Civico Riccardo, Ricci Tullio, Cecili Alessandro, Scarlato Piergiorgio
Istituto Nazionale di Geofisica e Vulcanologia, Rome, Italy.
Università degli studi Roma Tre, Dipartimento di Scienze, Rome, Italy.
Sci Data. 2024 Nov 12;11(1):1219. doi: 10.1038/s41597-024-04098-y.
The July 2024 eruption of Stromboli volcano has been characterised by the manifestation, at variable intensity, of the entire repertoire of volcanic events that Stromboli volcano is capable of, and is by far the one that has most changed the morphology of the crater terrace and of the Sciara del Fuoco slope in the last decades. We present the results of an Unoccupied Aircraft System (UAS) survey performed on 14 July 2024 and consisting of 4,988 visible and thermal photographs coupled with Structure-from-Motion photogrammetry that allowed us to produce a high-resolution (0.2 m/pixel) Digital Surface Model (DSM). We documented the profound morphological changes of the Stromboli volcano resulting from the 4-11 July 2024 eruption and obtained elevation and volume change estimates by differencing our survey and a UAS-derived pre-event surface (24 May 2024).
2024年7月斯特龙博利火山喷发的特点是,该火山所能引发的各类火山活动都以不同强度显现出来,这是近几十年来对火山口平台和火口谷斜坡形态改变最大的一次喷发。我们展示了2024年7月14日使用无人机系统(UAS)进行的一次测量结果,该测量包括4988张可见光和热成像照片,并结合了基于运动恢复结构的摄影测量技术,从而生成了高分辨率(0.2米/像素)的数字表面模型(DSM)。我们记录了2024年7月4日至11日喷发导致的斯特龙博利火山深刻的形态变化,并通过对比本次测量与无人机获取的事件前表面(2024年5月24日),得出了海拔和体积变化的估计值。