首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >High-frequency observations of wind-forced onshore transport at a coastal site in Baja California
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High-frequency observations of wind-forced onshore transport at a coastal site in Baja California

机译:在下加利福尼亚州沿海地点进行的风力陆上运输的高频观测

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We investigated the effect of the daily sea breeze on the surface flow at Bahia Salsipuedes, Baja California, Mexico. Drifter-tracking experiments were conducted over a 2-week period in July, 1999. Surface drifters were deployed daily and their trajectories tracked from a small boat for 3-7 h. Wind speed and direction, as well as the vertical distribution of temperature and current velocities were measured throughout the observation period. Our results indicate that strong winds associated with the daily sea breeze at the study area can produce onshore surface currents with velocities of up to 10 cm s(-1) (net transport of up to 2 km in a diurnal cycle). There was a hyperbolic relationship between onshore wind stress and net onshore transport of the drifters. A decrease in stratification and more consistent pattern of onshore transport were associated with sustained winds > 6 in s(-1) towards the end of the study. Progressive vector diagrams computed from near-surface currents failed to predict the trajectory of drifters, especially on days where wind forcing was more consistent in terms of direction and magnitude. We discuss the implications of these results regarding the collection of settlement data and their interpretation in terms of larval supply to coastal populations. (C) 2004 Elsevier Ltd. All rights reserved.
机译:我们在墨西哥下加利福尼亚州的巴伊亚州Salsipuedes调查了每天海风对地表水流的影响。在1999年7月进行了为期2周的漂流者追踪实验。每天部署水面漂流者,并从一条小船上追踪其轨迹3-7小时。在整个观测期间,都测量了风速和风向以及温度和流速的垂直分布。我们的结果表明,与研究区域的日常海风相关的强风可以产生速度高达10 cm s(-1)的陆上地表水流(昼夜循环中的净输水速度高达2 km)。陆上风应力与漂流者的净陆上运输之间存在双曲线关系。到研究结束时,分层的减少和陆上运输模式的更一致与持续风> s(-1)> 6的情况相关。根据近地表电流计算出的渐进矢量图无法预测漂流者的轨迹,尤其是在风向在方向和强度方面更为一致的日子。我们讨论这些结果对定居数据的收集及其对沿海人口幼体供应的解释的含义。 (C)2004 Elsevier Ltd.保留所有权利。

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