The entrapment of particles by windbreaks


Autoria(s): Raupach, MR; Woods, N; Dorr, G; Leys, JF; Cleugh, HA
Data(s)

01/01/2001

Resumo

A theory is developed for calculating the entrapment of particles by a windbreak, with four results. (1) The fraction of particles in the oncoming flow which pass through the windbreak, or transmittance of the windbreak for particles (sigma), is related to the optical porosity (tau). The very simple approximation sigma=tau works well for most applications involving the interception of spray droplets by windbreaks. Results from a field experiment agree with the theoretical predictions. (2) A new equation for the bulk drag coefficient of a windbreak is tested against numerical, wind tunnel and field experiments. This enables the bleed velocity for the flow through the windbreak to be predicted in terms of the screen pressure coefficient (k) of the barrier. (3) The relationship between k and tau is different for a vegetative barrier than for a screen across a confined duct, implying a lower Fc for given tau. (4) The total deposition of particles to a windbreak is determined by a trade-off between particle absorption and throughflow, implying an optimum value of tau for maximum total deposition. For particles larger than 30 mum and vegetation elements smaller than 30 mm, this occurs near tau = 0.2. (C) 2001 Elsevier Science Ltd. All rights reserved.

Identificador

http://espace.library.uq.edu.au/view/UQ:60627

Idioma(s)

eng

Publicador

Pergamon-Elsevier Science Ltd

Palavras-Chave #Particle Deposition #Spray Deposition #Vegetation #Shelter #Porosity #Environmental Sciences #Meteorology & Atmospheric Sciences #Dry Deposition #Flow #Velocity #C1 #309901 Fertilisers and Agrochemicals (Application etc.) #620500 Sustainable Plant Production Systems
Tipo

Journal Article