Analysing the influence of different street vegetation on traffic-induced particle dispersion using microscale simulations.
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Nadège Blond | Christiane Weber | Annett Wania | Michael Bruse | C. Weber | N. Blond | A. Wania | M. Bruse
[1] Gail Taylor,et al. Deposition velocities to Sorbus aria, Acer campestre, Populus deltoides X trichocarpa 'Beaupré', Pinus nigra and X Cupressocyparis leylandii for coarse, fine and ultra-fine particles in the urban environment. , 2005, Environmental pollution.
[2] Z. Ould-Dada,et al. Resuspension of small particles from tree surfaces , 2001 .
[3] J. E. Wagner,et al. Analyzing the cost effectiveness of Santiago, Chile's policy of using urban forests to improve air quality. , 2008, Journal of environmental management.
[4] A. C. Hill. Vegetation: a sink for atmospheric pollutants. , 1971, Journal of the Air Pollution Control Association.
[5] Riccardo Buccolieri,et al. Dispersion study in a street canyon with tree planting by means of wind tunnel and numerical investigations – Evaluation of CFD data with experimental data , 2008 .
[6] Bert Brunekreef,et al. Daily Mortality and Air Pollution in the Netherlands , 2000, Journal of the Air & Waste Management Association.
[7] J. Fenger,et al. Urban air quality , 1999 .
[8] Bodo Ruck,et al. Influence of trees on the dispersion of pollutants in an urban street canyon - experimental investigation of the flow and concentration field , 2007 .
[9] J. H. Bennett,et al. Absorption of Gaseous Air Pollutants By a Standardized Plant Canopy , 1973 .
[10] J. Eichhorn,et al. Simulation of effects of vegetation on the dispersion of pollutants in street canyons , 2001 .
[11] Christopher Baker,et al. Wind tunnel investigation of the effect of vehicle motion on dispersion in urban canyons , 1997 .
[12] E. Mcpherson,et al. Chicago's urban forest ecosystem: Results of the Chicago Urban Forest Climate Project. (Includes executive summary). Forest Service general technical report (Final) , 1994 .
[13] D. Stanners,et al. Europe's environment : the Dobrís assessment , 1995 .
[14] K. P. Beckett,et al. Urban woodlands: their role in reducing the effects of particulate pollution. , 1998, Environmental pollution.
[15] Clemens Mensink,et al. CFD SIMULATIONS OF THE IMPACT OF A LINE VEGETATION ELEMENT ALONG A MOTORWAY ON LOCAL AIR QUALITY , 2008 .
[16] Mukesh Khare,et al. Wind tunnel simulation studies on dispersion at urban street canyons and intersections—a review , 2005 .
[17] C. N. Hewitt,et al. Quantifying the effect of urban tree planting on concentrations and depositions of PM10 in two UK conurbations , 2007 .
[18] P. Freer-Smith,et al. The uptake of particulates by an urban woodland: site description and particulate composition. , 1997, Environmental pollution.
[19] P. Quénel,et al. Pollution Atmosphérique et Santé: Corrélation ou Causalité? Le Cas de la Relation entre l'Exposition aux Particules et la Mortalité Cardio-pulmonaire , 2001, Journal of the Air & Waste Management Association.
[20] David J. Nowak,et al. Institutionalizing urban forestry as a ''biotechnology'' to improve environmental quality , 2006 .
[21] M. Bruse,et al. Simulating surface–plant–air interactions inside urban environments with a three dimensional numerical model , 1998 .
[22] W. J. Bealey,et al. Estimating the reduction of urban PM10 concentrations by trees within an environmental information system for planners. , 2007, Journal of environmental management.
[23] G. T. Johnson,et al. An investigation of three-dimensional characteristics of flow regimes within the urban canyon , 1992 .
[24] Matthias Ketzel,et al. Modelling the fate of ultrafine particles from exhaust pipe to rural background: an analysis of time scales for dilution, coagulation and deposition , 2004 .
[25] Eric Savory,et al. Influence of street obstructions on flow processes within urban canyons , 1999 .
[26] T. Oke. Street design and urban canopy layer climate , 1988 .
[27] R. Colvile,et al. The transport sector as a source of air pollution , 2001 .