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首页> 外文期刊>Geophysical Prospecting >The effect of gauge length on axially incident P-waves measured using fibre optic distributed vibration sensing
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The effect of gauge length on axially incident P-waves measured using fibre optic distributed vibration sensing

机译:标距长度对使用光纤分布式振动传感测量的轴向入射P波的影响

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摘要

Distributed vibration sensing, also known as distributed acoustic sensing, is a relatively new method for recording vertical seismic profile data using a fibre optic cable as the sensor. The signal obtained from such systems is a distributed measurement over a length of fibre referred to as the gauge length. In this paper, we show that gauge length selection is one of the most important acquisition parameters for a distributed vibration sensing survey. If the gauge length is too small, then the signal-to-noise ratio will be poor. If the gauge length is too large, resolution will be reduced and the shape of the wavelet will be distorted. The optimum gauge length, as derived here, is a function of the velocity and frequencies of the seismic waves being measured. If these attributes vary considerably over the depth of a survey, then the use of different gauge lengths is recommended. The significant increases in data quality resulting from the use of multiple gauge length values are demonstrated using field data.
机译:分布式振动传感(也称为分布式声学传感)是一种使用光纤电缆作为传感器记录垂直地震剖面数据的相对较新的方法。从这样的系统获得的信号是在称为标距的光纤长度上的分布式测量。在本文中,我们表明,标距长度的选择是分布式振动传感测量最重要的采集参数之一。如果标距长度太小,则信噪比将很差。如果标距长度太大,则分辨率会降低,并且小波的形状也会变形。此处得出的最佳轨距长度是被测地震波的速度和频率的函数。如果这些属性在调查深度范围内变化很大,则建议使用不同的标距长度。使用现场数据证明了由于使用多个标距长度值而导致的数据质量的显着提高。

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