Quantifying mesh resistance to opening of netting panels: experimental method, regression models, and parameter estimation strategies

Author:

de la Prada Amelia,González Manuel

Abstract

Abstract The increased mesh resistance to opening of netting panels manufactured with thick and stiff twines has a notable impact in the structural response and selective performance of the fishing gears. The only available method to quantify the mesh resistance to opening of netting panels was described in Sala et al. (in Experimental method for quantifying resistance to the opening of netting panels. ICES Journal of Marine Science, 64: 1573–1578, 2007b). We present an alternative method with a similar methodology: we attempt to estimate the mechanical and geometrical properties of a netting material that best fits the experimental measurements of a netting panel. We introduce three major contributions: (i) a considerably simpler uniaxial experimental set-up, which stretches a netting sample in the normal direction of the meshes while leaving free its deformation in the transverse direction; (ii) more accurate theoretical models for mesh resistance to opening; and (iii) new strategies to estimate the parameters of the models. We present the results of the analysis of polyethylene, compacted polyethylene, single-twine, and double-twine netting. Some of the assessed combinations of estimation strategies and theoretical models have an excellent goodness of fit with experimental data. The method proved to be a simple yet accurate way to quantify the mesh resistance to opening of netting panels.

Publisher

Oxford University Press (OUP)

Subject

Ecology,Aquatic Science,Ecology, Evolution, Behavior and Systematics,Oceanography

Reference25 articles.

1. Nonlinear stiffness models of a net twine to describe mesh resistance to opening of flexible net structures;de la Prada;Proceedings of the Institution of Mechanical Engineers, Part M: Journal of Engineering for the Maritime Environment,2014

2. Assessing the suitability of gradient-based energy minimization methods to calculate the equilibrium shape of netting structures;de la Prada;Computers and Structures,2014

3. Effect of catch size and shape on the selectivity of diamond mesh cod-ends: I. Model development;Herrmann;Fisheries Research,2005

4. Theoretical study of the influence of twine thickness on haddock selectivity in diamond mesh cod-ends;Herrmann;Fisheries Research,2006

5. The influence of twine thickness, twine number and netting orientation on codend selectivity;Herrmann;Fisheries Research,2013

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