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首页> 外文期刊>Earth Surface Dynamics Discussions >Reconstruction of four-dimensional rockfall trajectories using remote sensing and rock-based accelerometers and gyroscopes
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Reconstruction of four-dimensional rockfall trajectories using remote sensing and rock-based accelerometers and gyroscopes

机译:使用遥感和基于岩石的加速度计和陀螺仪重建四方岩崩轨迹

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摘要

This work focuses on the in-depth reconstruction of the full set of parameters of interest in single-block rockfall trajectories. A comprehensive understanding of rockfall trajectories holds the promise to enhance the application of numerical models for engineering hazard analysis. Such knowledge is equally important to investigate wider cascade problems in steep terrain. Here, we present a full four-dimensional trajectory reconstruction of the “Chant Sura” rockfall experiment performed with EOTA sub221/sub norm rocks. The data analysis allows a complete kinematic description of a rock's trajectory in real terrain and underscores the physical complexity of rock–ground interactions. In?situ accelerometer and gyroscope data are combined with videogrammetric and unmanned aerial-systems mapping techniques to understand the role of rock rotations, ground penetration and translational scarring in rockfall motion. The exhaustive trajectory reconstruction provides information over the complete flight path such as translational velocity vectors, angular velocities, impact duration and forces, ballistic jump heights, and lengths. The experimental data provide insight into the basic physical processes detailing how rotating rocks of general shape penetrate, rebound and scar ground terrain. In future, the data will serve as a calibration basis to enhance numerical rockfall modelling.
机译:这项工作着重于对单块落石轨迹中感兴趣的全套参数进行深度重建。对落石运动轨迹的全面理解有望增强数值模型在工程危害分析中的应用。这些知识对于研究陡峭地形中更广泛的级联问题同样重要。在这里,我们介绍了使用EOTA 221 规范岩石进行的“ Chant Sura”落石实验的完整三维轨迹重建。数据分析可以对岩石在真实地形中的运动轨迹进行完整的运动学描述,并强调了岩石与地面相互作用的物理复杂性。原位加速度计和陀螺仪数据与视频测量和无人航空系统制​​图技术相结合,以了解岩石旋转,地面穿透和平移疤痕在落石运动中的作用。详尽的轨迹重建可提供完整飞行路径上的信息,例如平移速度矢量,角速度,冲击持续时间和作用力,弹道跳跃高度和长度。实验数据提供了对基本物理过程的了解,详细介绍了一般形状的旋转岩石如何渗透,反弹和形成疤痕的地形。将来,这些数据将作为加强岩崩数值模拟的基础。

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