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Influence of Spacing and Artificial Pruning on the Production of Clearwood of Douglas-fir
This document explores the economic and biological feasibility of managing second-growth Douglas-fir forests to ensure a future supply of high-quality clearwood. As old-growth harvests decline, the author uses field research and a specialized simulat...This document explores the economic and biological feasibility of managing second-growth Douglas-fir forests to ensure a future supply of high-quality clearwood. As old-growth harvests decline, the author uses field research and a specialized simulation model named PRUNE to examine how different initial spacing and artificial pruning techniques impact tree growth, branch diameter, and overall wood value. The document provides an extensive analysis of market trends and price structures in British Columbia, suggesting that early pruning of widely spaced trees offers the most promising return on investment for intensive forest management. This research can support foresters in optimizing the production of knot-free timber by balancing the costs of silvicultural interventions against the premium prices paid for superior wood grades. -
The Role of Broadleaf Trees - Impacts of Managing Boreal and Sub-boreal Mixedwood Forests in British Columbia
This extension note examines the evolving management of boreal and sub-boreal mixedwood forests in British Columbia, specifically focusing on the integration of broadleaf trees like aspen and birch into traditionally conifer-dominant landscapes. Whil...This extension note examines the evolving management of boreal and sub-boreal mixedwood forests in British Columbia, specifically focusing on the integration of broadleaf trees like aspen and birch into traditionally conifer-dominant landscapes. While historical policies treated broadleaves as an impediment to timber production, this document highlights their essential contributions to ecological resilience, biodiversity, and soil health, alongside their potential for industrial diversification. Through a comprehensive literature review, the authors identify a critical trade-off in growth and yield, noting that while broadleaf competition can reduce individual conifer size, mixed stands often achieve a higher total wood volume than pure stands. This document serves as a call for enhanced research and policy reform to bridge significant knowledge gaps, seeking to balance economic timber supply with the diverse long-term benefits of a natural forest mixture. -
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. -
Development of the Tree and Stand Simulator (TASS) Version 3.0.
This technical report details the evolution and mechanics of the Tree and Stand Simulator, a spatially explicit individual tree model used to forecast forest growth and timber yield in British Columbia. The rimary purpose of this report is to introdu...This technical report details the evolution and mechanics of the Tree and Stand Simulator, a spatially explicit individual tree model used to forecast forest growth and timber yield in British Columbia. The rimary purpose of this report is to introduce TASS III, a third-generation version designed to simulate mixed-species and multi-cohort stands with greater biological realism. Central to this advancement is the integration of a light dispersion model that governs how individual tree crowns interact, compete for resources, and respond to shading across different canopy layers. By refining algorithms for height growth, branch extension, and mortality, and introducing a user-friendly graphical interface, the report provides foresters with a robust tool for evaluating complex silviculture scenarios and long-term forest resiliency.