首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Seasonal circulation fields in the northern Gulf of Mexico calculated by assimilating current meter, shipboard ADCP, and drifter data simultaneously with the shallow water
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Seasonal circulation fields in the northern Gulf of Mexico calculated by assimilating current meter, shipboard ADCP, and drifter data simultaneously with the shallow water

机译:墨西哥湾北部的季节性环流场是通过同时吸收电流表,舰载ADCP和流浪者数据以及浅水来计算的

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Velocity measurements from current meter moorings, shipboard acoustic Doppler current profilers (ADCPs), and satellite-tracked drifters are used to estimate the seasonally averaged barotropic circulation throughout the continental shelf in the northern Gulf of Mexico in two regions: the Northeast Gulf of Mexico (NEGOM) shelf and the Louisiana-Texas (LATEX) shelf. A variational assimilation approach (weighted least squares) is used to combine the data simultaneously with a system of dynamical equations (time-in dependent shallow water equations), where the weights are based on the expected errors in the dynamical equations and measurements. Smoothing and boundary constraints are also included in this system to impose a spatial decorrelation scale and to restrict the component of flow that is perpendicular to the coastline, respectively. Seasonal solutions are therefore best fits to the weighted measurements, dynamics, and constraints, and thus do not fit any component exactly. Analysis of the solution deviations to the dynamical equations reveal where and during which seasons the dynamics and data are in disagreement. The largest deviations from the proposed dynamics occur at the head of the DeSoto Canyon on the NEGOM shelf and at the southwest corner of the LATEX shelf. Therefore, in these areas, there are processes occurring that are not described by the simplified barotropic dynamics. At the head of the DeSoto Canyon, the large source of error is believed to be due to deep-ocean water penetrating across the shelfbreak, whereas the process that occurs at the southwest corner of the LATEX shelf is proposed to be a result of a convergence zone caused by loop current eddies. Error analysis reveals that current meter data are more capable of constraining the solution than the other two data types due to its ability to more accurately observe barotropic currents. Separate experiments are conducted using the shipboard ADCP and drifter data sets individually to determine the relative observation capability. These experiments reveal that both data types provide reasonable estimations of seasonal flow fields. Results on the LATEX shelf suggest that shipboard ADCP data is more capable of observing the seasonal barotropic flow than drifter data. Whereas, on the NEGOM shelf results imply that drifter data are more capable. This result, however, may be skewed due to the shipboard ADCP and drifter data sets being collected during different years. Published by Elsevier Ltd.
机译:通过电流表的系泊,船载声多普勒电流剖面仪(ADCP)和卫星跟踪的漂移器进行的速度测量可用于估计整个墨西哥湾北部大陆架在两个区域的季节性平均正压环流:墨西哥东北海湾( NEGOM)架子和路易斯安那州-得克萨斯州(LATEX)架子。变分同化方法(加权最小二乘)用于将数据与动力学方程组(与时间有关的浅水方程)同时进行组合,其中权重基于动力学方程和测量值中的预期误差。该系统还包括平滑和边界约束,以施加空间去相关比例并分别限制与海岸线垂直的流量分量。因此,季节性解决方案最适合加权的度量,动态和约束,因此不能完全适合任何组件。对动力学方程的解偏差的分析揭示了动力学和数据在何处以及在哪个季节不一致。与拟议中的动力学的最大偏差发生在NEGOM架子上的DeSoto峡谷的顶部和LATEX架子的西南角。因此,在这些区域中,发生了简化的正压动力学未描述的过程。在DeSoto峡谷的顶部,误差的大来源被认为是由于深海水贯穿了棚架断裂,而在LATEX棚架西南角发生的过程被认为是收敛的结果。环路电流涡流引起的区域。误差分析显示,由于电流表数据能够更准确地观测正压电流,因此它比其他两种数据类型更能约束解决方案。使用舰载ADCP和漂移数据分别进行单独的实验,以确定相对观测能力。这些实验表明,两种数据类型都可以对季节性流场提供合理的估计。 LATEX架子上的结果表明,船上ADCP数据比漂移数据更能观测季节性正压流量。而在NEGOM架子上的结果表明,漂移数据的功能更加强大。但是,由于在不同年份收集了船上ADCP和漂移数据集,因此该结果可能会出现偏差。由Elsevier Ltd.发布

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