首页> 外文期刊>Journal of Physical Oceanography >LES Study of Vertical Eddy Diffusivity Estimation in Bottom Boundary Layers
【24h】

LES Study of Vertical Eddy Diffusivity Estimation in Bottom Boundary Layers

机译:底部边界层垂直涡扩散率估计的LES研究

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Osborn's method is commonly used to obtain diffusion coefficient K from the turbulent dissipation rate epsilon. This method is the relational expression K = Gamma epsilon/N-2. The dissipation flux coefficient Gamma is often set to a constant value of 0.2, but this study of LES revealed that Gamma varies greatly vertically in the bottom boundary layer because of the influence of the seabed. Consequently, the eddy diffusion coefficient is overestimated in the lower part of the bottom boundary, but it is slightly underestimated in the upper part. Therefore, Osborn's method with constant Gamma cannot give the correct diffusivity. Furthermore, even if treating Gamma as a function of flux Richardson number R-f, as defined originally by Osborn, the estimation is underestimated by the advection effect because of the influence of spatial nonuniformity. Energy budget analysis revealed that this defect can be improved using the extended flux Richardson number, which can be estimated by multiplying R-f using a constant correction factor. Furthermore, we proposed two alternative estimation methods. For the first method, which estimates the relation between R-f and the gradient Richardson number R-g, Gamma can be expressed with R-g instead of R-f with a correction factor. We can estimate the reasonable diffusivity if we have current data supplementary to obtain R-g. For the second method, Gamma can be expressed as a similarity function of the height above the bottom normalized by the Ozmidov scale. This method can provide an acceptable estimate of diffusivity without current data for several circumstances.
机译:Osborn方法通常用于从湍流耗散率ε中获得扩散系数K。该方法是关系表达式K = Gamma epsilon / N-2。耗散通量系数Gamma通常设置为常数0.2,但是LES的这项研究表明,由于海床的影响,Gamma在底部边界层的垂直方向变化很大。因此,涡流扩散系数在底部边界的下部被高估了,但在上部却被低估了。因此,常数Gamma的Osborn方法无法给出正确的扩散率。此外,即使将Gamma视为通量Richardson数R-f的函数(如Osborn最初定义的那样),由于空间不均匀性的影响,对流效应也会低估估算值。能量预算分析表明,可以使用扩展的通量Richardson数来改善此缺陷,可以通过使用恒定校正因子乘以R-f来估计该缺陷。此外,我们提出了两种替代估计方法。对于估计R-f和梯度理查森数R-g之间的关系的第一种方法,可以用R-g代替带有校正因子的R-f来表示Gamma。如果我们有补充当前数据以获得R-g,我们可以估计合理的扩散率。对于第二种方法,可以将Gamma表示为由Ozmidov比例尺归一化的底部上方高度的相似度函数。在几种情况下,该方法可以在没有当前数据的情况下提供可接受的扩散率估计。

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