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Observations of Nonlinear Internal Wave Run-Up to the Surfzone

机译:非线性内波上升到海浪带的观测

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摘要

The cross-shore evolution of nonlinear internal waves (NLIWs) from 8-m depth to shore was observed by a dense thermistor array and ADCP. Isotherm oscillations spanned much of the water column at a variety of periods. At times, NLIWs propagated into the surfzone, decreasing temperature by approximate to 1 degrees C in 5 min. When stratification was strong, temperature variability was strong and coherent from 18- to 6-m depth at semi-diurnal and harmonic periods. When stratification weakened, temperature variability decreased and was incoherent between 18- and 6-m depth at all frequencies. At 8-m depth, onshore coherently propagating NLIW events had associated rapid temperature drops (Delta T) up to 1.7 degrees C, front velocity between 1.4 and 7.4 cm s(-1), and incidence angles between -5 degrees and 23 degrees. Front position, Delta T, and two-layer equivalent height z(IW) of four events were tracked upslope until propagation terminated. Front position was quadratic in time, and normalized Delta T and z(IW) both decreased, collapsing as a linearly decaying function of normalized cross-shore distance. Front speed and deceleration are consistent with two-layer upslope gravity current scalings. During NLIW rundown, near-surface cooling and near-bottom warming at 8-m depth coincide with a critical gradient Richardson number, indicating shear-driven mixing.
机译:通过密集的热敏电阻阵列和ADCP,观察了非线性内波(NLIW)从8 m到岸的跨岸演化。在不同时期,等温线振荡跨越了大部分水柱。有时,NLIWs传播到海浪区,在5分钟内将温度降低了大约1摄氏度。当分层很强时,在半日和谐波周期中,温度变化性很强,并且在18到6 m深度处是一致的。当分层减弱时,温度变异性降低,并且在所有频率下18至6 m深度之间均不一致。在8米深度处,陆上相干传播的NLIW事件伴有高达1.7摄氏度的快速温度下降(Delta T),1.4到7.4 cm s(-1)之间的前速度以及-5到23度之间的入射角。跟踪四个事件的前部位置,Delta T和两层等效高度z(IW),直到传播终止。前面的位置在时间上是二次方的,并且归一化的Delta T和z(IW)均减小,作为归一化的跨岸距离的线性衰减函数而崩溃。前端速度和减速度与两层上坡重力电流比例一致。在NLIW径流期间,近地表冷却和8 m深度处的近底加热与临界梯度Richardson数一致,表明剪切驱动混合。

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  • 来源
    《Journal of Physical Oceanography 》 |2018年第3期| 531-554| 共24页
  • 作者单位

    Univ Calif San Diego, Scripps Inst Oceanog, La Jolla, CA 92093 USA;

    Univ Calif San Diego, Scripps Inst Oceanog, La Jolla, CA 92093 USA;

    Univ Calif San Diego, Scripps Inst Oceanog, La Jolla, CA 92093 USA;

    Univ Calif San Diego, Mech & Aerosp Engn, La Jolla, CA 92093 USA;

    Univ Calif San Diego, Scripps Inst Oceanog, La Jolla, CA 92093 USA;

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