EGU25-5456, updated on 14 Mar 2025
https://doi.org/10.5194/egusphere-egu25-5456
EGU General Assembly 2025
© Author(s) 2025. This work is distributed under
the Creative Commons Attribution 4.0 License.
Oral | Wednesday, 30 Apr, 11:40–11:50 (CEST)
 
Room 0.14
Scaled outdoor experiments to assess impacts of tree evapotranspiration and shading on microclimates and energy fluxes in 2D street canyons 
Zhanmin Wu, Yurong Shi, Longhao Ren, and Jian Hang
Zhanmin Wu et al.
  • Sun Yat-Sen University, School of Atmosperic Sciences, China (wuzhm23@mail2.sysu.edu.cn)

Urban trees contribute to summer cooling by offering solar shading and evapotranspiration. But their relative significance is still unclear due to the challenges in directly measuring tree evapotranspiration rate or latent heat flux (QE) in actual urban environment. Concurrently, high-quality experimental data are still required for validation of urban canopy model simulations. For this purpose and as a novelty, this study directly measures tree evapotranspiration (or QE) and shading effects in street canyons (building height/street width, H/W=1 or 2, H=1.2m), using scaled outdoor experiment in subtropical region, i.e. suburban Guangzhou, China, from August to October 2022. Results show that urban trees (leaf area index: 3.5) can effectively deliver surface temperature reductions beneath tree canopies up to 5.1℃ as H/W=1 and 8.2℃ as H/W=2, while slightly raise air temperature by less than 2.0℃ above tree canopies. Energy flux comparison indicates tree shading as the primary cooling mechanism, with up to 97% of incoming solar radiation (800Wm-2) intercepted, while evapotranspiration, with a rate of less than 1.6g/min and a latent heat flux below 90Wm-2, plays a secondary role. Additionally, trees decrease street air velocity by up to 63.6%, and increase of water vapor pressure by up to 2.77hPa.

How to cite: Wu, Z., Shi, Y., Ren, L., and Hang, J.: Scaled outdoor experiments to assess impacts of tree evapotranspiration and shading on microclimates and energy fluxes in 2D street canyons , EGU General Assembly 2025, Vienna, Austria, 27 Apr–2 May 2025, EGU25-5456, https://doi.org/10.5194/egusphere-egu25-5456, 2025.