首页> 外文期刊>Advances in Water Resources >Approximate methodology to account for effects of coherent structures on sediment entrainment in RANS simulations with a movable bed and applications to pier scour
【24h】

Approximate methodology to account for effects of coherent structures on sediment entrainment in RANS simulations with a movable bed and applications to pier scour

机译:在可移动床的RANS模拟中考虑相干结构对夹带泥沙影响的近似方法,以及在码头冲刷中的应用

获取原文
获取原文并翻译 | 示例

摘要

Movable-bed Reynolds-Averaged Navier–Stokes (RANS) simulations of local scour around bridge piers and abutments without ad hoc corrections tend to underestimate scour. This is generally attributed to the inability of RANS to accurately capture the unsteady dynamics of the large-scale coherent structures forming in the bed vicinity. Moreover, the characteristics of these coherent structures and their erosive capacity are expected to change as the bed evolves toward equilibrium. In the present study, Detached Eddy Simulations (DES) of flow past circular and rectangular piers are performed with bathymetry corresponding to different stages of the scour process between initial (flat-bed) conditions and equilibrium scour conditions to better understand how the coherent structures drive scour around the pier at different stages of the scouring process and to assess the capabilities of RANS to predict the flow and the turbulence statistics. Using these results, a new methodology is proposed to account for the effects of large-scale coherent structures on sediment entrainment that is directly applicable to RANS simulations with movable bed. The main idea is to improve the predictions of the local flux of sediment entrained from the bed by considering the effect of bed friction velocity fluctuations induced by the coherent structures situated near the bed, a critical effect that is generally neglected in RANS simulations. The new methodology is based on augmenting the bed friction velocity available from the time-accurate RANS calculation by a term that is proportional to the standard deviation of the bed friction velocity. This term is estimated from the turbulent kinetic energy field predicted by RANS. The model has one free parameter. Its value is calculated such that for fixed bed simulations the total entrainment flux predicted by the time-accurate RANS matches the value predicted by DES. Based on simulations conducted for flow past circular and rectangular piers, the value of the free parameter was estimated to be between 1.5 and 4, with lower values recommended to be used for cases when the time-accurate RANS simulation captures the large-scale vortex shedding behind the pier. Movable bed simulations performed using the augmented bed friction velocity model are shown to predict much more accurately the maximum scour depth around circular and rectangular piers compared to the corresponding simulations where the entrainment flux was calculated only based on the local value of the bed friction velocity calculated from the RANS velocity field.
机译:在没有临时修正的情况下,桥墩和基台周围的局部冲刷活动床雷诺平均纳维–斯托克斯(RANS)模拟往往会低估冲刷量。这通常归因于RANS无法准确捕获床附近形成的大规模相干结构的不稳定动态。此外,随着床层趋于平衡,这些相干结构的特征及其侵蚀能力有望发生变化。在本研究中,通过测深法对经过圆形和矩形墩的流动的分离涡模拟(DES)进行了计算,这与初始(平床)条件和平衡冲条件之间的冲刷过程的不同阶段相对应,以更好地了解相干结构如何驱动在冲刷过程的不同阶段冲刷码头,并评估RANS预测流量和湍流统计数据的能力。利用这些结果,提出了一种新的方法来解决大规模相干结构对泥沙夹带的影响,该方法直接适用于活动床的RANS模拟。主要思想是通过考虑由位于床附近的相干结构引起的床摩擦速度波动的影响,来改善从床夹带的局部泥沙通量的预测,这是RANS模拟中通常忽略的关键影响。新的方法基于将时间精确的RANS计算中可用的床摩擦速度增加一个与床摩擦速度的标准偏差成比例的项。该术语是根据RANS预测的湍动能场估算的。该模型有一个自由参数。计算其值,以便对于固定床模拟,由时间精确的RANS预测的总夹带通量与DES预测的值匹配。基于对绕过圆形和矩形墩台的流动进行的模拟,自由参数的值估计在1.5到4之间,建议在时间精确的RANS模拟捕获大规模涡旋脱落的情况下使用较低的值在码头后面。与仅基于所计算的床层摩擦速度的局部值来计算夹带流量的相应模拟相比,使用增强床层摩擦速度模型进行的可移动床层模拟可以更准确地预测圆形和矩形墩周围的最大冲刷深度。来自RANS速度场。

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