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http://dx.doi.org/10.3796/KSFT.2002.38.2.164

Hydrodynamic Simulation of Midwater Trawl System Behavior  

차봉진 (부경대학교)
이춘우 (부경대학교)
이주희 (부경대학교)
김현영 (부경대학교)
Publication Information
Journal of the Korean Society of Fisheries and Ocean Technology / v.38, no.2, 2002 , pp. 164-171 More about this Journal
Abstract
In this study, a mass-spring model is used to dynamically describe and calculate the shape and movement of a mid-water trawl system. This mathematical model theorizes that the factors constituting the system are the material points and the external forces such as hydrodynamic load, gravity, and buoyancy act on these material points. In addition, it surmises that these material points are connected to each other by springs, the springs do not have any mass, and the internal force acts on these springs. The non-linear differential equations are implicitly integrated with time for guaranteeing a stable solution. The dynamic simulation by the mass-spring model shows the status of the gear such as fishing gear depth, distance between doors, shape of the gear, and tension of each line. It depends on the parameters such as towing force, warp length, force of a sinker, buoyancy of a float, type of door and netting materials. The validity of the model is verified by comparing simulation motions of a trawl system obtained from computed values to those from an actual experiment.
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Times Cited By KSCI : 1  (Citation Analysis)
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