultural treatments: one where remaining trees were spread out evenly, and another where they were kept in concentrated groups. The study found that prescribed burning effectively reduced the hazardous fine-fuel loading created by harvesting and the even distribution method led to much higher levels of unintentional tree mortality than the grouped approach. The authors suggest that grouped retention may be a more resilient strategy for restoring forest structure because it better protects delicate overstory trees from both fire damage and windthrow. -
Striving for Resilient Ecosystems
This document is a comprehensive guide for British Columbia woodlot licensees, advocating for a transition toward resilient ecosystem management that prioritizes long-term ecological health over simple timber yields. The document is structured around...This document is a comprehensive guide for British Columbia woodlot licensees, advocating for a transition toward resilient ecosystem management that prioritizes long-term ecological health over simple timber yields. The document is structured around specific tools and techniques, such as maintaining mixed retention of trees to support soil microorganisms and intentionally recruiting standing and downed habitat like snags and coarse woody debris. By emphasizing the importance of complex forest structures, the guide aims to help managers foster landscapes that can withstand and adapt to shifting environmental conditions. This guidance document functions as a practical framework for integrating old forest attributes and nutrient cycling into active forestry to ensure ecosystems remain robust and biologically diverse. -
Effects of Variable Aspen Retention on Stand Development Aspen Sucker Production and Growth of Lodgepole Pine in the SBSdw1 Variant of South-central British Columbia
This technical report evaluates how varying levels of aspen retention influence the development of mixed-species forest stands in British Columbia, specifically focusing on the growth of lodgepole pine and the emergence of aspen suckers. By comparing...This technical report evaluates how varying levels of aspen retention influence the development of mixed-species forest stands in British Columbia, specifically focusing on the growth of lodgepole pine and the emergence of aspen suckers. By comparing different thinning intensities against an untreated control, the researchers sought to identify thresholds for competition that allow for optimal timber production while maintaining the ecological benefits of broadleaf trees. The findings indicate that while pine vigour improved when fewer than 1000 aspen stems per hectare were kept, significant differences in tree height and diameter were not yet apparent four years after treatment. Additionally, the study confirms that complete aspen removal triggers the highest density of new suckering, whereas leaving residual trees helps suppress this regrowth. This document serves as a guide for silviculturists to refine free-growing standards and develop cost-effective management strategies for complex sub-boreal ecosystems. -
The Growth of Bigleaf Maple and Planted Conifers 14 Years After Maple Clump Thinning
This technical report evaluates a 14-year study on how clump thinning of bigleaf maple affects the development of both the maples and intermixed planted conifers in British Columbia. Because bigleaf maples regenerate via vigorous stump sprouting, the...This technical report evaluates a 14-year study on how clump thinning of bigleaf maple affects the development of both the maples and intermixed planted conifers in British Columbia. Because bigleaf maples regenerate via vigorous stump sprouting, they often overtop and outcompete young conifers, leading researchers to test whether reducing maple density could improve conifer survival and growth. The results revealed that manual thinning was largely ineffective for timber management, as the maple's rapid canopy closure and aggressive re-sprouting meant that the treatment provided no significant long-term growth advantage to the underlying conifers. Instead, the study suggests that bigleaf maple thrives under a coppice-based management system, where sprout growth is dictated more by internal clump dynamics than by the overall density of the stand. The authors conclude that while thinning does not benefit conifers, these mixedwood sites remain highly productive and may be better suited for short-rotation hardwood fiber production. -
Assessment of a 14-year-old Mixed Western Redcedar - Red Alder Plantation in Southwestern British Columbia
This document examines the growth and yield dynamics of a 14 year-old mixed-species plantation featuring Western redcedar and red alder in British Columbia. By comparing various planting ratios, the authors explore how complementary resource use aff...This document examines the growth and yield dynamics of a 14 year-old mixed-species plantation featuring Western redcedar and red alder in British Columbia. By comparing various planting ratios, the authors explore how complementary resource use affects tree development compared to single-species monocultures. The study reveals that while individual cedar growth improved in a balanced 50:50 mixture, the total stand productivity did not exceed that of pure stands, suggesting that mixtures offer benefits in biodiversity and wood quality rather than overall biomass volume. This document serves as a guide for forest managers to consider the ecological advantages of mixedwoods and provides a density threshold for maintaining conifer health when growing alongside alder. -
Influence of Red Alder Density on Growth of Douglas-fir and Western Redcedar 20-year Results
This document examines a twenty-year study in British Columbia regarding the complex relationship between red alder and two conifer species, Douglas-fir and western redcedar. While alder is often removed by foresters because it competes for light and...This document examines a twenty-year study in British Columbia regarding the complex relationship between red alder and two conifer species, Douglas-fir and western redcedar. While alder is often removed by foresters because it competes for light and space, it also provides essential benefits by naturally fertilizing the soil with nitrogen. The findings suggest that maintaining a specific density of 100 to 200 alder trees per hectare can actually support conifer growth, particularly on nutrient-poor sites. The authors conclude that traditional forestry assessment methods may be inadequate, recommending a larger plot radius to more accurately measure how these different tree species interact and compete over time. -
Competitive Effects of Trembling Aspen on Lodgepole Pine Performance in the SBS and IDF Zones of the Cariboo-Chilcotin Region of South-central British Columbia
This document investigates how trembling aspen competition impacts the growth and survival of lodgepole pine within the Southern Interior Forest Region of British Columbia. By monitoring several forest sites over a seven-year period, researchers dete...This document investigates how trembling aspen competition impacts the growth and survival of lodgepole pine within the Southern Interior Forest Region of British Columbia. By monitoring several forest sites over a seven-year period, researchers determined that tall aspen density is the most effective metric for predicting declines in pine diameter and overall vigor, likely due to competition for available light. The study reveals that pine performance drops significantly once aspen density exceeds specific ecological thresholds, which differ between the moist Sub-Boreal Spruce and the drier Interior Douglas-fir zones. This document serves as a management guide for foresters, offering scientific recommendations on the maximum amount of aspen that can be retained in young stands without compromising timber productivity. -
Early Effects of Manipulating Aspen Density on Lodgepole Pine Performance Aspen Sucker Production and Stand Development in the IDFxm Subzone Near Williams Lake B.C.
This technical report evaluates the early effects of manipulating trembling aspen density on the development of lodgepole pine stands within the dry Interior Douglas-fir zone of British Columbia. By establishing an experiment near Meldrum Creek, res...This technical report evaluates the early effects of manipulating trembling aspen density on the development of lodgepole pine stands within the dry Interior Douglas-fir zone of British Columbia. By establishing an experiment near Meldrum Creek, researchers analyzed how different levels of aspen retention impacted conifer growth, vigor, and survival over a four-year period. The study found that while thinning immediately altered the stand structure and reduced aspen basal area, it did not yet yield significant improvements in pine performance, likely due to the young age of the trees and slow growth rates in this climate. Additionally, the report explores the competitive neighbourhood, identifying that aspen within a one-meter radius are the most influential competitors, while also noting that higher aspen retention may help suppress the density of new suckers. This research serves to refine competition thresholds and provide forest managers with biological data to optimize mixedwood management and free-growing guidelines in the region.