首页> 外文期刊>Journal of Marine Science and Engineering >Formulating Fine to Medium Sand Erosion for Suspended Sediment Transport Models
【24h】

Formulating Fine to Medium Sand Erosion for Suspended Sediment Transport Models

机译:为悬浮泥沙输送模型制定中细沙侵蚀

获取原文
       

摘要

The capacity of an advection/diffusion model to predict sand transport under varying wave and current conditions is evaluated. The horizontal sand transport rate is computed by vertical integration of the suspended sediment flux. A correction procedure for the near-bed concentration is proposed so that model results are independent of the vertical resolution. The method can thus be implemented in regional models with operational applications. Simulating equilibrium sand transport rates, when erosion and deposition are balanced, requires a new empirical erosion law that involves the non-dimensional excess shear stress and a parameter that depends on the size of the sand grain. Comparison with several datasets and sediment transport formulae demonstrated the model’s capacity to simulate sand transport rates for a large range of current and wave conditions and sand diameters in the range 100–500 μm. Measured transport rates were predicted within a factor two in 67% of cases with current only and in 35% of cases with both waves and current. In comparison with the results obtained by Camenen and Larroudé (2003), who provided the same indicators for several practical transport rate formulations (whose means are respectively 72% and 37%), the proposed approach gives reasonable results. Before fitting a new erosion law to our model, classical erosion rate formulations were tested but led to poor comparisons with expected sediment transport rates. We suggest that classical erosion laws should be used with care in advection/diffusion models similar to ours, and that at least a full validation procedure for transport rates involving a range of sand diameters and hydrodynamic conditions should be carried out.
机译:对流/扩散模型预测在变化的波浪和电流条件下的沙运量的能力进行了评估。水平沙的输送速度是通过悬浮泥沙通量的垂直积分计算得出的。提出了近床层浓度的校正程序,以使模型结果与垂直分辨率无关。因此,该方法可以在具有运营应用的区域模型中实施。当平衡侵蚀和沉积时,模拟平衡砂的输送速度需要新的经验侵蚀定律,该定律涉及无量纲的过大剪切应力和取决于砂粒大小的参数。与多个数据集和泥沙输送公式的比较表明,该模型具有在大范围的电流和波浪条件以及100-500μm范围内的沙粒直径下模拟沙粒输送速率的能力。仅在有电流的情况下,在67%的情况下,在有电波和电流的情况下,在35%的情况下,预测的测得的传输速率将在2倍以内。与Camenen和Larroudé(2003)的结果相比,他们为几种实际的运输速率公式提供了相同的指标(其平均值分别为72%和37%),所提出的方法给出了合理的结果。在将新的侵蚀定律适用于我们的模型之前,先对经典的侵蚀率公式进行了测试,但结果却与预期的泥沙传输速率进行了比较。我们建议在与我们相似的对流/扩散模型中应谨慎使用经典侵蚀定律,并且至少应对涉及一定范围的砂径和流体动力条件的输运速度进行完整的验证程序。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号