Measurement Techniques of Shingle Transport in the Nearshore Zone

Voulgaris G, Workman M, Collins MB. 1999. Measurement Techniques of Shingle Transport in the Nearshore Zone. Journal of Coastal Research (JCR). 15(4):1030-1039

New, innovative techniques are presented for the detection of shingle movement. A passive acoustic technique is used for the remote sensing of instantaneous gravel motion in shallow offshore areas. Noise created by the intercollision of moving particles (self-generated noise, SGN) is proportional to the transport rate. This approach is used in conjunction with measurements of waves and currents in the benthic boundary layer, to study processes associated with shingle transport. The SGN method can be used in tidally-dominated areas and those experiencing shoaling (non-breaking) waves; its use in the surf zone (beaches) is limited, due to increased ambient noise levels caused by wave breaking. A new shingle tracking technique has been developed, based upon the implantation of a miniature electronic transmitter into a shingle barticle (of the same shape in specific gravity as the indigenous sediment population). This 'transmitting pebble' can be detected remotely over a beach, to depths of burial of up to 70 cm, offering high (80%) recovery rates. Application of the techniques developed have demonstrated the enhansing role of the waves in off shore shingle transport process; modification of existing (steady current) shingle transport, in the surf zone, can be calculated using the energy flux equation, origionally derived for sand. the coefficient (K) is shown to be constant for gravel particle size (D50>20mm) and equal to 0.017.

Type
Journal Article
Authors
Voulgaris, George; Workman, Mark; Collins, Michael
Units
ARD
Keywords
Sediment Transport, SGN method, SOUNDBIB, Surf Zone, transmitting pebble

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