-
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. -
How Extension Enhances the Knowledge and Practice of Innovative Silviculture in British Columbia Canada
This paper examines how extension, a dynamic process of knowledge exchange, can bridge the gap between scientific research and field application to support innovative silviculture in British Columbia. The authors outline a framework of five extension...This paper examines how extension, a dynamic process of knowledge exchange, can bridge the gap between scientific research and field application to support innovative silviculture in British Columbia. The authors outline a framework of five extension forms, ranging from one-way sharing to co-produced knowledge generation, designed to help foresters adapt to modern pressures such as climate change, wildfire severity, and the legal recognition of Indigenous Rights and Title. By reviewing the history of extension, this document acknowledges the field's colonial and anti-Indigenous origins while advocating for a future grounded in reciprocity and ethical collaboration. This document serves as a call to action for organizations to formally value and resource extension staff, ensuring that stewardship practices are effectively informed by a diverse range of social, economic, and ecological values. -
Net Primary Production of Lodgepole Pine (Pinus Contorta Var. Latifolia Engelm.) in Some Ecosystems in Southeastern British Columbia
This PhD thesis explores the net primary production of lodgepole pine across various ecosystems in southeastern British Columbia. By analyzing thirty unmanaged forest stands, the researcher investigated how soil moisture and nutrient regimes influenc...This PhD thesis explores the net primary production of lodgepole pine across various ecosystems in southeastern British Columbia. By analyzing thirty unmanaged forest stands, the researcher investigated how soil moisture and nutrient regimes influence the amount of biomass trees create both above and below the ground. A central theme of the study is foliage efficiency, which examines how effectively a tree's needles produce new growth under different environmental stresses, such as nitrogen limitations or drought. In addition to empirical field data, this document explores simulation models, suggesting that simplified biological relationships can better predict forest growth than traditional methods. This document aims to provide an understanding of timber yields to help foresters improve wood production through better density management and site-specific strategies. -
Case Studies of Red Alder and Sitka Alder in Douglas-fir Plantations - Nitrogen Fixation and Ecosystem Production
This PhD thesis investigates the influence of nitrogen-fixing alders on the productivity and nutrient dynamics of Douglas-fir plantations in the Pacific Northwest. Through seven case studies, the author compares the effects of red alder and Sitka ald...This PhD thesis investigates the influence of nitrogen-fixing alders on the productivity and nutrient dynamics of Douglas-fir plantations in the Pacific Northwest. Through seven case studies, the author compares the effects of red alder and Sitka alder, demonstrating that these species significantly enhance ecosystem net primary production and soil fertility on nutrient-poor sites. A critical finding is that the benefits of alder are site-dependent; while they accelerate tree growth on infertile sites, they can actually suppress conifer development and reduce biomass on fertile sites due to intense competition. This research positions Sitka alder as a low-competition alternative to red alder, suggesting both species are valuable biological tools for sustainable forest management on nitrogen-deficient land. -
Damaged Forests Provide an Opportunity to Mitigate Climate Change
This research paper explores how the mountain pine beetle epidemic has transformed British Columbia's forests from carbon sinks into net carbon sources, necessitating a re-evaluation of forest management for climate change mitigation. By using the Ca...This research paper explores how the mountain pine beetle epidemic has transformed British Columbia's forests from carbon sinks into net carbon sources, necessitating a re-evaluation of forest management for climate change mitigation. By using the Carbon Budget Model of the Canadian Forest Sector, the authors analyze the temporal carbon dynamics of various harvesting strategies, specifically comparing the production of wood pellets and timber against natural decay or wildfire scenarios. The study challenges the simplistic assumption of carbon neutrality in bioenergy, demonstrating that the time required to achieve a carbon break-even point depends heavily on regional growth cycles and the specific type of fossil fuel being displaced. This paper argues that salvage logging of severely damaged pine stands provides a superior atmospheric benefit compared to unmanaged protection as it uses decaying biomass to offset coal emissions while facilitating faster forest regeneration. -
Is Mastication Right for Your Site Science-based Decision Trees for Forest Managers
This decision aid explores the mechanical process of mastication, a forest management technique that grinds dense vegetation into floor mulch to reduce wildfire risks and enhance ecological health. By using a series of decision trees, the document pr...This decision aid explores the mechanical process of mastication, a forest management technique that grinds dense vegetation into floor mulch to reduce wildfire risks and enhance ecological health. By using a series of decision trees, the document provides land managers with a structured framework for evaluating site-specific factors such as slope steepness, soil sensitivity, and tree density to determine if machinery is a viable alternative to prescribed burning. The document emphasizes that successful outcomes depend heavily on operator expertise and the selection of specialized equipment, which can minimize soil compaction while precisely tailoring debris size. This decision aid serves as a practical manual for balancing fuel treatment objectives with environmental stewardship, highlighting how strategic mulching can protect landscapes where traditional fire use is restricted. -
