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首页> 外文期刊>Geophysical Prospecting >Research note: Laboratory study of the influence of changing the injection rate on the geometry of the fluid front and on P-wave ultrasonic velocities in sandstone
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Research note: Laboratory study of the influence of changing the injection rate on the geometry of the fluid front and on P-wave ultrasonic velocities in sandstone

机译:研究记录:改变注入速率对砂岩流体前缘几何形状和P波超声速度影响的实验室研究

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Forced imbibition was performed in reservoir sandstone by injecting water into a dry sample. The injection was monitored with X-ray computed tomography and acoustic acquisition to simultaneously visualize the displacement of the fluid and quantify its presence by calculating saturation and P-wave velocities. We observed a strong influence when changing the injection rates on the acoustic response. Upon decreasing the injection rate from 5 mL/h to 0.1 mL/h, P-wave velocities decreased sharply: 100 m/s in 1 h. This behaviour is related to the partially saturated conditions of the sample (76% of saturation) before decreasing the injection rate. The air that is still trapped is free to move due to a decrease of pore pressure that is no longer forced by the higher injection rate. After 1 hour, P-wave velocities started increasing with small changes in saturation. Stopping injection for 16 hrs decreased saturation by 8% and P-wave velocities by 100 m/s. Restarting injection at 5 mL/h increased saturation to 76% while P-wave velocities fluctuated considerably for 2 hrs until they stabilized at 2253 m/s. Through the computed tomography scans we observed a water front advancing through the sample and how its shape changed from a plane to a curve after decreasing the injection rate.
机译:通过将水注入干燥的样品,在储层砂岩中进行强迫吸水。用X射线计算机断层扫描和声学采集监测注射液,以同时观察流体的位移并通过计算饱和度和P波速度来量化其存在。我们观察到改变注入速率对声学响应的强烈影响。在将注射速率从5 mL / h降低至0.1 mL / h时,P波速度急剧下降:在1小时内达到100 m / s。此行为与降低注射速率之前样品的部分饱和条件(饱和度的76%)有关。由于孔隙压力的降​​低,仍然被困住的空气可以自由移动,而孔隙率的降低不再受较高的注入速率的推动。 1小时后,P波速度开始增加,但饱和度变化很小。停止注入16个小时,饱和度降低8%,P波速度降低100 m / s。重新开始以5 mL / h的速度注入时,饱和度增加到76%,而P波速度在2小时内波动很大,直到稳定在2253 m / s。通过计算机断层摄影扫描,我们观察到水前沿在样品中前进,并且在降低注射速率后其形状如何从平面变为曲线。

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