面向过程的架空天文台:OOI先锋阵列的科学原理和概念设计

IF 1.7 3区 地球科学 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES
G. Gawarkiewicz, A. Plueddemann
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引用次数: 11

摘要

美国国家科学基金会的海洋观测站倡议(OOI)包括一个名为OOI先锋阵列的沿海观测站,其重点是了解大陆架/斜坡交换过程。OOI先锋阵列已经设计和建造,目前正在运行。为了充分理解设计原则和约束,我们首先描述了基本的交换过程,并回顾了该地区之前的实验。重点放在了重要交换过程的空间和时间尺度上,如锋面蜿蜒和暖核环与大陆架断裂锋的相互作用,这是该地区变率的主要来源。然后描述了先锋阵列的三个主要组成部分,包括水下滑翔机和自主水下航行器(AUV)部署的初步数据。讨论了先锋阵列与该地区近期重要科学问题的相关性,包括大陆架变暖的增强以及墨西哥湾流与大陆架相互作用的频率和空间范围的增加。最后,简要介绍了亚洲类似的观测站,并就指导其他地理区域架空观测站设计的原则提出了一般性结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scientific rationale and conceptual design of a process-oriented shelfbreak observatory: the OOI Pioneer Array
ABSTRACT The Ocean Observatories Initiative (OOI) of the National Science Foundation in the USA includes a coastal observatory called the OOI Pioneer Array, which is focused on understanding shelf/slope exchange processes. The OOI Pioneer Array has been designed and constructed and is currently in operation. In order to fully understand the design principles and constraints, we first describe the basic exchange processes and review prior experiments in the region. Emphasis is placed on the space and time scales of important exchange processes such as frontal meandering and warm core ring interactions with the Shelfbreak Front, the dominant sources of variability in the region. The three major components of the Pioneer Array are then described, including preliminary data from the underwater gliders and Autonomous Underwater Vehicle (AUV) deployments. The relevance of the Pioneer Array to important recent scientific issues in the area, including enhanced warming of the continental shelf and increasing frequency and spatial extent of Gulf Stream interactions with the continental shelf is discussed. Finally, similar observatories in Asia are briefly described, and general conclusions regarding principles that should guide the design of shelfbreak observatories in other geographic regions are presented.
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来源期刊
CiteScore
7.50
自引率
9.70%
发文量
8
审稿时长
>12 weeks
期刊介绍: The Journal of Operational Oceanography will publish papers which examine the role of oceanography in contributing to the fields of: Numerical Weather Prediction; Development of Climatologies; Implications of Ocean Change; Ocean and Climate Forecasting; Ocean Observing Technologies; Eutrophication; Climate Assessment; Shoreline Change; Marine and Sea State Prediction; Model Development and Validation; Coastal Flooding; Reducing Public Health Risks; Short-Range Ocean Forecasting; Forces on Structures; Ocean Policy; Protecting and Restoring Ecosystem health; Controlling and Mitigating Natural Hazards; Safe and Efficient Marine Operations
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