Mapping Circulation in the Kuroshio Extension with an Array of Current and Pressure Recording Inverted Echo Sounders

Mapping Circulation in the Kuroshio Extension with an Array of Current and Pressure Recording Inverted Echo Sounders
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DOI:
10.1175/2009jtecho686.1
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发表时间:
2010-03
影响因子:
2.2
通讯作者:
K. Donohue;D. R. Watts;K. Tracey;Andrew D. Greene;M. Kennelly
K. Donohue;D. R. Watts;K. Tracey;Andrew D. Greene;M. Kennelly
中科院分区:
地球科学4区
文献类型:
--
作者:
K. Donohue;D. R. Watts;K. Tracey;Andrew D. Greene;M. Kennelly

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摘要 黑潮延伸系统研究(KESS)旨在量化控制黑潮延伸和再循环环流的变化及其相互作用的过程。为了实现这一目标,部署了一套仪器,包括 43 个配备底部压力计和电流计的倒置回声测深仪 [电流和压力记录倒置回声测深仪 (CPIES)]。该阵列以日本东部第一个准静止曲流波峰和波谷为中心,这也是涡流动能最高的区域。 KESS 是第一个部署大量此类新型 CPIES 仪器的实验,其独特之处在于这些仪器部署在接近其操作极限的水深(5300-6400 m)中。提供了从 KESS CPIES 阵列产生温度、比容异常和速度的介尺度分辨四维环流场的方法的全面叙述。此外,一种改进的去除 p 的技术...
Abstract The Kuroshio Extension System Study (KESS) aimed to quantify processes governing the variability of and the interaction between the Kuroshio Extension and the recirculation gyre. To meet this goal, a suite of instrumentation, including 43 inverted echo sounders equipped with bottom pressure gauges and current meters [current and pressure recording inverted echo sounders (CPIES)], was deployed. The array was centered on the first quasi-stationary meander crest and trough east of Japan, which is also the region of highest eddy kinetic energy. KESS was the first experiment to deploy a large quantity of these new CPIES instruments, and it was unique in that the instruments were deployed in water depths (5300–6400 m) close to their limit of operation. A comprehensive narrative of the methodology to produce mesoscale-resolving four-dimensional circulation fields of temperature, specific volume anomaly, and velocity from the KESS CPIES array is provided. In addition, an improved technique for removing p...