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Advances in estimating Sea Level Rise: A review of tide gauge, satellite altimetry and spatial data science approaches

机译:估计海平面上涨的进展 - 潮牌仪,卫星高度和空间数据科学方法综述

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摘要

Significant developments have been made in the observation systems and techniques of estimating sea level towards meeting the standard accuracy requirement of Global Climate Observation Systems (GCOS). This study undertakes a systematic review of the current advances in estimating sea level change in the context of the 4th industrial revolution. Trends in the use of main observation systems such as tide gauges, satellite altimetry, and ancillary systems such as GNSS and Autonomous Surface Vehicles were explored. Crucially, we examined the contribution of dedicated waveform retracking strategies, advanced corrections and radar technology such as Kaband altimetry of SARAL/Altika and SAR mode innovations to the progress in coastal altimetry. Further, we show the role of emerging spatial data science concepts and processing workflows in sea level study. Findings suggest that in-situ sea level observation through tide gauges remains the best approach for long-term coastal sea level study despite its limitations while satellite altimetry is suitable for contemporary global and regional scales. Detailed understating of global, regional and local mean sea level change will require an augmentation of tide gauge, satellite altimetry and other ancillary remote sensing and in situ systems. Densification of tide gauges and co-located GNSS networks at sparsely covered regions and improvement in precision of satellite altimetry data for coastal use are also essential for a fully integrated sea level observation system. From the analysis of over 30 trend models that span exploratory, parametric, non-parametric, stochastic and advanced classes in the literature, we conclude that the best model is the one with good statistical foundation and similar assumption with the sea level pattern.
机译:在估计海平面达到全球气候观测系统(GCOS)的标准准确性要求的观察系统和技术中取得了重大发展。本研究对第四届工业革命背景下的海平面变动进行了系统审查。探讨了主要观测系统,如潮汐仪,卫星高度测量和辅助系统等主要观测系统的趋势进行了探讨。至关重要,我们审查了专门的波形回归策略,先进的更正和雷达技术,例如苏尔/ Altika和SAR模式创新的Kaband Altimetry,以实现沿海Altimetry的进步。此外,我们展示了新出现的空间数据科学概念和处理工作流程在海平面研究中的作用。调查结果表明,通过潮流仪表的原位海平面似乎是长期沿海海平面研究的最佳方法,尽管它的局限性是适合当代全球和区域尺度的局限性。全球,区域和地方平均海平面变化的详细低估将需要增强潮汐计,卫星高度和其他辅助遥感和原位系统。潮汐仪表的致密化和共同位于疏散地区的GNSS网络以及沿海使用的卫星高度数据的精度改进也是一个完全集成的海平观察系统必不可少的。从分析到30多种趋势模型,跨越文献中的探讨,参数,非参数,随机和高级课程,得出结论,最好的模型是具有良好统计基础和海平面模式的类似假设的模型。

著录项

  • 来源
    《Ocean & coastal management》 |2021年第7期|105632.1-105632.15|共15页
  • 作者单位

    Univ Teknol PETRONAS Dept Civil & Environm Engn Geospatial Anal & Modelling Res Lab Seri Iskandar 32610 Perak Malaysia;

    Univ Teknol PETRONAS Dept Civil & Environm Engn Geospatial Anal & Modelling Res Lab Seri Iskandar 32610 Perak Malaysia;

    Univ Teknol PETRONAS Ctr Urban Resource Sustainabil Inst Self Sustainable Bldg Seri Iskandar 32610 Perak Malaysia;

    Univ Teknol PETRONAS Dept Civil & Environm Engn Geospatial Anal & Modelling Res Lab Seri Iskandar 32610 Perak Malaysia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Coastal altimetry; GNSS; Sea level; Satellite altimetry; Tide gauges;

    机译:沿海高级;GNSS;海平面;卫星过度测量;潮汐仪表;

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