TRANSIENT EDDY FORMATION AROUND HEADLANDS

被引:273
作者
SIGNELL, RP [1 ]
GEYER, WR [1 ]
机构
[1] WOODS HOLE OCEANOG INST, WOODS HOLE, MA 02543 USA
关键词
D O I
10.1029/90JC02029
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
Eddies with length scales of 1-10 km are commonly observed in coastal waters and play an important role in the dispersion of water-borne materials. The generation and evolution of these eddies by oscillatory tidal flow around coastal headlands is investigated with analytical and numerical models. Using shallow water depth-averaged vorticity dynamics, eddies are shown to form when flow separation occurs near the tip of the headland, causing intense vorticity generated along the headland to be injected into the interior. An analytic boundary switches from favoring (accelerating) to adverse (decelerating), and its occurrence depends principally on three parameters; the aspect ratio [b/a], where b and a are characteristic width and length scales of the headland; [H/C(D)a], where H is the water depth, C(D) is the depth-averaged drag coefficient; and [U(o)/sigma-a], where U(o) and sigma are the magnitude and frequency of the far-field tidal flow. Simulations with a depth-averaged numerical model show a wide range of responses to changes in these parameters, including cases where no separation occurs, cases where only one eddy exists at a given time, and cases where bottom friction is weak enough that eddies produced during successive tidal cycles coexist, interacting strongly with each other. These simulations also demonstrate that in unsteady flow, a strong start-up vortex forms after the flow separates, leading to a much more intense patch of vorticity and stronger recirculation than found in steady flow.
引用
收藏
页码:2561 / 2575
页数:15
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