Effect of surface wave skewness on near-bed sediment transport velocity

被引:3
|
作者
Stachurska, Barbara [1 ]
Staroszczyk, Ryszard [1 ]
机构
[1] Polish Acad Sci, Inst Hydroengn, Ul Koscierska 7, PL-80328 Gdansk, Poland
关键词
Sediment transport; Stokes surface waves; Wave velocity skewness; Lagrangian description; Wave flume experiments; Particle image velocimetry; SETTLING VELOCITY; LOAD TRANSPORT; BOUNDARY-LAYER; SALTATION; FLOWS; DRAG; DYNAMICS; CURRENTS; SPHERE; MOTION;
D O I
10.1016/j.csr.2021.104549
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
The paper presents a two-dimensional model, based on the Lagrangian description of sand grain dynamics, for the estimation of mean velocities of sediment particles driven by the oscillatory motion of water generated by non-linear gravitational surface waves of the Stokes type. The model was verified against experimental results obtained in a wave flume, by comparing its predictions with the sediment velocities measured by applying a PIV (particle image velocimetry) technique. The model was used to calculate near-bed sediment transport velocities generated by surface waves of the parameters encountered in real sea conditions, with the purpose to investigate the effect of the wave velocity skewness on the near-bed sediment net transport rates. The results of numerical simulations, carried out for a range of wave parameters and sand grain sizes, showed that normalized sediment transport velocities vary approximately linearly with an index defining the wave skewness, and are practically independent of sediment grain diameters. Based on the laboratory measurements, also approximate formulae relating a bed ripple asymmetry index with the surface wave skewness index were derived.
引用
收藏
页数:17
相关论文
共 50 条
  • [21] Equilibrium near-bed concentration of suspended sediment - Closure
    Cao, Z
    JOURNAL OF HYDRAULIC ENGINEERING-ASCE, 2001, 127 (05): : 433 - 433
  • [22] Impact of macrozoobenthic structures on near-bed sediment fluxes
    Friedrichs, M.
    Leipe, T.
    Peine, F.
    Graf, G.
    JOURNAL OF MARINE SYSTEMS, 2009, 75 (3-4) : 336 - 347
  • [23] Near-Bed Sediment Concentration Distribution and Basic Probability of Sediment Movement
    Hu, Chunhong
    Guo, Qingchao
    JOURNAL OF HYDRAULIC ENGINEERING-ASCE, 2011, 137 (10): : 1269 - 1275
  • [24] Intense near-bed sediment motions in waves and currents
    Dong, P
    Zhang, KF
    COASTAL ENGINEERING, 2002, 45 (02) : 75 - 87
  • [25] Determination of Correlation Parameters of Near-bed Sediment Flux
    Luo, Feng
    Gez, Lili
    Kong, Deyu
    PROGRESS IN INDUSTRIAL AND CIVIL ENGINEERING II, PTS 1-4, 2013, 405-408 : 1398 - +
  • [26] Comparison of turbulence schemes for prediction of wave-induced near-bed sediment suspension above a plane bed
    Zhang Chi
    Zheng Jin-hai
    Wang Yi-gang
    Zhang Meng-tao
    Jeng Dong-sheng
    Zhang Ji-sheng
    CHINA OCEAN ENGINEERING, 2011, 25 (03) : 395 - 412
  • [27] Comparison of turbulence schemes for prediction of wave-induced near-bed sediment suspension above a plane bed
    Chi Zhang
    Jin-hai Zheng
    Yi-gang Wang
    Meng-tao Zhang
    Dong-sheng Jeng
    Ji-sheng Zhang
    China Ocean Engineering, 2011, 25 : 395 - 412
  • [28] Comparison of Turbulence Schemes for Prediction of Wave-Induced Near-Bed Sediment Suspension Above A Plane Bed
    张弛
    郑金海
    王义刚
    张勐韬
    郑东生
    张继生
    ChinaOceanEngineering, 2011, 25 (03) : 395 - 412
  • [29] Validation of Bagnold's Approximation of Critical Near-Bed Flow Velocity for Incipient Sediment Motion as Particle Settling Velocity
    Cheng, Nian-Sheng
    Xu, Puer
    Lu, Yesheng
    Wei, Maoxing
    JOURNAL OF HYDRAULIC ENGINEERING, 2022, 148 (10)
  • [30] Near-Bed Sediment Transport During Offshore Bar Migration in Large-Scale Experiments
    Grossmann, Florian
    Hurther, David
    van der Zanden, Joep
    Caceres, Ivan
    Sanchez-Arcilla, Agustin
    Alsina, Jose M.
    JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 2022, 127 (05)