Fuel Management Strategies in 60-Year-Old Douglas-fir and Ponderosa Pine Stands in the Squamish Forest District British Columbia
This study investigates various fuel management strategies designed to restore wildfire resilience in overstocked, 60-year-old Douglas-fir and ponderosa pine stands within British Columbia's Squamish Forest District. The authors compared four distinc...This study investigates various fuel management strategies designed to restore wildfire resilience in overstocked, 60-year-old Douglas-fir and ponderosa pine stands within British Columbia's Squamish Forest District. The authors compared four distinct approaches ranging from prescribed burning alone to complex combinations of mechanical thinning, mulching, and debris removal to determine which method best replicates the historically open and fire-resistant forest structure. The findings indicate that the most effective strategy for reducing hazardous canopy bulk density and surface fuels is to thin the stand, remove the extracted material, and then apply a follow-up burn. Thsi document serves as a technical guide for land managers, emphasizing that while thinning and removal is costly, it provides the most reliable protection against high-intensity crown fires in these vulnerable dry forest ecosystems. -
Post Fire Vegetation Regeneration During Abnormally Dry Years Following Severe Montane Fire - Southern Alberta, Canada
This paper investigates the patterns of post-fire vegetation regeneration in two climatically distinct sites in Waterton Lakes National Park, Canada, following a severe montane fire and subsequent abnormally dry conditions. The study aimed to quantif...This paper investigates the patterns of post-fire vegetation regeneration in two climatically distinct sites in Waterton Lakes National Park, Canada, following a severe montane fire and subsequent abnormally dry conditions. The study aimed to quantify the recovery trajectories of herbaceous understory and conifer seedlings over five years, revealing that site environmental conditions were more influential than inter-annual drought in determining recovery. Notably, the moist site exhibited greater herbaceous biomass accumulation while the drier site demonstrated significantly higher lodgepole pine seedling recruitment, indicating a complex ecological resilience to drought in fire-prone montane ecosystems. This paper affirmed the utility of remotely piloted aircraft systems for spatially monitoring changes in vegetation height, cover, and biomass after a disturbance. -
Thinning of a Ponderosa Pine - Douglas-fir Forest in South Central BC Impacts on Understorey Vegetation
This study investigates the effects of forest thinning on the understory vegetation in ponderosa pine and Douglas-fir forests of south-central British Columbia. The study addresses the problem of forest in-growth due to fire suppression, which reduce...This study investigates the effects of forest thinning on the understory vegetation in ponderosa pine and Douglas-fir forests of south-central British Columbia. The study addresses the problem of forest in-growth due to fire suppression, which reduces grazing land and increases wildfire risk. Through a four-year data collection period at two sites, the researchers examined how thinning, which reduces tree density, impacts understory species diversity and biomass production. The findings indicate that while thinning may not consistently increase species diversity in the short term, it does lead to a significant increase in total understory biomass within a few years, suggesting its potential as a tool for ecological restoration and enhancing forage for livestock. -
Principles and Practices for the Restoration of Ponderosa Pine and Dry Mixed-Conifer Forests of the Colorado Front Range
This document outlines a framework for restoring ponderosa pine and dry mixed-conifer forests on Colorado's Front Range, addressing the increased size and severity of recent wildfires. It emphasizes understanding the historical ecological dynamics of...This document outlines a framework for restoring ponderosa pine and dry mixed-conifer forests on Colorado's Front Range, addressing the increased size and severity of recent wildfires. It emphasizes understanding the historical ecological dynamics of these forests, particularly changes in density and fire regimes, to inform modern management. The document details principles and guidelines for restoration and emphasizes the importance of spatial and temporal scale, enhancing desired and rare structural elements like openings and tree groups, and working with natural environmental gradients and disturbance patterns. This document provides a process for planning, implementing, and monitoring restoration projects, highlighting the crucial role of adaptive management and interdisciplinary collaboration to ensure forest resilience and sustained delivery of ecosystem services. -
Recent Changes in Aboveground Live-Tree Carbon in Spruce and Fir-Dominated Sub-Boreal Forests in the BC Interior
This extension note investigates recent changes in aboveground live-tree carbon within spruce and fir-dominated sub-boreal forests in the interior of British Columbia. The study specifically re-evaluated carbon stocks between 20032004 and 2018 at the...This extension note investigates recent changes in aboveground live-tree carbon within spruce and fir-dominated sub-boreal forests in the interior of British Columbia. The study specifically re-evaluated carbon stocks between 20032004 and 2018 at the Aleza Lake Research Forest to understand how carbon storage is impacted by tree species and size. The authors found that while younger forest stands generally accumulated carbon, older stands with larger trees showed a decline in aboveground live-tree carbon, largely due to increased mortality of these large trees. This highlights a critical concern regarding the role of mature forests in carbon sequestration amidst accelerating climate change and increasing tree mortality rates.