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Quantitative measurements of transparency in the sea
Summary The total extinction of a ray of light in sea water caused by absorption and scattering is ascertained by measuring the transparency. The physical extinction coefficient is suitable to act as an indicator of extinction. In the visible part of the spectrum, it is possible to obtain approximately absolute measurements not influenced by the instruments used, by standardizing the transparency-meters with the aid of a Pulfrich-Photometer. The accuracy of the measurements continues, however, to be limited in particular by the shifting of the centres which are calculated and tabulated for various mean values of transparency of sea water, as well as by the technical properties of the instruments and the rectifier photocell. A principle for measuring transparency free of these deficiencies to a large extent and allowing the measurement of absolute extinction values at exactly defined points of the spectrum, including the ultra-violet, is described.
Herrn Prof. Dr. G. Wüst gewidmet zum 60. Geburtstag. 相似文献
Current meters documented three unique types of storms: frontal passages, southwest storms, and northeast storms. In general, the current meter results indicate that frontal passages and southwest storms were responsible for bringing sediment towards the shore, while northeast storms resulted in a net movement of sediment away from the beach. During the 1999–2000 winter, there were a greater percentage of frontal passages and southwest storms, while during the 2000–2001 winter, there were more northeast storms. The sediment that was transported landward during the 1999–2000 winter was reworked into the berm along moderately and highly developed beaches during the next summer.
A northeast storm on March 5–6, 2001, resulted in currents in excess of 1 m s−1 and wave heights that reached six meters. The storm persisted over 10 high tides and caused coastal flooding and property damage. Topographic profiles made before and after the storm demonstrate that developed beaches experienced a loss of sediment volume during the storm, while sediment was redistributed along the profile on moderately developed and undeveloped beaches. Two months after the storm, the profiles along the developed beaches had not reached their pre-storm elevation. In comparison, the moderately developed and undeveloped beaches reached and exceeded their pre-storm elevation and began to show berm buildup characteristic of the summer months. 相似文献