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Centrifugal forces estimated from trajectories of drifting buoys in winding paths of the Kuroshio

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Abstract

Radii and angular velocities in the motions of drifting buoys deployed in the Kuroshio are estimated by fitting circles to the trajectories of two drifting buoys, one with a drogue at 300 m depth and the other at 800 m depth. The buoys were deployed in the Kuroshio where it was flowing counter-clockwise around the large cold water mass south of Honshu. The same technique was applied to two drifting buoys with drogues at 300 m depth placed in the Kuroshio where it flowed clockwise around Oshima Island in Sagami Bay. The centrifugal forces were 7% and 6% as large as the Coriolis forces in the Kuroshio around the cold water mass, and they were −56% and −42% as large as the Coriolis forces in the current around the Oshima Island. The temperature gradient observed in the Oshima-West Channel suggested that the pressure gradient there was smaller due to the centrifugal force acting against the Coriolis force than the pressure gradient to be balanced with the Coriolis force.

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Taira, K., Teramoto, T. & Takeuchi, K. Centrifugal forces estimated from trajectories of drifting buoys in winding paths of the Kuroshio. Journal of the Oceanographical Society of Japan 43, 104–110 (1987). https://doi.org/10.1007/BF02111886

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  • DOI: https://doi.org/10.1007/BF02111886

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