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首页> 外文期刊>Pure and Applied Geophysics >Reason and Condition for Mode Kissing in MASW Method
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Reason and Condition for Mode Kissing in MASW Method

机译:MASW方法中模式接吻的原因和条件

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摘要

Identifying correct modes of surface waves and picking accurate phase velocities are critical for obtaining an accurate S-wave velocity in MASW method. In most cases, inversion is easily conducted by picking the dispersion curves corresponding to different surface-wave modes individually. Neighboring surface-wave modes, however, will nearly meet (kiss) at some frequencies for some models. Around the frequencies, they have very close roots and energy peak shifts from one mode to another. At current dispersion image resolution, it is difficult to distinguish different modes when mode-kissing occurs, which is commonly seen in near-surface earth models. It will cause mode misidentification, and as a result, lead to a larger overestimation of S-wave velocity and error on depth. We newly defined two mode types based on the characteristics of the vertical eigendisplacements calculated by generalized reflection and transmission coefficient method. Rayleigh-wave mode near the kissing points (osculation points) change its type, that is to say, one Rayleigh-wave mode will contain different mode types. This mode type conversion will cause the mode-kissing phenomenon in dispersion images. Numerical tests indicate that the mode-kissing phenomenon is model dependent and that the existence of strong S-wave velocity contrasts increases the possibility of mode-kissing. The real-world data shows mode misidentification caused by mode-kissing phenomenon will result in higher S-wave velocity of bedrock. It reminds us to pay attention to this phenomenon when some of the underground information is known.
机译:识别正确的表面波模式并选择正确的相速度对于以MASW方法获得准确的S波速度至关重要。在大多数情况下,通过分别选择与不同的表面波模式相对应的色散曲线,可以轻松进行反演。但是,对于某些模型,相邻的表面波模式在某些频率下几乎会相遇(接近)。在这些频率附近,它们的根非常接近,并且能量峰值从一种模式转移到另一种模式。在当前色散图像分辨率下,当发生模式亲吻时,很难区分不同的模式,这在近地表地球模型​​中很常见。它将导致模式识别错误,结果是导致对S波速度和深度误差的高估。我们根据广义反射和透射系数法计算的垂直本征位移的特征,新定义了两种模式类型。靠近接吻点(闭合点)的瑞利波模式会改变其类型,也就是说,一种瑞利波模式将包含不同的模式类型。这种模式类型转换将在色散图像中引起模式亲吻现象。数值测试表明,模式吻合现象与模型有关,强S波速度反差的存在增加了模式吻合的可能性。实际数据表明,由模式吻合现象引起的模式识别错误将导致基岩的S波速度更高。它提醒我们在了解某些地下信息时要注意这一现象。

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