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Enhancement of a thumper source far oAset refracted phases using super virtual interferometry (SVI)

机译:使用超虚拟干涉测量(SVI)增强避压件源远离oaset折射阶段

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Super-virtual interferometry (SVI) is a technique in which cross-correlation between consecutive receiver responses is carried out to obtain the virtual head-wave arrivals, which are then convolved with the initially recorded traces to get the super-virtual trace. SVI can be used to enhance the refracted phases by stacking all the arrivals acquired using multiple shots at one position, leading to an improved SNR by a factor of $surd n$, where $a??na??$ is the number of sources and receivers to generate the head-waves. In this study, we have generated few synthetic common shot gathers (CSGs) using forward modelling over a three-layer velocitya??depth model with an embedded spherical anomaly, a complex five-layer velocitya??depth model and the Marmousi model. Certain amount of noise is added on these gathers and then SVI technique is applied on the gathers which has resulted in an improved SNR of refracted phases at the far offset. We have further tested this technique on a field dataset acquired from the Kumaon Himalayan region using a 450 kg thumper as an energy source and 111 active channel remote acquisition unites (RAUs) with 5 Hz geophones as sensors. The resulting SVI gathers show the refracted arrivals more clearly. Continuity in the phases is increased after stacking and iterative SVI.
机译:超虚拟干涉测量(SVI)是执行连续接收器响应之间的交叉相关以获得虚拟脑波到定的技术,然后将其与最初记录的迹线卷积以获取超虚拟迹线。 SVI可用于通过堆叠在一个位置使用多个镜头获取的所有射击来增强折射阶段,导致一个改进的SNR为$ surd n $,其中$ a ?? na $是生成头部波的源和接收器。在这项研究中,我们使用前向型号模型的嵌入式球形异常,一个复杂的五层速度,深度模型和Marmousi模型,我们产生了少数合成常见的射击收集(CSG)。在这些聚集上添加了一定量的噪声,然后在填充物上施加SVI技术,该凹陷在远处的折射相的改进的SNR中。我们进一步测试了使用450千克·普珀作为能源和111个活动通道远程采集单元(RAU)作为传感器的450千克HIMALAYAN区域获取的现场数据集上。由此产生的SVI集会更清楚地显示折射的到达。在堆叠和迭代SVI后,阶段的连续性增加。

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