The Investigation of Tropospheric Changes with GNSS: A study on 6 February 2023 Kahramanmaraş Earthquake Sequence

Seda Özarpacı
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Abstract

The earthquakes that occurred in Kahramanmaraş on February 6, 2023, are among the significant seismic events in Turkey. Recorded at moment magnitudes of 7.8 and 7.6 in ten hours on East Anatolian Fault Zone (EAFZ), these earthquakes resulted in extensive destruction and loss of lives in the region. The effects of these earthquakes have been actively studied following the events, utilizing geodetic measurement techniques, particularly GNSS measurements, which are commonly employed in earthquake studies for determining tectonic movements and crustal deformations. As known, GNSS signals pass through significant atmospheric layers, namely the ionosphere and troposphere, before reaching the Earth's surface, and the influence of these atmospheric layers is evident in the results due to various error sources within these layers. One of the main limiting factors in studies such as determining crustal movements is the influence of the troposphere, as surface velocities are on the order of a few mm/yr and require high accuracy (at the mm level). In this study, changes in the troposphere during the earthquakes on February 6, 2023, were investigated using tropospheric zenith delays (Zenith Total Delay - ZTD) computed from GNSS observations. The results indicate the presence of zenith tropospheric delay anomalies at stations close to the fault rupture during and after the main shock, while no such anomalies were observed at distant stations from the fault rupture zone. This finding indicates a relationship between earthquakes and changes occurring in the troposphere.
利用全球导航卫星系统调查对流层变化:对 2023 年 2 月 6 日卡赫拉曼马拉什地震序列的研究
2023 年 2 月 6 日在卡赫拉曼马拉什(Kahramanmaraş)发生的地震是土耳其重大地震事件之一。东安纳托利亚断裂带(EAFZ)在 10 小时内分别发生了 7.8 级和 7.6 级地震,这些地震给该地区造成了巨大的破坏和人员伤亡。地震发生后,利用大地测量技术,特别是全球导航卫星系统测量技术,对这些地震的影响进行了积极研究。众所周知,全球导航卫星系统信号在到达地球表面之前会经过重要的大气层,即电离层和对流层,由于这些大气层内的各种误差源,这些大气层对结果的影响显而易见。确定地壳运动等研究的主要限制因素之一是对流层的影响,因为地表速度大约为几毫米/年,需要很高的精度(毫米级)。在本研究中,利用全球导航卫星系统观测数据计算出的对流层天顶延迟(天顶总延迟 - ZTD),研究了 2023 年 2 月 6 日地震期间对流层的变化。结果表明,在主震期间和之后,靠近断层断裂带的台站存在对流层天顶延迟异常,而远离断层断裂带的台站则没有观测到此类异常。这一结果表明地震与对流层发生的变化之间存在关系。
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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