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Insufficient space: Prioritizing large tree species and planting designs still fail to meet urban forest canopy targets

作者:Paticia Rettondini Torquato, Christopher Szota, Amy K. Hahs, Stefan K. Arndt, Stephen J. Livesley · 发表于:Landscape and Urban Planning · 年份:2024 · DOI:10.1016/j.landurbplan.2024.105287 · 被引用次数:11 · 研究领域:Urban Green Space and Health、Land Use and Ecosystem Services、Urban Heat Island Mitigation

• Individual tree growth models were used to test canopy cover in new developments. • Optimizing tree planting locations can increase canopy cover by 5–7%. • Rainfall differences in the same city can impact mature crown area of tree species. • No tree planting scenarios achieved 30 % canopy cover after 30 years. • These developments have insufficient public space to achieve canopy cover targets. The benefits associated with urban forests have led municipalities to set ambitious canopy cover targets to be achieved over the next few decades. Identifying tree species and planting strategies that can achieve these targets is crucial. We applied species-specific tree crown growth models for 20 species commonly planted in Melbourne, Australia to simulate canopy cover increase in newly developed residential suburb over 30 years (2025–2055). Tree species selection and planting strategies were simulated under high and low rainfall. The default strategy represented current tree species selection and planting practices. The two alternative strategies i) occupied all available street planting spaces prioritizing the planting of large crown species at maturity, and ii) occupied all available street planting spaces, maximizing the number of trees planted. Both the default strategy and maximising the number of trees planted achieved 11–15 % canopy cover after 30 years. Prioritising planting trees with large crowns at maturity achieved 16–22 % canopy cover after 30 years. Low rainfall reduce...