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Rotational Motions in Seismology: Theory, Observation, Modeling

机译:地震学中的旋转运动:理论,观察,建模

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摘要

Theoretically, to fully describe the change in the medium around a point one needs three components of translation, six components of strain, and three components of rotation. It is expected that collocated measurements of translations and rotations may help (1) correcting translation signals recorded by classical seismometers for contamination by ground rotations, (2) extracting additional information on earthquake source properties, soil-structure interactions, and properties of the subsurface, and (3) providing additional ground motion information to earthquake engineers for seismic design. Thus, in addition to translations and strains, the rotational part of ground motions should also be recorded. However, the lack of instrumental sensitivity did not allow seismologists to observe rotational motions for decades. Recently, ring laser technology has provided the means to develop instruments that allow in principle the observation of rotational motions in a wide frequency band and epicentral distance range. Here we present the observations of rotational ground motions around a vertical axis in the P coda (the section between the onsets of direct P- and S- waves) of tele-seismic signals on a ring laser sensor at the Fundamental Observatory Wettzell, southeast Germany. The studies focus on finding the explanation for the observed P coda rotations as well as the way to extract additional information from the use of co-seismic rotational motions. First, the effects of co-seismic tilts on ring laser measurements are quantified based on magnitude-amplitude relations and translation derived tilts. Then the phenomenon of scattering assuming three dimensional random media and topography that may generate the observed P coda rotations is investigated through analysis of observations and forward modelling. The partitioning of P and S energy indicated by the stabilization of the ratio of energies of the two is used to constrain scattering properties. Finally, an analytical approach focusing on the solution of plane waves in linear elastic anisotropic media is used to quantify the anisotropic behavior through the variations of rotational wavefield. The focus is on quasi-P waves and transverse isotropic media. Kelvin-Christoffel equation and the Thomson parameters, descriptive of the degree of anisotropy, are used. The obtained results show that 1) P-SH scattering in the random crust is the main cause of the P-coda observations; and 2) rotational motions contain additional information (at least) about scattering properties and anisotropic coefficients and that joint measurements of translational and rotational motions at only one point allow the extraction of additional information. The results demonstrate the potential benefit not only of measurements of co-seismic rotational ground motions but also of the use of the amplitude content of seismic signals.
机译:从理论上讲,要完整描述点周围介质的变化,需要平移的三个部分,应变的六个部分和旋转的三个部分。预计对转和旋转的并置测量可以帮助(1)校正经典地震仪记录的平移信号,以防止地面旋转污染;(2)提取有关震源特性,土壤-结构相互作用以及地下特性的其他信息, (3)向地震工程师提供额外的地震动信息,以进行地震设计。因此,除了平移和应变外,还应记录地面运动的旋转部分。但是,由于缺乏仪器灵敏度,地震学家数十年来一直无法观察到旋转运动。近来,环形激光技术提供了开发仪器的方法,该仪器原则上允许在宽频带和震中距离范围内观察旋转运动。在这里,我们介绍了在德国东南部的Wettzell基础天文台的环形激光传感器上,在远震信号的P尾波(直接P波和S波发作之间的部分)中绕垂直轴旋转的地面运动的观测结果。 。这些研究的重点是找到对所观测到的P尾声旋转的解释,以及从使用同震旋转运动中提取更多信息的方法。首先,基于幅度-振幅关系和平移推导得出的倾斜度,量化了同震倾斜度对环形激光测量的影响。然后通过观察分析和前向建模研究假设三维随机介质和地形可能产生观测到的P尾声旋转的散射现象。 P和S能量的划分(由两者的能量比的稳定表示)用于限制散射特性。最后,采用一种集中于线性弹性各向异性介质中平面波解的分析方法,通过旋转波场的变化来量化各向异性行为。重点是准P波和横向各向同性介质。使用描述各向异性程度的Kelvin-Christoffel方程和Thomson参数。得到的结果表明:1)随机地壳中的P-SH散射是P-尾气观测的主要原因。 2)旋转运动至少包含有关散射特性和各向异性系数的附加信息,并且平移和旋转运动的联合测量仅在一点上允许提取附加信息。结果表明,不仅可以测量同震旋转地震动,而且可以利用地震信号的振幅含量。

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    Pham Nguyen Dinh;

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  • 年度 2009
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