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Reconstruction of sea level around the Korean Peninsula using cyclostationary empirical orthogonal functions

机译:利用循环平稳经验正交函数重建朝鲜半岛周围的海平面

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Since the advent of the modern satellite altimeter era, the understanding of the sea level has increased dramatically. The satellite altimeter record, however, dates back only to the 1990s. The tide gauge record, on the other hand, extends through the 20th century but with poor spatial coverage when compared to the satellites. Many studies have been conducted to create a dataset with the spatial coverage of the satellite datasets and the temporal length of the tide gauge records by finding novel ways to combine the satellite data and tide gauge data in what is known as sea level reconstruction. However, most of the reconstructions of sea level were conducted on a global scale, leading to reduced accuracy on regional levels, especially when there are relatively few tide gauges. The seas around the Korean Peninsula are one such area with few tide gauges before 1960. In this study, new methods are proposed to reconstruct past sea level around the Korean Peninsula. Using spatial patterns obtained from a cyclostationary empirical orthogonal function decomposition of satellite data, we reconstruct sea level over the period from 1900 to 2014. Sea surface temperature data and altimeter data are used simultaneously in the reconstruction process, leading to an elimination of reliance on tide gauge data. Although we did not use the tide gauge data in the reconstruction process, the reconstructed sea level has a better agreement with the tide gauge observations in the region than previous studies that incorporated the tide gauge data. This study demonstrates a reconstruction technique that can potentially be used at regional levels, with particular emphasis on areas with poor tide gauge coverage.
机译:自从现代卫星高度计时代问世以来,对海平面的了解已大大增加。但是,卫星高度计的记录只能追溯到1990年代。另一方面,潮汐仪的记录可追溯到20世纪,但与卫星相比,其空间覆盖范围较差。已经进行了许多研究来创建一个具有卫星数据集的空间覆盖范围和潮汐仪记录的时间长度的数据集,这是通过寻找在已知的海平面重建中将卫星数据和潮汐仪数据相结合的新颖方法来进行的。但是,大多数海平面的重建都是在全球范围内进行的,从而导致区域水平的精度降低,尤其是在潮汐仪相对较少的情况下。朝鲜半岛周围的海域就是这样一个地区,1960年以前潮汐计很少。在这项研究中,提出了新的方法来重建朝鲜半岛周围的过去海平面。利用从卫星数据的循环平稳经验正交函数分解获得的空间模式,我们重建了1900年至2014年的海平面。在重建过程中同时使用了海面温度数据和高度计数据,从而消除了对潮汐的依赖量规数据。尽管我们在重建过程中未使用潮汐仪数据,但与纳入潮汐仪数据的先前研究相比,重建的海平面与该地区的潮汐仪观测值具有更好的一致性。这项研究表明了一种重建技术,可以在区域级别使用,特别是在潮汐表覆盖率较差的地区。

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