WANG Yaping, GAO Shu. ADCP measurements of suspended sediment flux at the entrance to Jiaozhou Bay, western Yellow Sea[J]. Acta Oceanologica Sinica, 2013, 32(12): 96-103. doi: 10.1007/s13131-013-0395-0
Citation: WANG Yaping, GAO Shu. ADCP measurements of suspended sediment flux at the entrance to Jiaozhou Bay, western Yellow Sea[J]. Acta Oceanologica Sinica, 2013, 32(12): 96-103. doi: 10.1007/s13131-013-0395-0

ADCP measurements of suspended sediment flux at the entrance to Jiaozhou Bay, western Yellow Sea

doi: 10.1007/s13131-013-0395-0
  • Received Date: 2013-05-18
  • Rev Recd Date: 2013-08-20
  • The purpose of the present contribution is to explore the technique to use Acoustic Doppler Current Profilers (ADCPs) for suspended sediment flux measurements, which may be applied to coastal embayment environments such as estuaries and tidal inlets for sediment exchange and budget studies. Based on tidal cycle measurements from the entrance of Jiaozhou Bay, Shandong Peninsula, eastern China, statistical relationships between the suspended sediment concentration (SSC) and ADCP echo intensity output are established. Echo intensity data obtained during an ADCP survey along two cross-sections during a spring tidal phase were transformed into SSC data. The ADCP current velocity and SSC data were then used to calculate the flux of fine-grained sediment. The results show that net sediment transport at the entrance is directed towards the open sea, with an order of magnitude of 103 t per spring tidal cycle; hence, although Jiaozhou Bay is a low SSC environment, the tidally induced suspended sediment transport can be intense.
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  • Banse K, Falls C P, Hobson L A. 1963. A gravimetric method for determining suspended matter in sea water using Millipore filters. Deep-Sea Research, 10: 639-642
    Collins M B, KeXiankun, GaoShu, 1998. Tidally-induced flow structure over intertidal flats. Estuarine, Coastal and Shelf Science, 46: 233-250
    Dammann W P, Proni J R, Craynock J R, et al. 1991. Oceanic waste-water outfall plume characteristics measured acoustically. Chemistry and Ecology, 5: 75-84
    Deines K L. 1999. Backscatter estimation using broadband acoustic Doppler current profilers. Proceedings of the IEEE Sixth Working Conference on Current Measurement, San Diego, California: The Printing House, 249-253
    Dyer K R. 1986.Coastal and Estuarine Sediment Dynamics.Chichester: John Wiley & Sons, 342
    ECCHE (Editorial Committee for "Chinese Harbours and Embayments").1993. Chinese Harbours and Embayments (Part IV)—Southern Shandong Peninsula and Jiangsu Province (in Chinese). Beijing: China Ocean Press, 157-258
    FIO (The First Institute of Oceanography, State Oceanic Administration). 1984. Natural Environment of Jiaozhou Bay (in Chinese). Beijing: China Ocean Press, 286
    GaoShu, Collins M. 1995.Net transport direction of sands in a tidal inlet, using foraminiferal tests as natural tracers. Estuarine, Coastal and Shelf Science, 40: 681-697
    GaoShu, Wang Yaping. 2002. Characteristics of sedimentary environment and tidal inlet evolution of Jiaozhou Bay. Advances in Marine Science (in Chinese), 20(3): 52-59
    Geyer W R, Signell R. 1990. Measurements of tidal flow around a headland with a shipboard acoustic Doppler current profiler. Journal of Geophysical Research: Oceans 95, 3189-3197
    Gordon R L. 1996. Acoustic Doppler Currents Profilers Principles of Operation: a Practical Primer (second edition for Brand Band ADCPs). RD Instruments, 9855 Businesspork Ave. San Diego, California 92131 USA, 29-32
