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Gidon Winters

Do urban tree hydraulics limit their transpirational cooling? A comparison between temperate and hot arid climates

Limor Shashua-Bar, Mohammad A. Rahman, Astrid Moser-Reischl, Aviva Peeters, Eleonora Franceschi, Hans Pretzsch, Thomas Rötzer, Stephan Pauleit, Gidon Winters, Elli Groner, Shabtai Cohen

Evaporative cooling due to transpiration of urban trees in two contrasting climates is the subject of this study. Transpiration was studied experimentally on local tree species at ‘tree lab’ sites in Munich, Germany (temperate climate) and in Beer Sheva, Israel (hot arid climate), within various settings (park, street, square) with natural and sealed surface conditions. The comparison was based on linear relationship of midday canopy resistance to atmospheric vapor pressure deficit (VPD), where the slope is proportional to tree hydraulic conductance and midday stem water potential. Sap flux densities in all trees were similar but crown projected area (CPA) was larger in Beer Sheva, resulting in higher hydraulic resistance that limits transpirational cooling (regression slopes of 0.25–0.44 in Beer Sheva vs. 0.10–0.18 in Munich). The contribution of the transpirational cooling, studied as the proportion of latent heat to total available energy was about 40% less significant at noon hours in summer in Beer Sheva than in Munich. Results suggested that shading should be the main consideration in planting local trees in hot dry climates. The linear relationship of midday canopy resistance to VPD is proposed as an operative tool for comparing evaporative cooling between local trees in different climatic regions.

Publication language English
Volume 49
Publication status Published - 01.05.2023

Keywords

Canopy resistance
Sap flow
Transpirational cooling
Urban energy budget
Urban trees

ASJC Scopus subject areas

Geography, Planning and Development
Environmental Science (miscellaneous)
Urban Studies
Atmospheric Science

Sustainable Development Goals

SDG 11 - Sustainable Cities and Communities
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Link to publication in Scopus