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Paul Weller plays 'Whirlpools End' on 'Later'
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The whirlpool forms in a region of about feet in diameter. The tremendous water turbulence takes place locally on the larger Old Sow region, frequently forming a huge area of several fascinating turbulence. The activities of Old Sow whirlpool is affected by the numerous currents and counter currents including tidal surges, storms, and strong winds. Several other small whirlpools can also be seen in the area.
What are whirlpools?
Whitecaps and whirlpools are often formed at the rapids during peak flows. Every day, large amounts of seawater are forced through the Skookumchuck Narrows by the tides. The water level difference on either side of the rapid may exceed 6. The tidal rapids are sometimes considered the fastest in the world. The tidal pattern causes the water to move almost all times in the narrows area.
Moskstraumen is one of the strongest whirlpools in the world. The whirlpool is formed when the strong tidal current flow between the islands and the Atlantic Ocean and the deep Vestfjorden. The largest whirlpool has a diameter of to feet and induces a surface water ripple of up to 3 feet. Moskstraumen result from several factors such as tides, strong winds, the position of the Lofotodden, and the topography of the underwater.
Although most whirlpools occur in confined straits and rivers, Moskstraumen is an exception. It occurs in open seas.
Tides on Lofoten rise twice a day and are the major contributors to the whirlpool. They combine with the Norwegian Sea current and storm-induced flow, resulting in a significant stream.
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The flow occurs at a depth of about 1, feet and meets a ridge of about 66 feet deep at Mosken and Vaeroy islands, leading to an upward movement and eddies around the region. Whirlpools also form at the base of waterfalls and man-made structures such as dams. Most of these phenomena are not very powerful. Even the swirling water formed when the stopper is removed from a sink or bath could properly be called a whirlpool.
There are, however, some very powerful and dangerous whirlpools. Whirlpools are not, in fact, bottomless pits.
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Experiments have shown that whirlpools often pull objects to the bottom of the sea bed. They may then be moved along the sea floor by ocean currents. If the object can float, it may come back to the surface a long way from where the whirlpool is located.
Did You Know? Large ships are generally in no danger from whirlpools, although some reports from ancient history say otherwise. It is thought that the mythical Charybdis of the Greeks may have been a whirlpool off the coast of Sicily, capable of swallowing small ships. Small boats and swimmers must use caution around whirlpools.