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Parameterizing nonpropagating form drag over rough bathymetry

机译:参数化非译格形式拖动粗浴

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Slowly evolving stratified flow over rough topography is subject to substantial drag due to internal motions, but often numerical simulations are carried out at resolutions where this "wave" drag must be parameterized. Here we highlight the importance of internal drag from topography with scales that cannot radiate internal waves, but may be highly nonlinear, and we propose a simple parameterization of this drag that has a minimum of fit parameters compared to existing schemes. The parameterization smoothly transitions from a quadratic drag law (~hu~20)~(forlowNh/u)0 (linear wave dynamics) to a linear drag law (~h~2 u_0 N) for high Nh/u_0 flows (nonlinear blocking and hydraulic dynamics), where N is the stratification, h is the height of the topography, and u_0 is the near-bottom velocity; the parameterization does not have a dependence on Coriolis frequency. Simulations carried out in a channel with synthetic bathymetry and steady body forcing indicate that this parameterization accurately predicts drag across a broad range of forcing parameters when the effect of reduced near-bottom mixing is taken into account by reducing the effective height of the topography. The parameterization is also tested in simulations of wind-driven channel flows that generate mesoscale eddy fields, a setup where the downstream transport is sensitive to the bottom drag parameterization and its effect on the eddies. In these simulations, the parameterization rep-licates the effect of rough bathymetry on the eddies. If extrapolated globally, the subinertial topographic scales can account for 2.7 TW of work done on the low-frequency circulation, an important sink that is redistributed to mixing in the open ocean.
机译:由于内部运动,粗糙地形上慢慢地发展的分层流量受到大量的阻力,但通常在该分辨率下进行数值模拟,其中必须参数化“波”拖动。在这里,我们突出了内部拖动从无法辐射内部波的刻度的重要性,但可能是高度非线性的,并且我们提出了与现有方案相比具有最小拟合参数的此拖动的简单参数化。参数化从二次拖拉法(〜hu〜20)〜(oflownh / u)0(线性波动​​态)平滑过渡到高NH / U_0流的线性阻力法(〜H〜2 U_0 n)(非线性阻塞和液压动力学),其中n是分层,H是地形的高度,U_0是近底速度;参数化没有对科里奥利频率的依赖性。在具有合成碱基β和稳态强制的通道中进行的模拟表明,当通过降低地形的有效高度考虑降低近底部混合的效果,该参数化精确地预测跨越广泛的强制参数。参数化也在模拟中测试了生成Mescle EDDY字段的风力驱动信道流,该设置下游传输对底部拖动参数化敏感的设置及其对eDDIES的影响。在这些模拟中,参数化评估了粗糙的沐浴术对漩涡的影响。如果在全球外推,子内地形尺度可以考虑在低频循环上完成的2.7次,这是一个重要的水槽,它被重新分配到在开阔的海洋中混合。

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