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Feasibility of anomaly occurrence in aerosols time series obtained from MODIS satellite images during hazardous earthquakes

机译:从MODIS卫星图像获得的危险地震期间气溶胶时间序列异常发生的可行性

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摘要

Earthquake is one of the most devastating natural disasters that its prediction has not materialized comprehensive. Remote sensing data can be used to access information which is closely related to an earthquake. The unusual variations of lithosphere, atmosphere and ionosphere parameters before the main earthquakes are considered as earthquake precursors. To date the different precursors have been proposed. This paper examines one of the parameters which can be derived from satellite imagery. The mentioned parameter is Aerosol Optical Depth (AOD) that this article reviews its relationship with earthquake. Aerosol parameter can be achieved through various methods such as AERONET ground stations or using satellite images via algorithms such as the DDV (Dark Dense Vegetation), Deep Blue Algorithm and SYNTAM (SYNergy of Terra and Aqua Modis). In this paper, by analyzing AOD's time series (derived from MODIS sensor on the TERRA platform) for 16 major earthquakes, seismic anomalies were observed before and after earthquakes. Before large earthquakes, rate of AOD increases due to the pre-seismic changes before the strong earthquake, which produces gaseous molecules and therefore AOD increases. Also because of aftershocks after the earthquake there is a significant change in AOD due to gaseous molecules and dust. These behaviors suggest that there is a close relationship between earthquakes and the unusual AOD variations. Therefore the unusual AOD variations around the time of earthquakes can be introduced as an earthquake precursor.
机译:地震是最灾难性的自然灾害之一,其预测尚未全面实现。遥感数据可用于访问与地震密切相关的信息。大地震之前岩石圈,大气和电离层参数的异常变化被认为是地震的先兆。迄今为止,已经提出了不同的前体。本文研究了可以从卫星图像导出的参数之一。提到的参数是气溶胶光学深度(AOD),本文将回顾其与地震的关系。气溶胶参数可以通过各种方法(例如AERONET地面站)或通过卫星图像通过DDV(暗密度植被),深蓝算法和SYNTAM(Terra和Aqua Modis的Synergy)算法来实现。本文通过分析16天大地震的AOD时间序列(来自TERRA平台上的MODIS传感器),观察了地震前后的地震异常。在大地震之前,由于强地震前地震前的变化,AOD的速率增加,产生气态分子,因此AOD升高。同样由于地震后的余震,气态分子和粉尘导致AOD发生了显着变化。这些行为表明地震与异常AOD变化之间存在密切的关系。因此,可以将地震前后异常的AOD变化引入地震前兆。

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