Institute of Geosciences (IGEO), CSIC-UCM, C/Dr. Severo Ochoa, 7., 28040, Madrid, Spain.
E.T.S. de Ingenieros en Topografía, Geodesia y Cartografía, Universidad Politécnica de Madrid, 28031, Madrid, Spain.
Sci Rep. 2023 Apr 20;13(1):6485. doi: 10.1038/s41598-023-33691-1.
The volcanic eruption at La Palma started on September 19, 2021. The eruption was preceded by a seismic swarm that began on September 11, although anomalous seismicity has been observed on the island since 2017. During the co-eruptive phase of the seismic activity, hypocenters depth was generally less than 15 km, save for the period between November 10 and November 27, when hypocenters ranged in the depth from 15 to 40 km. The eruption ended on December 13, 2021. We compute tidal stress for each earthquake at the hypocenter depth and find statistically significant correlations between the occurrence times of the earthquakes and the confining tidal stress values and stress rates. The correlation is depth-dependent, and ocean-loading tides have a stronger effect than body tides. We find that tidal stress variations contribute to the eruption onset and that certain explosive events, typical in Strombolian type volcanoes, seem to occur preferentially when the tidal stress rate is high. Our analysis supports the hypothesis that tides may modulate earthquake activity in volcanic areas, specifically during magma migration at shallow depths. A conceptual model is proposed, which could have a general application in the Canary Islands archipelago and other volcanic islands.
拉帕尔马岛的火山喷发始于 2021 年 9 月 19 日。此次喷发之前发生了一次地震群,始于 9 月 11 日,尽管自 2017 年以来该岛一直存在异常地震活动。在地震活动的共发阶段,震源深度通常小于 15 公里,但 11 月 10 日至 11 月 27 日期间除外,当时震源深度在 15 至 40 公里之间。喷发于 2021 年 12 月 13 日结束。我们为每个震源深度的地震计算潮汐应力,并发现地震发生时间与约束潮汐应力值和应力率之间存在统计上显著的相关性。相关性随深度而变化,海洋负荷潮汐的影响大于体潮汐。我们发现潮汐应力变化有助于喷发的开始,并且在潮汐应力率较高时,斯特龙博利式火山等典型的爆发事件似乎更倾向于发生。我们的分析支持潮汐可能调节火山地区地震活动的假设,特别是在浅部岩浆迁移期间。提出了一个概念模型,该模型可能在加那利群岛和其他火山岛具有普遍适用性。