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Testing Backlog Reforestation Options
FRDA Report #143 -
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. -
Suitability of Native Broadleaf Species for Reforestation in the Cariboo Area of the Southern Interior Forest Region
This document evaluates the long-term viability of planting native broadleaf trees as a reforestation strategy in British Columbia's Cariboo region. By tracking species like aspen, birch, and cottonwood alongside traditional conifers over a ten-year ...This document evaluates the long-term viability of planting native broadleaf trees as a reforestation strategy in British Columbia's Cariboo region. By tracking species like aspen, birch, and cottonwood alongside traditional conifers over a ten-year study period, the authors discovered that planted broadleaves suffered from poor survival rates due to wildlife browsing, frost, and competition from grass. While these deciduous trees naturally excel at enhancing soil nutrients and providing frost protection for understory seedlings, the study concluded that they are currently less reliable than conifers when manually planted. This document suggests that while broadleaves remain vital for forest biodiversity and health, their successful management in this region relies more on robust natural regeneration than on artificial cultivation. -
Early Height Growth of Douglas-fir on a Dispersed Retention Site in the Coast-Interior
This document investigates the effectiveness of different harvesting methods for establishing Douglas-fir regeneration in the dry climate of British Columbia's interior. By comparing clearcutting against shelterwood systems, which retain partial tree...This document investigates the effectiveness of different harvesting methods for establishing Douglas-fir regeneration in the dry climate of British Columbia's interior. By comparing clearcutting against shelterwood systems, which retain partial tree canopies, the authors examine how varying levels of shade and protection influence the survival and size of new trees. The study found that while individual tree growth and crown volume were most robust in clearcut areas, the shelterwood treatments significantly improved the density of natural regeneration. This document suggests that a heavy-removal shelterwood may offer the ideal balance, providing adequate growth rates while acting as an insurance policy for a fully stocked forest. -
From Past to Future - Creating Resilience in Degraded Dry Forests
This webinar examines how the historical suppression of Indigenous cultural burning, combined with aggressive logging and modern fire exclusion, has dangerously altered the composition of dry forests. The research explored in this webinar reveals tha...This webinar examines how the historical suppression of Indigenous cultural burning, combined with aggressive logging and modern fire exclusion, has dangerously altered the composition of dry forests. The research explored in this webinar reveals that these landscapes have shifted from fire-resistant environments dominated by Ponderosa Pine and Western Larch to overcrowded, drought-stressed stands of Douglas-fir. This loss of species diversity significantly reduces the forest's ability to survive high-severity fires and capture carbon, especially as climate change accelerates the expansion of hot, arid conditions. This webinar argues that restoring ecological resilience requires integrating diverse knowledge sources with advanced technologies, such as machine learning and spatial data, to better monitor and manage these shifting ecosystems. -
Influence of Recent Bark Beetle Outbreaks on Wildfire
This webinar examines the complex relationship between mountain pine beetle outbreaks and subsequent wildfire patterns across the western United States. By categorizing infestation into red, gray, and old stages, this research tests whether the prese...This webinar examines the complex relationship between mountain pine beetle outbreaks and subsequent wildfire patterns across the western United States. By categorizing infestation into red, gray, and old stages, this research tests whether the presence of dead or dying trees significantly increases a forest's vulnerability to fire. Findings reveal that despite changes to fuel flammability, beetle activity has a negligible effect on total area burned and does not act as a primary driver of fire severity. Instead, the study suggests that topography and extreme fire weather remain the dominant factors influencing fire behavior, regardless of prior insect disturbance. This webinar argues that management policies should prioritize addressing climate change and drought as the underlying causes of both disturbances rather than focusing on a supposed synergism between beetles and fire. -
Vulnerability Resilience and Climate Change Adaptation Potential for Ecosystems and Their Management in the West Kootenay - Summary Report
This report details an initiative undertaken to understand and address the impacts of climate change on ecosystems and forest management in the West Kootenay region of British Columbia. The project aimed to assess ecological vulnerability using local...This report details an initiative undertaken to understand and address the impacts of climate change on ecosystems and forest management in the West Kootenay region of British Columbia. The project aimed to assess ecological vulnerability using local climate projections, collaboratively learn with forest practitioners and scientists, and case study relevant concepts like vulnerability, resilience, and risk management. The report outlines the methodologies employed - including climate modeling and bioclimate envelope analysis - and the findings regarding projected climate changes, potential impacts on ecosystems, and an initial assessment of ecosystem vulnerability across different subregions. The report serves as a foundation for identifying potential adaptation options for forest management and discusses barriers, incentives, and opportunities for implementing these changes in the face of a changing climate. -
Operationalizing Adaptive Silviculture for Climate Change
This webinar discusses operationalizing adaptive silviculture for climate change through a multi-site research network. The core purpose of the project is to provide forest managers with real-world, operational examples of integrating climate change ...This webinar discusses operationalizing adaptive silviculture for climate change through a multi-site research network. The core purpose of the project is to provide forest managers with real-world, operational examples of integrating climate change adaptation principles into practice, specifically by fostering ecosystem resilience to uncertain futures. The research employs a consistent framework across various forest types, testing three primary adaptation strategies including resistance, resilience, and transition. The webinar details the work at the Minnesota pine site, highlighting local climate vulnerability to drought and the application of these three treatments: simple thinning for resistance, mixed-species restoration for resilience, and aggressive transition management using both native and novel, future-adapted species like Ponderosa pine. -
Adapting Forest and Range Management to Climate Change in the Skeena Region - Considerations for Practitioners and Government Staff
