Abstract Near-inertial motions in the Brazil Current at 24°S-36°S: Observations by satellite tracked drifters
首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Near-inertial motions in the Brazil Current at 24°S-36°S: Observations by satellite tracked drifters
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Near-inertial motions in the Brazil Current at 24°S-36°S: Observations by satellite tracked drifters

机译:巴西电流在24°S-36°S的近惯性动作:卫星跟踪漂移器的观察

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Abstract Increased spatial and temporal resolution of recent observations and modeling have pointed out the importance of small scale structures (in the range of 1–50km) for the mixing processes in the ocean. Based on high-frequency drifter measurements, we show here that the near-inertial currents (NICs) can contribute significantly to the surface kinetic energy in the Brazil Current (BC) region and, therefore, should be properly taken into account in the studies of transport and mixing processes. To characterize these submesoscale features, we examine the current response to the wind forcing in the Brazilian ocean margin between 24°S and 36°S using 3-hourly sampled trajectories of satellite-tracked drifters. Our results indicate a preference for anti-cyclonic circular motions, with a rotating period close to the local inertial period, consistent with near-inertial motions in the Southern Hemisphere (SH). Wind stress time series, from three months of wind measurements, along with synoptic weather charts, are used to relate the observed NICs to the atmospheric forcing. During SH spring, NICs occur in 4.7?15 day bursts and account for 15–45% of the total surface current variance. This intermittency is related to atmospheric cold frontal passages, low pressure systems, and sea breeze/land breeze circulations. The predominance of NICs south of 28°S appears to be related to the increased Effective Inertial Frequency (EIF), which is the inertial frequency changed by the sub-inertial background flow. Highlights ? We use the trajectories from drifters to examine motions in the inertial frequency band. ? The wind stress rotary spectrum is anticyclonically polarized with a near-inertial peak. ? Results highlight the large increase in the eddy kinetic energy in the f band south of 28°S. ? The predominance of NICs south of 28°S appears to be related to the Effective Coriolis Frequency. ]]>
机译:<![cdata [ 抽象 最近的观察和模型的增加的空间和时间分辨率指出了小规模结构的重要性(在1-50 突出显示 我们使用漂移器的轨迹来检查惯性频带中的运动。 风力应力旋转谱是反周旋偏离惯性峰值。 结果突出了 f 距28°S南部的涡流动能的大幅增加。 NIC南部的28°S南部的优势似乎与有效的科里奥利频率有关。 ]]>

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