Identification of Sea Level Rise and Land Subsidence Based on Sentinel 1 Data in the Coastal City of Pekalongan, Central Java, Indonesia

Lessy Andari, D. Sugianto, A. Wirasatriya, Satria Ginanjar
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Abstract

Sea level rise is a pure impact of climate change. However, the process of studying sea level rise must include local factors that influence such as land subsidence. This study focuses on sea level rise using the CEEMDAN method and land subsidence using the DInSAR method. The location of this research is Pekalongan, Central Java, Indonesia. Tidal data used in this study was for five years, from 2016 to 2020, obtained from the Geospatial Information Agency (BIG). Then the data used to study land subsidence in this study uses Sentinel-1 Synthetic Aperture Radar (SAR) data in 2015, 2016, 2017, and 2020. Pekalongan is an area with mixed diurnal tidal types with Formzahl number 1.7. The sea level rise in Pekalongan is relatively high, at 10.6 mm/year. Then the land subsidence that occurred in Pekalongan is the phenomenon that has the most influence on the occurrence of coastal flooding in the region. The average land subsidence on the coast of Pekalongan is 5.37 cm/year. In addition, the sampling results in 6 areas showed that the most significant decrease was in Area 2, with a decrease of -7.91 cm/year. Based on this research, land subsidence is the most considerable influence on flooding in Pekalongan compared to sea level rise.
基于Sentinel 1数据的印尼中爪哇沿海城市佩卡隆甘海平面上升和地面沉降识别
海平面上升纯粹是气候变化的影响。然而,研究海平面上升的过程必须包括地面沉降等局部影响因素。采用CEEMDAN方法研究海平面上升,采用DInSAR方法研究地面沉降。本研究的地点是印度尼西亚中爪哇的佩卡隆岸。本研究中使用的潮汐数据是从地理空间信息署(BIG)获得的,为期5年,从2016年到2020年。然后,本研究中用于研究地面沉降的数据使用了2015年、2016年、2017年和2020年的Sentinel-1合成孔径雷达(SAR)数据。北卡隆岸是一个日潮类型混合的地区,Formzahl数为1.7。北加隆岸的海平面上升相对较高,为10.6毫米/年。那么,北加隆岸发生的地面沉降是对该地区沿海洪水发生影响最大的现象。北卡隆岸海岸的平均地面沉降量为5.37 cm/年。另外,6个地区的采样结果显示,2区减少幅度最大,减少幅度为-7.91 cm/年。基于此研究,与海平面上升相比,地面沉降对贝加隆岸洪水的影响最大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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