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- W2017118239 abstract "The maximum particle-capture efficiencies of rectangular-mesh nets have been estimated for cases where the net is set up in running water. The pressure drop due to fluid flow through a plane, rectangular network of cylindrical fibres at low Reynolds number was derived from equations published for an array of parallel, equally-spaced cylinders. Expressions were assumed for the pressure drop across a plane, porous disc of finite extent in a high Reynolds-number flow, so as to find the average flow speed through the disc as a function of the flow speed in its absence. This information was used to estimate the speed of water flow through particular examples of Trichoptera larval filter nets, and from this, their efficiencies of particle capture due to direct interception and to diffusional deposition, in terms of the flow approaching the mouth of the filter system from far upstream. The Stokes number, which governs the contribution of inertial impaction to the capture process, was also found for various particle sizes. Diffusional deposition and inertial impaction were estimated to be negligible except for particles smaller than 0·3 μm and larger than 50 μm respectively. It is suggested that coarse-net spinners, Hydropsyche and Arctopsyche, are potentially highly efficient at capturing large particles, whereas Macronema and the philopotamids are better adapted to the capture of particles smaller than 3 μm." @default.
- W2017118239 created "2016-06-24" @default.
- W2017118239 creator A5006673953 @default.
- W2017118239 date "1983-07-01" @default.
- W2017118239 modified "2023-10-17" @default.
- W2017118239 title "Some hydrodynamic aspects of fitter feeding with rectangular-mesh nets" @default.
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- W2017118239 doi "https://doi.org/10.1016/0022-5193(83)90028-0" @default.
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