Abstract

Abstract. Vestfjorden in northern Norway, a major spawning ground for the northeast Arctic cod, is sheltered from the continental shelf and open ocean by the Lofoten–Vesterålen archipelago. The archipelago, however, is well known for hosting strong and vigorous tidal currents in its many straits, currents that can produce significant time-mean tracer transport from Vestfjorden to the shelf outside. We use a purely tidally driven unstructured-grid ocean model to look into non-linear tidal dynamics and the associated tracer transport through the archipelago. Of particular interest are two processes: tidal pumping through the straits and tidal rectification around islands. The most prominent tracer transport is caused by tidal pumping through the short and strongly non-linear straits Nordlandsflaget and Moskstraumen near the southern tip of the archipelago. Here, tracers from Vestfjorden are transported tens of kilometers westward out on the outer shelf. Further north, weaker yet notable tidal pumping also takes place through the longer straits Nappstraumen and Gimsøystraumen. The other main transport route out of Vestfjorden is south of the island of Røst. Here, the transport is primarily due to tracer advection by rectified anticyclonic currents around the island. There is also an anticyclonic circulation cell around the island group Mosken–Værøy, and both cells have flow speeds up to 0.2 m s−1, magnitudes similar to the observed background currents in the region. These high-resolution simulations thus emphasize the importance of non-linear tidal dynamics for transport of floating particles, like cod eggs and larvae, in the region.

Highlights

  • Increased industrial activity along the Norwegian coast raises concern about potential impacts on the marine ecosystem

  • When strong tidal currents interact with complex topography in shallow waters, non-linear flow dynamics can produce significant time-mean lateral transport (Huthnance, 1973; Parker, 1991)

  • We will investigate non-linear tidal dynamics around Lofoten–Vesterålen in northern Norway (Fig. 1), a major spawning ground for the northeast Arctic cod (Hjermann et al, 2007)

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Summary

Introduction

Increased industrial activity along the Norwegian coast raises concern about potential impacts on the marine ecosystem. When strong tidal currents interact with complex topography in shallow waters, non-linear flow dynamics can produce significant time-mean lateral transport (Huthnance, 1973; Parker, 1991). A net vorticity flux across a sloping bottom can be generated by differential bottom friction acting on water columns that are made to oscillate along the sloping bottom (Zimmerman, 1978; Loder, 1980; Pingree and Maddock, 1985; Maas et al, 1987) In this case, the direction of the vorticity flux will depend on the orientation of the tidal ellipses relative to topography, but the end result will be time-mean currents around islands and banks.

Model description
Tidally driven tracer transport in Lofoten
Tidal pumping
Rectified tidal currents
Vorticity flux and residual currents
The source of the vorticity flux
Non-linear dynamics around Mosken–Værøy
Summary and conclusions
Findings
H2e t 0
Full Text
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