globalchange  > 气候减缓与适应
DOI: 10.1016/j.ufug.2018.11.002
WOS记录号: WOS:000460053300003
论文题名:
Comparing the infiltration potentials of soils beneath the canopies of two contrasting urban tree species
作者: Rahman, Mohammad A.1; Moser, Astrid2; Anderson, Marshal1; Zhang, Chi2; Rotzer, Thomas2; Pauleit, Stephan1
通讯作者: Rahman, Mohammad A.
刊名: URBAN FORESTRY & URBAN GREENING
ISSN: 1618-8667
出版年: 2019
卷: 38, 页码:22-32
语种: 英语
英文关键词: Climate change ; Evapotranspiration ; Flash flooding ; Fine roots ; Soil hydraulic conductivity ; Urbanization
WOS关键词: RAINFALL INTERCEPTION ; TILIA-CORDATA ; STREET TREES ; HYDRAULIC CONDUCTIVITY ; COOLING ABILITY ; SURFACE RUNOFF ; NORWAY SPRUCE ; GROWTH ; FLOW ; CAPACITY
WOS学科分类: Plant Sciences ; Environmental Studies ; Forestry ; Urban Studies
WOS研究方向: Plant Sciences ; Environmental Sciences & Ecology ; Forestry ; Urban Studies
英文摘要:

With ongoing urbanization and climate change our cities are continuously becoming warmer and susceptible to flash flooding. A wide array of green infrastructure including urban trees is getting attention to mitigate those problems; however, magnitude, patterns and processes of hydrological functional capacity of different tree species at micro-scales are largely unknown. We measured morphology, above and below ground growth of two ecologically contrasting street tree species at two streets in Munich, Germany: Robinia pseudoacacia L. and Tilia cordata Mill. during 2016-17. Additionally, tree transpiration, meteorological and edaphic variables including soil hydraulic conductivity was measured on two streets. Overall the soil physical properties including bulk density, particle size distribution and meteorological variables were not significantly different at the two sites. A higher soil infiltration rate (0.42 cm/min) under the canopies of R. pseudoacacia compared to the T. cordata (0.29 cm/min) was mainly attributed to the higher annual growth rate of R. pseudoacacia and showed a significant correlation (r = 0.62) with infiltration rate. Subsequently, R. pseudoacacia showed increased fine root biomass compared to T. cordata (121 g/m(2 )and 27 g/m(2) respectively). However, T. cordata trees transpired three times more compared to R. pseudoacacia which indicated that they might have a deeper roofing system. The study showed that fast growing species such as R. pseudoacacia can enhance infiltration through its intense fine roofing system creating channels in the upper soil. Moreover, grass cover also plays a role both in infiltration and ground evapotranspiration compared to the built surfaces and can enhance the processes if planted in combination with less water using species. Secondly, higher root biomass and infiltration further away from the tree trunk suggest a need for larger tree planting pits whereas species such as T. cordata are better suited in paved cutout pits inducing vertical roofing depth.


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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/128341
Appears in Collections:气候减缓与适应

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作者单位: 1.Weihenstephan Tech Univ Munchen, Sch Life Sci, Strateg Landscape Planning & Management, Emil Ramann Str 6, D-85354 Freising Weihenstephan, Germany
2.Weihenstephan Tech Univ Munchen, Forest Growth & Yield Sci, Sch Life Sci, Hans Carl von Carlowitz Pl 2, D-85354 Freising Weihenstephan, Germany

Recommended Citation:
Rahman, Mohammad A.,Moser, Astrid,Anderson, Marshal,et al. Comparing the infiltration potentials of soils beneath the canopies of two contrasting urban tree species[J]. URBAN FORESTRY & URBAN GREENING,2019-01-01,38:22-32
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