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Wind Stress Vector over Ocean Waves

机译:海浪上的风应力矢量

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Previous investigations of the wind stress in the marine surface layer have primarily focused on determining the stress magnitude (momentum flux) and other scalar variables (e.g., friction velocity, drag coefficient, roughness length). However, the stress vector is often aligned with a direction different from that of the mean wind flow. In this paper, the focus is on the study of the stress vector direction relative to the mean wind and surface-wave directions. Results based on measurements made during three field campaigns onboard the R/P Floating Instrument Platform (FLIP) in the Pacific are discussed. In general, the wind stress is a vector sum of the 1) pure shear stress (turbulent and viscous) aligned with the mean wind shear, 2) wind-wave-induced stress aligned with the direction of the pure wind-sea waves, and 3) swell-induced stress aligned with the swell direction. The direction of the wind-wave-induced stress and the swell-induced stress components may coincide with, or be opposite to, the direction of wave propagation (pure wind waves and swell, respectively). As a result, the stress vector may deviate widely from the mean wind flow, including cases in which stress is directed across or even opposite to the wind.
机译:先前对海洋表层中风应力的研究主要集中在确定应力大小(动量通量)和其他标量变量(例如,摩擦速度,阻力系数,粗糙度长度)上。但是,应力矢量通常与不同于平均风向的方向对齐。在本文中,重点是相对于平均风向和面波方向的应力矢量方向的研究。讨论了基于在太平洋R / P浮动仪器平台(FLIP)上进行的三个野战活动中进行的测量得出的结果。通常,风应力是以下各项的矢量和:1)与平均风切变一致的纯切应力(湍流和粘性),2)与纯风-海浪的方向对齐的风波感应应力,以及3)膨胀引起的应力与膨胀方向一致。风浪引起的应力的方向和膨胀引起的应力分量的方向可以与波传播的方向(分别为纯风波和膨胀)一致或相反。结果,应力矢量可能会偏离平均风量,包括应力跨过或什至与风相反的情况。

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