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Overpressure at the Macondo Well and its impact on the Deepwater Horizon blowout

机译:Macondo井超压及其对深水地平线井喷的影响

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摘要

At the Macondo well, the overpressure (fluid pressure greater than hydrostatic) in the main reservoir is nearly identical to that within a stratigraphically equivalent sandstone at the Galapagos development 21 miles (34 km) to the south; we interpret that the reservoirs share a permeable, laterally extensive, and hydraulically connected aquifer. At Macondo, pore pressure approximately parallels the overburden stress to a depth of 17,640 ft (5,377 m) subsea and thereafter decreases abruptly by 1,200 psi (8.3 MPa) over 370 ft (113 m) as the main sandstone reservoir is approached. In contrast, at Galapagos, pore pressure increases with the overburden stress for the entire well depth. The pore pressure regression at Macondo was responsible for a reduction in the least principal stress. This, in combination with the extreme pore pressures within overlying strata, drastically narrowed the range of safe operational borehole pressures. These geologic phenomena produced challenging conditions for drilling, prevented successful temporary abandonment of the well, and contributed to the well’s failure.
机译:在Macondo井,主油藏中的超压(流体压力大于静水压力)几乎与南部21英里(34公里)的加拉帕戈斯开发区的地层等效砂岩中的超压相同。我们解释说,这些油藏共享一个可渗透的,横向扩展的和水力连通的含水层。在Macondo,孔隙压力大约与上覆应力平行,在海底深度为17,640 ft(5,377 m),此后随着接近主要砂岩储层,在370ft(113 m)处突然减小了1,200 psi(8.3 MPa)。相比之下,在加拉帕戈斯,整个井深度的孔隙压力都随着上覆应力的增加而增加。 Macondo的孔隙压力回归是导致最小主应力降低的原因。这与上覆地层中的极端孔隙压力相结合,极大地缩小了安全操作井眼压力的范围。这些地质现象给钻探创造了挑战性的条件,阻止了井的成功临时弃置,并导致了井的失败。

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