Linking Canopy, Corridors, and Communities: A Structured Multi-Scale Evidence Map of Urban Forest Cooling, Biodiversity, and Equity for Sustainable Development Goal 11
Qianqian Zhan, Beier Yuan, Shuai Ling, Yikang SunUrban forests are expected to cool cities, sustain biodiversity, and distribute access to nature; however, evidence is often produced at scales that do not align with implementation. This structured evidence map characterizes English-language articles and reviews indexed in OpenAlex from 2000 to 15 July 2026 and interprets the patterns through three implementation cases. Five title-and-abstract searches returned 1201 records; 1103 remained after DOI/OpenAlex-ID deduplication, and a precision-oriented deterministic screen retained a 140-record core set. Metadata and abstracts were coded for outcome, scale, method, and management/governance language. Management/governance-related language occurred in 110 records, thermal outcomes in 74, biodiversity in 59, and explicit equity terms in 26. Thirty-three records were coded at two or more specified spatial scales and seven at all three; 14 jointly contained thermal and equity codes. These are record-level co-occurrences, not evidence of causal integration. Melbourne, Singapore, and Barcelona illustrate, without serving as controlled comparisons, three ways to translate citywide ambition into precinct stewardship, connected networks, and heat-health priorities. Within the defined corpus, canopy cover alone is an incomplete performance measure. The review proposes a non-aggregated decision chain and indicator portfolio linking network configuration, neighborhood vulnerability, site-level forest quality, and funded stewardship. Because screening and coding used one index and title/abstract metadata, the numerical patterns describe explicit framing rather than evidence quality, independent studies, or pooled effects.