This extension note serves as a guide for adapting forest and range management practices in the Skeena Region of British Columbia to the realities of climate change. Recognizing the significant impact of a warming and wetter climate with increased ex...This extension note serves as a guide for adapting forest and range management practices in the Skeena Region of British Columbia to the realities of climate change. Recognizing the significant impact of a warming and wetter climate with increased extreme weather on local ecosystems, it synthesizes current climate change research to project future conditions and their ecological consequences. The document outlines potential adaptation strategies for resource professionals and government staff involved in operational planning, effectiveness monitoring, and climate action plans. Ultimately, the goal is to foster resilient ecosystems that can continue to provide essential services and products in the face of ongoing climatic shifts. -
Adaptive Silviculture for Climate Change - Lessons for Timber-Oriented Managers
This webinar focused on adapting timber management practices to environmental shifts. The webinar establishes the urgent need for adaptation by detailing regional climate projections, including rising temperatures and increased summer drought frequen...This webinar focused on adapting timber management practices to environmental shifts. The webinar establishes the urgent need for adaptation by detailing regional climate projections, including rising temperatures and increased summer drought frequency, which pose significant threats to traditionally managed commercial species like Red Pine. The framework consisting of Resistance, Resilience, and Transition strategies is introduced, demonstrating how varying levels of silvicultural intervention, from thinning to mitigate drought to planting novel species via assisted migration, can reduce climate vulnerability. The central purpose of the discussion is to convince land managers that they can implement these science-backed silvicultural actions to sustain forest productivity and commercial value despite increasing ecological risks. -
Stock Type Selection and Ordering Guidelines
This document assists silviculturists in British Columbia with the process of stock type selection for reforestation efforts. The document details the characteristics and definitions of both container-grown and field-grown stock, emphasizing that the...This document assists silviculturists in British Columbia with the process of stock type selection for reforestation efforts. The document details the characteristics and definitions of both container-grown and field-grown stock, emphasizing that the correct choice significantly impacts a plantation's survival and early growth. Key sections are dedicated to factors influencing selection, such as species, site limiting factors, and logistics related to ordering and tracking stock types, as well as proper receiving and handling stock upon delivery. This document serves as a comprehensive reference to match specific seedling characteristics with site-specific conditions and cost considerations. -
Thinning Guidance for British Columbia
This document serves as a comprehensive manual for forest professionals, outlining best practices for thinning operations effective April 2025. Its primary purpose is to support sustainable forest management by providing science-based guidelines for ...This document serves as a comprehensive manual for forest professionals, outlining best practices for thinning operations effective April 2025. Its primary purpose is to support sustainable forest management by providing science-based guidelines for developing and implementing thinning prescriptions, particularly for enhancing timber production and quality. The guidance emphasizes maintaining ecological and social objectives while focusing on operational efficiency, minimizing environmental impacts, and promoting innovative approaches. It also details the required data collection and monitoring processes to ensure the effectiveness and compliance of thinning activities, thereby fostering healthy, resilient forest ecosystems across British Columbia. -
First-year Growth Responses of Young Red Alder Stands to Fertilization
This extension note details a study on how adding nutrients affects the growth of young red alder trees on Vancouver Island. Recognizing the increasing importance of red alder for various products and ecological restoration, the research investigates...This extension note details a study on how adding nutrients affects the growth of young red alder trees on Vancouver Island. Recognizing the increasing importance of red alder for various products and ecological restoration, the research investigates whether fertilization, particularly with phosphorus and other elements, can enhance their early development. The document describes field trials conducted at multiple locations, outlining the experimental setup, fertilization treatments, and the resulting stem growth responses observed in the first year after application. The document aims to provide initial insights into optimizing the growth and quality of red alder through nutrient management in this region. -
Reforesting Dry Sites in the Thompson Okanagan Natural Resource Region
This document is a comprehensive guide to address the increasing challenges of establishing healthy forests on drought-prone lands. Recognizing the impact of climate change and high seedling mortality, the report meticulously examines current silvicu...This document is a comprehensive guide to address the increasing challenges of establishing healthy forests on drought-prone lands. Recognizing the impact of climate change and high seedling mortality, the report meticulously examines current silviculture practices and relevant research to identify best management practices for improved regeneration success. It provides a drought risk key for practitioners to classify sites and recommends specific treatment regimes encompassing planning, harvesting, mechanical site preparation, planting considerations, and post-planting surveys. The purpose of this guide is to offer practical, experience-based guidance to forest managers in the Thompson Okanagan region to enhance the resilience and successful reforestation of dry sites facing heightened drought risk. -
Best Management Practices for Improving Survival for Planted Douglas-fir in The Cariboo Natural Resource Region
This document provides best management practices for improving the survival of planted Douglas-fir in the challenging Cariboo Natural Resource Region of British Columbia, where frost and drought are significant limiting factors. Recognizing the incre...This document provides best management practices for improving the survival of planted Douglas-fir in the challenging Cariboo Natural Resource Region of British Columbia, where frost and drought are significant limiting factors. Recognizing the increasing climate extremes predicted for the area, the guide emphasizes careful planning, including mature tree retention for thermal protection, appropriate planting prescriptions that consider site-specific frost and drought hazards, and the strategic use of mechanical site preparation. The report outlines various planting scenarios based on differing levels of frost risk and provides actionable recommendations for silviculture practitioners to enhance the establishment and long-term resilience of Douglas-fir forests.