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High density oilfield wastewater disposal causes deeper stronger and more persistent earthquakes

机译:高密度油田废水处理导致更深更强更持久的地震

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摘要

Oilfield wastewater disposal causes fluid pressure transients that induce earthquakes. Here we show that, in addition to pressure transients related to pumping, there are pressure transients caused by density differences between the wastewater and host rock fluids. In northern Oklahoma, this effect caused earthquakes to migrate downward at ~0.5 km per year during a period of high-rate injections. Following substantial injection rate reductions, the downward earthquake migration rate slowed to ~0.1 km per year. Our model of this scenario shows that the density-driven pressure front migrates downward at comparable rates. This effect may locally increase fluid pressure below injection wells for 10+ years after substantial injection rate reductions. We also show that in north-central Oklahoma the relative proportion of high-magnitude earthquakes increases at 8+ km depth. Thus, our study implies that, following injection rate reductions, the frequency of high-magnitude earthquakes may decay more slowly than the overall earthquake rate.
机译:油田废水处理会引起流体压力瞬变,从而引发地震。在这里,我们表明,除了与泵送相关的压力瞬变外,还有废水和宿主岩石流体之间的密度差异引起的压力瞬变。在俄克拉荷马州北部,这种影响导致在高速率注入期间,地震以每年〜0.5 km的速度向下迁移。在注入速度大幅度降低之后,向下的地震迁移速度减慢至每年约0.1公里。我们在这种情况下的模型显示,密度驱动的压力前沿以可比的速率向下迁移。在大幅降低注入速率后,这种影响可能会在注入井以下局部增加流体压力10年以上。我们还表明,在俄克拉荷马州中北部,高震级地震的相对比例在深度8公里以上时增加。因此,我们的研究表明,随着注入速率的降低,高震级地震的衰减可能比整体地震速率更慢。

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