Bed load transport on the shoreface by currents and waves

被引:24
作者
Kleinhans, Maarten G. [1 ]
Grasmeijer, Bart T. [1 ]
机构
[1] Univ Utrecht, Dept Phys Geog, Inst Marine & Atmospher Res, NL-3508 TC Utrecht, Netherlands
关键词
shoreface; continental shelf; ocean waves (sediment transport); bed load transport; field measurements; wave climate; current climate; bed load sampling;
D O I
10.1016/j.coastaleng.2006.06.009
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Tide-driven bed load transport is an important portion of the net annual sediment transport rate in many shoreface and shelf environments. However, bed load transport under waves cannot be measured in the field and bed load transport by currents without waves is barely measurable, even in spring tidal conditions. There is, consequently, a strong lack of field data and validated models. The present field site was on the shoreface and inner shelf at 2 to 8.5 km offshore the central Dutch coast (far outside the surfzone), where tidal currents flow parallel to the coast. Bed load transports were carefully measured with a calibrated sampler in spring tidal conditions without waves at a water depth of 13-18 m with fine and medium sands. The near-bed flow was measured over nearly a year and used for integration to annual transport rates. An empirical bed load model was derived, which predicts bed load transports that are a factor of >5 smaller than predicted by existing models. However, they agree with laboratory data of sand and gravel transport in currents near incipient motion. The damped transport rates may have been caused by cohesion of sediment or turbulence damping due to mud or biological activity. The annual bed load transport rate was calculated using a probability density function (pdf) derived from the near-bed current and orbital velocity data which represented the current and wave climate well when compared to 30 years of data from a nearby wave station. The effect of wave stirring was included in the transport calculations. The net bed load transport rate is a few m(2)/year. This is much less than predicted in an earlier model study, which is partly due to different bed load models but also due to the difference in velocity pdf The annual transport rate is very sensitive to the probability of the largest current velocities. (C) 2006 Elsevier B.V. All rights reserved.
引用
收藏
页码:983 / 996
页数:14
相关论文
共 38 条
[1]   Turbulence modulation in clay-rich sediment-laden flows and some implications for sediment deposition [J].
Baas, JH ;
Best, JL .
JOURNAL OF SEDIMENTARY RESEARCH, 2002, 72 (03) :336-340
[2]  
EMMETT W, 1980, GEOLOGICAL SURVEY PR, V1139
[3]  
Fernandez Luque R., 1976, Journal of Hydraulic Research, V14, P127, DOI [DOI 10.1080/00221687609499677, 10.1080/00221687609499677]
[4]   Wave plus current over a ripple-covered bed [J].
Fredsoe, J ;
Andersen, KH ;
Sumer, BM .
COASTAL ENGINEERING, 1999, 38 (04) :177-221
[5]   BED-LOAD SAMPLING IN SAND-BED RIVERS [J].
GAWEESH, MTK ;
VANRIJN, LC .
JOURNAL OF HYDRAULIC ENGINEERING-ASCE, 1994, 120 (12) :1364-1384
[6]  
GRASMEIJER BT, 2005, SAND TRANSPORT MORPH, pU1
[7]   Bedform migration and bedload transport on an intertidal shoal [J].
Hoekstra, P ;
Bell, P ;
van Santen, P ;
Roode, N ;
Levoy, F ;
Whitehouse, R .
CONTINENTAL SHELF RESEARCH, 2004, 24 (11) :1249-1269
[8]   Bed load transport under irregular waves plus current from Monte Carlo simulations of parameterized models with application to ripple migration rates observed in the field [J].
Holmedal, LE ;
Myrhaug, D .
COASTAL ENGINEERING, 2004, 51 (02) :155-172
[9]  
HOUWMAN KT, 2002, COAST ENG, V38, P261
[10]  
HUBBELL DW, 1987, SEDIMENT TRANSPORT G, P89