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A new elastic model for ground coupling of geophones with spikes

机译:一种新的弹性模型,用于地震检波器与尖峰的地面耦合

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摘要

Ground coupling are terms that describe the transfer from seismic ground motion to the motion of a geophone. In previous models, ground coupling was mainly considered as a disk lying on top of a half-space, not considering the fact that in current practice geophones are spiked and are buried for optimal response. In this paper we introduce a new model that captures the spike added to the geophone and models the effect of geophone burial. The geophone is modeled as a rigid, movable cylinder embedded in a half-space near or at the surface. The coupling problem is then tackled by a scattering approach using the elastic form of reciprocity; we consider the vertical component only. The main feature in the coupling function is a resonance whose location and shape depend on the different parameters of the geophone and the soil. In accordance with previous models, adding mass reduces the frequency of resonance. However, we show that pure mass loading assumption is too restrictive for standard geophones. Our new model shows that increasing the spike radius and length decreases the frequency of resonance and the resonance is more peaked. Furthermore, burying the geophone decreases the frequency of resonance, but when one takes into account that the soil at depth is more compact, then the behavior is as observed in practice — namely, an increase in frequency of resonance. As for the properties of the soil, the shear-wave velocity has the largest effect; when increased, it shifts the frequency of resonance to the high-frequency end as desired.
机译:地面耦合是描述从地震地面运动到地震检波器运动的转换的术语。在以前的模型中,接地耦合主要被视为位于半空间顶部的磁盘,而没有考虑到在当前实践中地震检波器被尖峰并掩埋以获得最佳响应这一事实。在本文中,我们介绍了一个新模型,该模型捕获添加到地震检波器中的尖峰并模拟地震检波器掩埋的效果。地震检波器被建模为一个刚性的,可移动的圆柱体,该圆柱体嵌入表面附近或表面的半空间中。然后通过使用弹性互易的散射方法解决耦合问题。我们仅考虑垂直分量。耦合功能的主要特征是共振,共振的位置和形状取决于地震检波器和土壤的不同参数。根据以前的模型,增加质量会降低共振频率。但是,我们表明,纯质量载荷假设对于标准地震检波器而言过于严格。我们的新模型表明,增加尖峰半径和长度会降低共振频率,并且共振会更加尖锐。此外,埋入地震检波器会降低共振频率,但是如果考虑到深处土壤更致密,则其行为如实践中所观察到的,即共振频率增加。至于土壤的性质,剪切波速度的影响最大。当增加时,它将谐振频率移至所需的高频端。

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