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Do ocean currents stick together? How ocean current coherence impact European climate

Do ocean currents stick together? How ocean current coherence impact European climate
洋流会粘在一起吗?
批准号:
2890097
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2023
资助国家:
英国
项目状态:
未结题
起止时间:
2023 至 --

项目摘要

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中文摘要
翻译
大西洋子午线翻转环流(AMOC)是一个大规模的海洋环流系统,由暖流组成,将温暖的浅水带到北方,将寒冷的深水带到南方。AMOC对于维持欧洲西北部相对温和的冬季气候至关重要。AMOC的关闭将强烈影响欧洲的温度和降水变率。经向一致性是指AMOC作为一股连贯的气流横跨大西洋盆地(例如,在一个纬度观察到的AMOC变化也将在其他纬度观察到)。人们普遍认为,AMOC在长(十年+)的时间尺度上是经向连贯的[1]。在较短的时间尺度上,人们还不能很好地理解经向一致性在哪里以及如何被破坏,相关的驱动机制如何变化,或者这些如何影响气候。该项目的主要目标是使用结合现场数据和卫星数据的新技术来调查这些问题。然后,您将使用这些观测结果来评估最先进的气候模型预测。这将有助于更好地了解AMOC对欧洲气候的影响。方法:RAPID是一个国际活动,自2004年以来一直使用沿北纬26度线系泊的仪器阵列监测AMOC。最近已经开发出使用卫星测高和重力测量来估计快速线上的AMOC强度的技术[2,3]。您将使用在北纬26度开发的技术从卫星[2,3]获得直接估计,为将AMOC扩展到快速线路的北部和南部提供基础。这将使您能够仅根据卫星数据重建第一个跨越34S到58N的全流域AMOC时间序列。您将学习如何使用栅格和沿轨道的海平面产品。网格产品(测高和重力测量)将用于提供不同纬度的卫星AMOC的初步估计。更高分辨率的沿轨卫星数据(例如Jason、Sentinel-3A/B、Sentinel-6、CryoSat2)将用于将SSH数据与快速系泊进行比较,特别是在海岸附近(<50公里),那里的SSH信号与网格化的卫星产品分辨率不是很好[2]。该方法将包括标准测高产品以及更高分辨率的合成孔径雷达测高,在学员学习的后半部分,有可能纳入创新的SWOT任务的数据。采用更高分辨率的沿航迹测高将大大改进现有的估计AMOC强度的方法,在这些方法中,海岸的可变性问题解决得很差[2]。然后将使用其他系泊阵列,如MOVE(16N)、OSNAP(58N)和Samba(34S),为AMOC的卫星估计提供验证。对于系泊阵列之间的纬度,将使用Argo浮标(自主海洋剖面仪)的密度剖面来填补数据/知识空白,并为卫星得出的AMOC估计提供进一步验证。您将使用由此得到的AMOC纬度估计来调查AMOC从年到十年时间尺度的经向一致性。首要目标将是评估AMOC经向一致性的性质和演变:它在哪里成立,在哪里分裂,它的驱动因素和这些结果对北大西洋气候系统的更广泛的影响。基于这一新的理解,您将评估气候模拟(例如CMIP6)充分表示观测到的AMOC特征及其与欧洲气候的联系的能力。
英文摘要
The Atlantic meridional overturning circulation (AMOC) is a large-scale ocean circulation system comprised of currents that carry warm, shallow water northwards and return cold deep-water southwards. The AMOC is crucial in maintaining the relatively mild winter climate of Northwest Europe. A shutdown of the AMOC would strongly impact European temperature and precipitation variability.Meridional coherence is the idea that the AMOC functions as a coherent flow across the Atlantic basin (e.g. changes observed in the AMOC at one latitude will also be observed at other latitudes). It is generally accepted that the AMOC is meridionally coherent on long (decadal+) timescales [1]. On shorter timescales, it is not well understood where and how the meridional coherence breaks down, how the associated driving mechanisms change, or how these influence climate. The primary objective of this project is to use new techniques combining in situ and satellite data to investigate these questions. You will then use these observations to assess state-of-the-art climate model projections. This will lead to a better understanding of the influence of the AMOC on European climate.Methodology: RAPID is an international campaign that has been monitoring the AMOC since 2004 using a moored instruments array along a line at 26N. Techniques have been recently developed using satellite altimetry and gravimetry to estimate the AMOC strength at the RAPID line [2,3]. You will use the techniques developed at 26N to obtain direct estimates from satellite [2,3], providing a basis for extending the AMOC to the north and south of the RAPID line. This will enable you to reconstruct the first whole basin AMOC time series spanning 34S to 58N from satellite data alone. You will learn how to use both gridded and along-track sea level products. Gridded products (altimetry and gravimetry) will be used to provide a first estimate of a satellite-based AMOC across different latitudes. Higher resolution along-track satellite data (e.g. Jason, Sentinel-3A/B, Sentinel-6, CryoSat2) will be used to compare SSH data with RAPID moorings particularly near the coast (<50km), where the SSH signal is not very well resolved with gridded satellite products [2]. The approach will incorporate both standard altimetry products as well as higher resolution SAR altimetry and there is the potential in the latter part of the studentship for inclusion of data from the innovative SWOT mission. The incorporation of higher resolution along-track altimetry will provide significant improvements on existing methods to estimate AMOC strength, where coastal variability has been poorly resolved [2]. Other mooring arrays such as MOVE (16N), OSNAP (58N) and SAMBA (34S) will then be used to provide validation for the satellite-derived estimates of the AMOC. For latitudes in between the mooring arrays, density profiles from Argo floats (autonomous ocean profilers) will be used to fill data/knowledge gaps and provide further validation for the satellite derived AMOC estimates. You will use the resulting latitudinal estimates of the AMOC to investigate meridional coherence of the AMOC variability from annual to decadal time-scales. The overarching objective will be to assess the nature and evolution of the AMOC meridional coherence: where it holds, where it falls apart, its drivers and wider implications these results have for the North Atlantic climate system. Based on this new understanding, you will evaluate the ability of climate simulations (e.g. CMIP6) to adequately represent the observed AMOC characteristics and their connection to European climate.
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国内基金
海外基金
Identification and quantification of primary phytoplankton functional types in the global oceans from hyperspectral ocean color remote sensing
  • 批准号:
    --
  • 项目类别:
    --
  • 资助金额:
    160万元
  • 批准年份:
    2022
  • 负责人:
    李忠平
  • 依托单位: