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首页> 外文期刊>Journal of Applied Geophysics >Effect of near-surface topography on high-frequency Rayleigh-wave propagation
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Effect of near-surface topography on high-frequency Rayleigh-wave propagation

机译:近地表地形对高频瑞利波传播的影响

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Rayleigh waves, which are formed due to interference of P- and Sv-waves near the free surface, propagate along the free surface and vanish exponentially in the vertical direction. Their propagation is strongly influenced by surface topography. Due to the high resolution and precision requirements of near-surface investigations, the high-frequency Rayleigh waves are usually used for near-surface structural detecting. Although there are some numerical studies on high-frequency Rayleigh-wave propagation on topographic free surface, detailed analysis of characters of high-frequency Rayleigh-wave propagation on topographic free surface remains untouched. Hence, research of propagation of Rayleigh waves on complex topographic surface becomes critical for Rayleigh-wave methods in near-surface applications. To study the propagation of high-frequency Rayleigh waves on topographic free surface, two main topographic models are designed in this study. One of the models contains a depressed topographic surface, and another contains an uplifted topographic surface. We numerically simulate the propagation of high-frequency Rayleigh waves on these two topographic surfaces by finite-difference method. Soon afterwards, we analyze the propagation character of high-frequency Rayleigh waves on such topographic models, and compare the variations on its energy and frequency before and after passing the topographic region. At last, we discuss the relationship between the variations and topographical steepness of each model. Our numerical results indicate that influence of depressed topography for high-frequency Rayleigh waves is more distinct than influence of uplifted topography. Rayleigh waves produce new scattering body waves during passing the depressed topography with reduction of amplitude and loss of high-frequency components. Moreover, the steeper the depressed topography is, the more energy of Rayleigh waves is lost. The uplifted topography with gentle slope produces similar influence as the depressed topography on propagation of high-frequency Rayleigh waves. When slopes are getting steep, however, the obstacle influence of the uplifted topography becomes weak. In addition, in the uplifted-topography case, part of Rayleigh-wave energy is absorbed by the uplifted terrain, which includes the trapped energy between the uplifted boundaries and the generation of scattering waves. Meanwhile, local topography strongly affects the character of Rayleigh-wave dispersion. Egregious error may be introduced, when pick Rayleigh-wave phase velocities on dispersion energy images for an MASW survey, if the local free-surface topography is ignored. (C) 2015 Elsevier B.V. All rights reserved.
机译:由于自由表面附近的P波和Sv波的干扰而形成的瑞利波沿着自由表面传播,并在垂直方向上呈指数消失。它们的传播受到表面形貌的强烈影响。由于近地表研究的高分辨率和精度要求,高频瑞利波通常用于近地表结构探测。尽管对高频瑞利波在地表自由表面上的传播进行了一些数值研究,但对高频瑞利波在地表自由表面上的传播特征的详细分析仍未触及。因此,研究瑞利波在复杂地形表面上的传播对于近地表应用中的瑞利波方法至关重要。为了研究高频瑞利波在地形自由表面上的传播,本研究设计了两个主要的地形模型。其中一个模型包含一个凹陷的地形表面,另一个模型包含一个凸起的地形表面。我们通过有限差分法数值模拟了高频瑞利波在这两个地形表面上的传播。随后不久,我们分析了高频瑞利波在此类地形模型上的传播特性,并比较了通过地形区域之前和之后其能量和频率的变化。最后,我们讨论了每个模型的变化与地形陡度之间的关系。我们的数值结果表明,凹陷的地形对高频瑞利波的影响比隆起的地形的影响更为明显。瑞利波在通过凹陷的地形时会产生新的散射体波,从而降低振幅并减少高频分量。而且,凹陷的地形越陡峭,瑞利波的能量损失就越大。坡度缓和的隆起地形对高频瑞利波的传播产生与凹陷的地形类似的影响。但是,当斜坡变得陡峭时,隆起的地形的障碍影响会减弱。另外,在隆起的地形情况下,一部分瑞利波能量被隆起的地形吸收,这包括隆起的边界之间的捕获能量和散射波的产生。同时,局部地形强烈影响瑞利波色散的特性。如果忽略局部自由表面地形,则在为MASW测量选择散布能量图像上的瑞利波相速度时,可能会引入严重误差。 (C)2015 Elsevier B.V.保留所有权利。

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