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Seismic while drilling: Basic experiments using a percussion drill as an energy source

机译:随钻地震:使用冲击钻作为能源的基础实验

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We discuss the feasibility of performing SWD (Seismic While Drilling) surveys utilizing a percussion drill as an energy source. This drilling technology is widely used in the drilling industry because it enables safe, economical, and rapid drilling. For SWD surveys, a broad source frequency spectrum is essential; however, the frequency content of seismic signals normally generated by percussion drilling is severely band limited because it is primarily controlled by the impact rate of the drill. In this paper, we report attempts at broadening the spectral energy output of a percussion drill. The frequency content of percussion drill signals can be controlled by manual variation of the hydraulic pressure input during drilling. Because hydraulic pressure change affects both the impact power and the rate of drilling, this results in a change to the frequency of drilling vibrations. We show that the response after processing is comparable with a conventional shot-record, but the percussion drill and cross-correlation method still requires improvements before it can be considered equal to conventional data.
机译:我们讨论了使用冲击钻作为能源进行SWD(随钻地震)勘测的可行性。该钻探技术可实现安全,经济和快速的钻探,因此在钻探行业得到了广泛的应用。对于社署调查,广泛的源频谱必不可少。然而,通常由冲击钻探产生的地震信号的频率含量受到严格的频带限制,因为它主要由钻探的冲击速率控制。在本文中,我们报告了尝试扩大冲击钻的光谱能量输出的尝试。敲击钻孔信号的频率内容可以通过在钻孔过程中手动改变液压输入来控制。由于液压变化会影响冲击功率和钻井速度,因此会导致钻井振动频率发生变化。我们表明,处理后的响应与常规镜头记录相当,但是打击乐演练和互相关方法仍需要改进才能被认为与常规数据相等。

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