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Sampling Methods for Metocean Data Aiming at Hydrodynamic Modeling of Estuarine and Coastal Areas

机译:旨在河口河口和沿海地区流体动力学建模的迁移方法

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摘要

Field observations require adequate metocean data gathering to promote the link between environmental diagnostic and prognostic obtained from modeling techniques. In general, model confidence can be improved by using data which present better quality and by improved parametrizations. This paper discusses and suggests timing routines for data gathering which are enough to describe the hydrodynamic behavior of estuarine and coastal areas. From the environmental diagnostics viewpoint, a sampling procedure is defined to the temporal scales providing data with adequate resolution to describe the natural process without signal aliasing. The proposed sampling procedure was based on the analysis of a data set of tides, currents, waves, water temperature, and meteorological variables observed at several stations along the Brazilian coast. The instrument setup was based mainly on the results of the harmonic analysis of tides. It is shown that the setup of instruments for simultaneous measurements of currents and waves requires special attention particularly in sites that present low currents and the action of waves. A subset of data gathered in shallow bays was used to estimate the surface turbulent stress by using a classical and a slightly modified parametrization for the wind drag coefficient. Under near neutral atmospheric stability conditions and high tide excursion, the surface turbulent stress obtained with the classical and the modified parametrization differed but the current profiles are expected to be only partially affected by wind-induced drift currents.
机译:现场观察需要足够的欧元数据收集,以促进从建模技术获得的环境诊断和预后之间的联系。通常,通过使用提供更好质量和改进的参数化的数据可以改善模型置信度。本文讨论并提出了数据收集的时序例程,这足以描述河口和沿海地区的流体动力学行为。从环境诊断视点来看,采样过程被定义为提供具有足够分辨率的数据的时间尺度来描述没有信号混叠的自然过程。所提出的抽样程序是基于在巴西海岸的几个站观察到的潮汐,电流,波,水温和气象变量的数据集的分析。仪器设置主要基于潮汐谐波分析的结果。结果表明,用于同时测量电流和波浪的仪器的设置需要特别注意,特别是在呈现低电流和波浪动作的地点。通过使用经典和略微改造的脉冲系数的略微改进的参数化来利用在浅舱口中收集的数据的子集来估计表面湍流应力。在接近中性的大气稳定性条件和高潮偏移下,通过经典和改进的参数化获得的表面湍流应力不同,但预期电流型材仅受风诱导的漂移电流的部分影响。

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