open access publication

Article, 2024

Trade-off between drag and catch performance when designing zooplankton trawls

Ocean Engineering, ISSN 1873-5258, 0029-8018, Volume 306, Page 118097, 10.1016/j.oceaneng.2024.118097

Contributors

Kostak, Enis Noyan (Corresponding author) [1] Grimaldo, Eduardo 0000-0003-2690-9477 [1] Brinkhof, Jesse 0000-0003-2275-8894 [1] Herrmann, Bent 0000-0003-1325-6198 [1] [2] [3]

Affiliations

  1. [1] UiT The Arctic University of Norway
  2. [NORA names: Norway; Europe, Non-EU; Nordic; OECD];
  3. [2] SINTEF Ocean
  4. [NORA names: Norway; Europe, Non-EU; Nordic; OECD];
  5. [3] Technical University of Denmark
  6. [NORA names: DTU Technical University of Denmark; University; Denmark; Europe, EU; Nordic; OECD]

Abstract

The aquaculture sector is in pursuit of sustainable and cost-effective raw materials for feed, and the copepod Calanus finmarchicus is a marine zooplankton species of commercial interest because of its high abundance in northern areas. These copepods have the potential to meet the demand for vast quantities of marine raw materials. However, the lack of an energy- and catch-efficient trawl technology has limited the development of this fishery. Therefore, this study investigated the effect of two central trawl net design parameters mesh size and taper angle to identify which values that provide optimal trade-off balance between gear drag and catch efficiency. We conducted flume tank experiments using a series of plankton nets varying in mesh size (250–1000 μm), solidity ratio (0.54–0.76), and taper angle (5°– 30°) to acquire data on gear drag. The same nets were then used in fishing trials to obtain data on their catch performance. This study shows that zooplankton nets with a mesh size of approximately 500 μm and a low taper angle of about 5° provided the best trade-off between drag and catch performance.

Keywords

Calanus finmarchicus, abundance, acquired data, angle, aquaculture, aquaculture sector, area, balance, catch, catch efficiency, catching performance, commercial interest, copepod Calanus finmarchicus, copepods, cost-effective raw materials, data, development, drag, effect, efficiency, experiments, feeding, finmarchicus, fish, fisheries, fishing trials, flume, flume tank experiment, gear, interest, lack, low taper angle, marine raw materials, marine zooplankton species, materials, mesh, mesh size, nets, northern areas, performance, plankton, plankton net, potential, quantity, ratio, raw materials, sector, size, solid ratio, solids, species of commercial interest, study, tank experiments, taper, taper angle, technology, trade-off balance, trade-offs, trawl, trials, values, zooplankton, zooplankton net, zooplankton trawls

Funders

  • The Research Council of Norway

Data Provider: Digital Science