2017•BIBSYS Brage (BIBSYS (Norway))Open access

Experimental and numerical investigations of loads on aquaculture nets

Jialing Yu

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Abstract

This master thesis is to investigate the drag forces on net panels with different twine diameter,\nmaterial, solidity ratio, and Reynolds number. A series of net panel towing tests has been carried\nout. Resistance force on the net panel was measured. The nets have been tested in current only\ncondition, wave only condition and current with wave condition with a representative range of\ncurrent velocity, wave period and wave steepness. Error and uncertainty in the net panel towing\ntest are analyzed in detail. Numerical simulations were implemented. The numerical simulation\nin this thesis is realized in the framework of the open source computational fluid dynamics\ntoolbox OpenFOAM with version 4.1. The porous media model was proposed to solve the flow\ncharacteristics through and around a net panel. A variety of net panels with different solidity\nratio from experiments are applied in the validation case. The porous resistance force was obtained\nfromnumerical simulation to comparewith the drag force in current only condition from\nexperiments. Satisfactory agreement between simulations and experiments was demonstrated.

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This master thesis is to investigate the drag forces on net panels with different twine diameter,\nmaterial, solidity ratio, and Reynolds number. A series of net panel towing tests has been carried\nout. Resistance force on the net panel was measured. The nets have been tested in current only\ncondition, wave only condition and current with wave condition with a representative range of\ncurrent velocity, wave period and wave steepness. Error and uncertainty in the net panel towing\ntest are analyzed in detail. Numerical simulations were implemented. The numerical simulation\nin this thesis is realized in the framework of the open source computational fluid dynamics\ntoolbox OpenFOAM with version 4.1. The porous media model was proposed to solve the flow\ncharacteristics through and around a net panel. A variety of net panels with different solidity\nratio from experiments are applied in the validation case. The porous resistance force was obtained\nfromnumerical simulation to comparewith the drag force in current only condition from\nexperiments. Satisfactory agreement between simulations and experiments was demonstrated.

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Available abstract

This master thesis is to investigate the drag forces on net panels with different twine diameter,\nmaterial, solidity ratio, and Reynolds number. A series of net panel towing tests has been carried\nout. Resistance force on the net panel was measured. The nets have been tested in current only\ncondition, wave only condition and current with wave condition with a representative range of\ncurrent velocity, wave period and wave steepness. Error and uncertainty in the net panel towing\ntest are analyzed in detail. Numerical simulations were implemented. The numerical simulation\nin this thesis is realized in the framework of the open source computational fluid dynamics\ntoolbox OpenFOAM with version 4.1. The porous media model was proposed to solve the flow\ncharacteristics through and around a net panel. A variety of net panels with different solidity\nratio from experiments are applied in the validation case. The porous resistance force was obtained\nfromnumerical simulation to comparewith the drag force in current only condition from\nexperiments. Satisfactory agreement between simulations and experiments was demonstrated.

Key concepts: Aquaculture, Engineering, Civil engineering, Environmental science, Fish <Actinopterygii>, Fishery, Biology

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