Monitoring of volcanic precursors using satellite data: the case of Taftan volcano in Iran

IF 1.4 Q4 REMOTE SENSING
Mehdi Akhoondzadeh
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引用次数: 2

Abstract

Abstract In recent weeks, there have been reports of gas emanations from the crater of the dormant Taftan volcano in Iran. In this study, due to the limitations of ground stations and the advantages of satellite remote sensing, it has been tried to detect possible anomalies using the plasma data measured by Swarm (A, B and C) and GPS (Global Positioning System) satellites around the location of the mentioned volcano. Also, lithospheric and atmospheric data including OLR (Outgoing Longwave Radiation), water vapor, ozone, relative humidity, surface and air temperature, AOD (Aerosol Optical Depth), sulfur dioxide (SO 2 ) and nitrogen dioxide (NO 2 ) using the Giovanni website in a period of about 5 months, were downloaded and analyzed. Using the median and interquartile method, possible anomalies were detected in the pre-processed time series of the desired parameters. To justify some of the non-volcanic anomalies, synoptic data including precipitation and temperature were prepared from the nearest ground station. By rejecting the possibility that some detected anomalies are related to volcanic activities, hypotheses were presented for other proposed anomalies. As a result of this research, the capabilities of Swarm satellites and GPS-TEC (Total Electron Content) are emphasized in studies related to the prediction, detection and tracking of volcanic activities and it is shown that by comparative comparison with other lithospheric and atmospheric precursors, uncertainty in eruption prediction can be reduced.
利用卫星数据监测火山前体:以伊朗塔坦火山为例
最近几周,有报道称伊朗休眠的塔夫坦火山火山口散发出气体。在本研究中,由于地面站的限制和卫星遥感的优势,我们尝试使用Swarm (A, B和C)和GPS(全球定位系统)卫星在上述火山位置周围测量的等离子体数据来检测可能的异常。下载并分析了Giovanni网站近5个月来的岩石圈和大气数据,包括发射长波辐射(OLR)、水汽、臭氧、相对湿度、地表和大气温度、气溶胶光学深度(AOD)、二氧化硫(so2)和二氧化氮(NO 2)。使用中位数和四分位数方法,在期望参数的预处理时间序列中检测可能的异常。为了证明一些非火山异常是正确的,从最近的地面站准备了天气资料,包括降水和温度。通过排除某些探测到的异常与火山活动有关的可能性,对其他提出的异常提出了假设。本文的研究结果强调了Swarm卫星和GPS-TEC (Total Electron Content)在火山活动预测、探测和跟踪方面的能力,并表明通过与其他岩石圈和大气前兆的比较,可以降低火山活动预测的不确定性。
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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来源期刊
Journal of Applied Geodesy
Journal of Applied Geodesy REMOTE SENSING-
CiteScore
2.30
自引率
7.10%
发文量
30
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