A. P. Arbad, W. Takeuchi, Yosuke Yosuke, Mutiara Jamilah, Achmad Ardy
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引用次数: 0
摘要
印度尼西亚最活跃的火山之一是Bromo火山,1775年有记录的Bromo火山活动。我们观察了位于印度尼西亚爪哇东部地区的Bromo火山的地表变形,该火山包括TNBTS (Taman Nasional Bukit Tengger Semeru)上的邻近火山系统。近年来,遥感在观测火山活动方面发挥了重要作用。我们应用SAR干涉测量(InSAR)算法,称为小基线子集(SBAS)方法,使我们能够生成研究区域的平均变形速度图和位移时间序列。在常见的SBAS技术中,干涉相位观测集被写成每个像素独立的单个SAR场景相位值的线性组合。特别是,所提出的分析是基于ALOS/PALSAR传感器在2007-2017年期间获得的22个SAR数据。很少有研究表明InSAR分析可以用于研究火山周期,特别是Bromo火山,它的喷发周期为1至5年。这项工作的预期结果代表了以前对该地区的InSAR研究的进步,这些研究主要集中在影响火山口的变形上。根据研究结果,我们期望本研究可以在风险管理或基础设施管理上实施。
TIME-SERIES SAR INTERFEROMETRY ANALYSIS OF SURFACE DEFORMATION AT MT. BROMO INDONESIA
One of the most active volcanoes in Indonesia is Mt. Bromo, volcanic activities at Mt. Bromo has been recorded in 1775. We observe the surface deformation of the Mt. Bromo which located at eastern Java Indonesia area that includes neighborhood volcanic system on TNBTS (Taman Nasional Bukit Tengger Semeru). Recently, remote sensing has played as an important role to observe volcano behavior. We apply the SAR Interferometry (InSAR) algorithm referred to as Small Baseline Subset (SBAS) approach that allows us to generate mean deformation velocity maps and displacement time series for the studied area. The common SBAS technique, the set of interferometric phase observations writes as a linear combination of individual SAR scene phase values for each pixel independently. Particularly, the proposed analysis is based on 22 SAR data acquired by the ALOS/PALSAR sensors during the 2007–2017 time interval. A fewer studies have been able to show capability of InSAR analysis for investigating cycle of volcano especially of Mt. Bromo which characterized eruption stratovolcano in ranging one to five years. The results expected in this work represent an advancement of previous InSAR studies of the area that are mostly focused on the deformation affecting the caldera. According to the result, we expected this study could implement on risk management or infrastructure management.