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March 31, 2026Urban forestry & urban greening0 citationsOpen Access

Building climate resilient urban forests: Impacts of irrigation and heat on tree establishment in a legacy city

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EWErika R. WrightCRChristopher B. RileyEDEllen Danford

Key Points

  • This research aims to identify effective strategies for establishing urban forests in legacy cities amidst climate change challenges.
  • Conducted a field study in Dayton, Ohio, with 640 native saplings across 20 parks.
  • Supplied varying irrigation levels to the saplings to assess their establishment success.
  • Monitored sapling survival, growth, and health relative to heat from surrounding impervious surfaces.
  • Approximately 50% of planted saplings survived by the end of the growing season.
  • Survival rates varied among different tree species based on irrigation and heat exposure.
  • Many saplings were lost due to human disturbances in the area.

Abstract

Climate change is causing temperatures to rise across much of the earth, and this warming is amplified in urban areas due to the urban heat island effect. One of the most effective methods of reducing urban heat is expanding the urban forest. However, rising temperatures coupled with increasing drought intensity create challenges for the establishment of newly planted trees in cities. Obstacles to urban tree establishment are exacerbated in legacy cities, which have limited financial resources to plant and manage trees. In summer 2024, we conducted a large-scale field study in Dayton, Ohio, USA to address the challenges of expanding the urban forest in a legacy city. To determine low-cost solutions for urban forest expansion, we supplied 640 newly-planted native saplings with varying levels of irrigation investments across 20 parks in Dayton. We then monitored sapling survival, growth, and health in response to our irrigation investments and surrounding impervious surfaces within a 500-m radius of each planting site as a proxy for heat. We found that the effects of both irrigation treatment and surrounding heat varied among tree species. Overall, approximately 50% of planted saplings survived to the end of the growing season, and many saplings went missing due to anthropogenic disturbance. Therefore, we recommend a tailored approach to urban forest expansion which takes species, resources available for irrigation, and surrounding imperviousness into consideration to inform sustainable urban reforestation plans.

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Cite This Study

Wright et al. (2026) studied this question.

synapsesocial.com/papers/69cb645fe6a8c024954b89c0https://doi.org/10.1016/j.ufug.2026.129422
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