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都市が必要な場所に植樹するための新しいUBCツール(New UBC tool helps cities plant trees where they’re needed most)

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2026-08-25 カナダ・ブリティッシュコロンビア大学(UBC)

ブリティッシュコロンビア大学(UBC)の研究者らは、都市の暑さ対策として、植樹に適した場所を特定するモデリングツール「CanopyFit」を開発した。従来の緑地・暑さの地図だけでなく、地下埋設物、架空線、道路などの物理的制約を組み合わせ、樹木が実際に植えられ、十分に成長できる場所を評価する。カナダ・ケロウナでの試験では、冷却効果と植樹可能性、人口統計データを重ね合わせ、熱対策と公平性の観点から優先地域を抽出。新規樹冠の可能性の約半分が、最も機会の大きい約20%の地点に集中していた。また、衛星画像と機械学習により暑さマップの解像度を30mから10mへ向上させた。今後、バンクーバーなどで都市緑化計画への活用が進められる。

<関連情報>

樹冠から快適性へ:半乾燥都市における住宅地の景観選択が熱力学に与える影響 From canopy to comfort: The impact of residential landscape choices on thermal dynamics in a semi-arid city

Aubrey Benson, Bianca N.I. Eskelson, Travis Warziniack, Melissa R. McHale
Urban Forestry & Urban Greening  Available online: 5 August 2025
DOI:https://doi.org/10.1016/j.ufug.2025.128992

Highlights

  • Linear relationship: ∼1°C drop in mean radiant temperature per 10 % increase in yard canopy cover.
  • Xeriscapes show ∼1.5°C warmer morning air temperature than grass lawns.
  • Afternoon yard temperatures show no consistent pattern by cardinal orientation.

Abstract

Extreme summertime heat, intensified by climate change and urbanization, is the leading weather-related cause of mortality in the USA. Cities are increasingly turning to urban forests for heat mitigation, yet the complex relationship between urban ecosystem structure and cooling remains largely uninterrogated, leaving land managers uncertain about how to optimize ecosystem services and minimize disservices. This study examined hyper-local cooling mechanisms in residential landscapes in a semi-arid Colorado, USA city, using data from thirty-two front yards varying by cardinal orientation, ground cover (grass lawns vs. xeriscapes), and canopy cover (0–100 %). Using a mobile biometeorology unit, we measured mean radiant temperature, air temperature, and actual vapor pressure. We found a linear decrease in mean radiant temperature of approximately 1 °C for every 10 % increase in canopy cover at the sub-parcel scale. Xeriscapes were approximately 1.5 °C warmer in morning air temperature than grass lawns. Cardinal orientation effects were inconclusive, questioning the common assumption that trees provide the greatest cooling benefits on the west side of buildings. Findings emphasize the need for context-specific land management recommendations and offer a foundation for further research on how urban structure shapes microclimates at human-relevant scales.

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