利用XTRACK海岸高度计和潮汐计数据监测新西兰海岸最近的海平面变化

IF 2.1 3区 地球科学 Q2 OCEANOGRAPHY
Muharrem Hilmi Erkoç, Uğur Doğan
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引用次数: 0

摘要

近几十年来,由于气候变化的影响,新西兰沿海海平面的上升速度加快。确定这些变化对沿海地区的影响对其可持续性至关重要。为了深入了解这些影响,本研究旨在利用1993年至2022年期间新西兰沿海11个潮汐测量站的卫星测高和潮汐仪数据,以及用沿海测高方法处理的XTRACK数据来分析海平面变化,以尽量减少海岸附近经典测高的影响。采用最小二乘参数估计方法对数据进行分析,确定年度和半年度季节效应。结果表明,利用沿海测高资料观测到1993 - 2022年期间新西兰沿海海平面显著上升3.8+0.5 mm/年。这项研究的结果表明,密切监测海平面上升对新西兰沿海地区的影响,以确保其长期可持续性的重要性。结果还强调了使用多个数据源和方法来提供对这些变化的全面理解的实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Monitoring of recently sea level changes on the coast of New Zealand using XTRACK coastal altimetry and tide gauge data

The rise in sea level along the coasts of New Zealand has accelerated in recent decades due to the impact of climate change. Determining the effects of these changes on the coastal regions is critical for their sustainability. In order to gain insight into these impacts, the present study aimed to analyze sea level changes using satellite altimetry and tide gauge data from 11 tide gauge stations along the New Zealand coast between 1993 and 2022, as well as XTRACK data processed with the coastal altimetry approach to minimize the effects of classical altimetry near coasts. The least-squares parameter estimation method was used to analyze the data and determine annual and semi-annual seasonal effects. The results showed that a significant increase have been observed in sea level of 3.8+0.5 mm/yr along the coast of New Zealand from 1993 to 2022 using coastal altimetry data. The results of this study demonstrate the importance of closely monitoring the impacts of sea level rise on the coastal regions of New Zealand to ensure their long-term sustainability. The results also highlight the utility of using multiple data sources and methods to provide a comprehensive understanding of these changes.

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来源期刊
Continental Shelf Research
Continental Shelf Research 地学-海洋学
CiteScore
4.30
自引率
4.30%
发文量
136
审稿时长
6.1 months
期刊介绍: Continental Shelf Research publishes articles dealing with the biological, chemical, geological and physical oceanography of the shallow marine environment, from coastal and estuarine waters out to the shelf break. The continental shelf is a critical environment within the land-ocean continuum, and many processes, functions and problems in the continental shelf are driven by terrestrial inputs transported through the rivers and estuaries to the coastal and continental shelf areas. Manuscripts that deal with these topics must make a clear link to the continental shelf. Examples of research areas include: Physical sedimentology and geomorphology Geochemistry of the coastal ocean (inorganic and organic) Marine environment and anthropogenic effects Interaction of physical dynamics with natural and manmade shoreline features Benthic, phytoplankton and zooplankton ecology Coastal water and sediment quality, and ecosystem health Benthic-pelagic coupling (physical and biogeochemical) Interactions between physical dynamics (waves, currents, mixing, etc.) and biogeochemical cycles Estuarine, coastal and shelf sea modelling and process studies.
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