    Heywood K J. 1996. Diel vertical migration of zooplankton in the Northeast Atlantic. Journal of Plankton Research, 18(2): 163-184
    Holdaway G P, Thorne P D, Flatt D, et al. 1999. Comparison between ADCP and transmissometer measurements of suspended sediment concentration. Continental Shelf Research, 19: 421-441
    Kim S C, Friedrichs C T, Maa J P Y, et al. 2000. Estimating bottom stress in tidal boundary layer from acoustic Doppler velocimeter data. Journal of Hydraulic Engineering, 126(6): 399-406
    Kirby R. 1987. Sediment exchanges across the coastal margins of NW Europe. Journal of the Geological Society (London), 144: 121-126
    Liu Yunling, Wang Ya Ping, Li Yan, et al. 2012. Coastal embayment long-term erosion/siltation associated with P-A relationships: A case study from Jiaozhou Bay, China. Journal of Coastal Research, 28(5): 1236-1246
    Moore S A, Le Coz J, Hurther D, et al. 2012.On the application of horizontal ADCPs to suspended sediment transport surveys in rivers. Continental Shelf Research, 46: 50-63
    Nichols M M, Biggs R B. 1985.Estuaries. In: Davis R A, ed. Coastal Sedimentary Environments. New York: Sringer-Verlag, 77-183
    O'Connor B A. 1987. Short and long term changes in estuary capacity. Journal of the Geological Society (London), 144: 187-195
    Officer C B. 1981. Physical dynamics of estuarine suspended sediment. Marine Geology, 40: 1-14
    Parsons D R, Jackson P R, Czuba J A, et al. 2013. Velocity Mapping Toolbox (VMT): a processing and visualization suite for moving-vessel ADCP measurements. Earth Surface Processes and Landforms, doi: 10.1002/esp.3367
    Qin Yunshan, Li Fan, XuShanmin, et al. 1989. Suspended matter in the south Yellow Sea. OceanologiaetLimnologiaSinica, 20(2): 101-111
    Sahin C, Safak I, Hsu T J, et al. 2013. Observations of suspended sediment stratification from acoustic backscatter in muddy environments. Marine Geology, 336: 24-32
    Sassi M G, Hoitink A J F, Vermeulen B. 2012. Impact of sound attenuation by suspended sediment on ADCP backscatter calibrations. Water Resources Research, 48: W09520
    Shi Zhong, RenLaifa, Hamilton L J. 1999. Acoustic profiling of fine suspension concentration in the Changjiang Estuary. Estuaries, 22(3A): 648-656
    Siadatmousavi S M, Jose F, Chen Q, et al. 2013. Comparison between optical and acoustical estimation of suspended sediment concentration: Field study from a muddy coast. Ocean Engineering, 72: 11-24
    SOIC (State Ocean Information Center). 1999. Tide of Qingdao Gauge Station. Tide Table - from Yalu Estuary to ChangjiangEstuary. Beijing: China Ocean Press, 268
    Su J L, Wang K S. 1986. The suspended sediment balance in Changjiang Estuary. Estuarine, Coastal and Shelf Science, 23: 81-98
    Thevenot M M, Kraus N C. 1993. Comparison of acoustical and optical measurements of suspended material in the Chesapeake Estuary. Journal of Marine Environment Engineering, 1: 65-79
    Urick R J. 1983. Principles of Underwater Sound. New York: McGraw-Hill Book Company, 95
    Wang Yaping, GaoShu. 2007. Deposition rates on multiple spatial and temporal scales in Jiaozhou Bay, Shandong Peninsula. Quaternary Sciences (in Chinese), 27(5): 787-796
    Wang Yaping, Chu Yong Shik, Lee Hee Jun, et al. 2005.Estimation of suspended sediment flux from Acoustic Doppler Current Profiling along the Jinhae Bay entrance.ActaOceanologicaSinica, 24(2): 16-27
    Yang Shilun, Zhang Jing, Zhu Jianrong. 2004. Response of suspended sediment concentration to tidal dynamics at a site inside the mouth of an inlet: Jiaozhou Bay (China). Hydrology and Earth System Sciences Discussions, 8: 170-182
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