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首页> 外文期刊>Journal of Fluid Mechanics >Surface gravity wave effects in the oceanic boundary layer: large-eddy simulation with vortex force and stochastic breakers
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Surface gravity wave effects in the oceanic boundary layer: large-eddy simulation with vortex force and stochastic breakers

机译:海洋边界层中的表面重力波效应:具有涡力和随机破碎器的大涡模拟

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The wind-driven stably stratified mid-latitude oceanic surface turbulent boundary layer is computationally simulated in the presence of a specified surface gravity-wave field. The gravity waves have broad wavenumber and frequency spectra typical of measured conditions in near-equilibrium with the mean wind speed. The simulation model is based on (i) an asymptotic theory for the conservative dynamical effects of waves on the wave-averaged boundary-layer currents and (ii) a boundary-layer forcing by a stochastic representation of the impulses and energy fluxes in a field of breaking waves. The wave influences are shown to be profound on both the mean current profile and turbulent statistics compared to a simulation without these wave influences and forced by an equivalent mean surface stress. As expected from previous studies with partial combinations of these wave influences, Langmuir circulations due to the wave-averaged vortex force make vertical eddy fluxes of momentum and material concentration much more efficient and non-local (i.e. with negative eddy viscosity near the surface), and they combine with the breakers to increase the turbulent energy and dissipation rate. They also combine in an unexpected positive feedback in which breaker-generated vorticity seeds the creation of a new Langmuir circulation and instigates a deep strong intermittent downwelling jet that penetrates through the boundary layer and increases the material entrainment rate at the base of the layer. These wave effects on the boundary layer are greater for smaller wave ages and higher mean wind speeds.
机译:在特定的表面重力波场的存在下,对风驱动的稳定分层的中纬度海洋表面湍流边界层进行了计算模拟。重力波具有较宽的波数和频谱,典型的测量结果是在平均风速下接近平衡时的情况。该仿真模型基于(i)波动对波平均边界层电流的保守动力影响的渐近理论,以及(ii)通过场内脉冲和能量通量的随机表示进行的边界层强迫的浪潮。与没有这些波影响并受等效平均表面应力强迫的模拟相比,波的影响在平均电流分布和湍流统计上都表现出了深远的影响。正如先前对这些波浪影响进行部分组合的研究所预期的那样,由于波浪平均涡流力导致的朗缪尔环流使动量和材料浓度的垂直涡流更加有效和非局部(即在表面附近具有负涡流粘度),它们与断路器结合使用,以增加湍流能量和耗散率。它们还结合了出乎意料的积极反馈,在这种积极反馈中,由破碎机产生的涡流为新的朗缪尔环流的产生提供了动力,并促使深层的强间歇性下降流射流穿透边界层,并增加了该层底部的物质夹带率。对于较小的波浪年龄和较高的平均风速,这些对边界层的波浪影响更大。

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