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Experimental study on permeability stress sensitivityudin tight sandstone oil reservoirs

机译:渗透应力敏感性的实验研究 ud在致密砂岩油藏中

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摘要

In this paper, seven permeability stress sensitivity experiments were conducted to show the features of permeability stress sensitivity. The cores in the experiments were taken from the tight sandstone oil reservoir in Ordos Basin. Then advanced technologies, such as casting thin section, scanning electron microscope and rate-controlled mercury penetration, were applied to explain the mechanism of permeability stress sensitivity in tight oil reservoirs. The results indicated that the permeability reduction and recovery in gas permeability stress sensitivity increases as the permeability decreases. This was resulted from the maximal throat radius. The permeability reduction in liquid permeability stress sensitivity increases at first and then decreases as the permeability decreases. The permeability recovery decreases to zero as the permeability decreases. Additionally, the differences between gas and liquid permeability stress sensitivity become greater as the permeability decreases. These were resulted from the effect of the critical throat radius. This paper corrects the mistakes about the stress sensitivity in tight oil reservoirs from gas permeability stress sensitivity experiments which is significant to the development of tight sandstone oil reservoirs.
机译:本文进行了七个渗透率应力敏感性实验,以显示渗透率应力敏感性的特征。实验岩心取自鄂尔多斯盆地致密砂岩油藏。然后运用薄壁铸造,扫描电子显微镜和速率控制汞渗透等先进技术来解释致密油储层的渗透应力敏感性机理。结果表明,随着渗透率的降低,渗透率的降低和气体渗透率应力敏感性的恢复增加。这是由于最大的喉咙半径造成的。液体渗透率应力敏感性中的渗透率降低首先增加,然后随着渗透率降低而降低。随着渗透率降低,渗透率恢复降低至零。另外,随着渗透率降低,气体和液体渗透率应力敏感性之间的差异变得更大。这些是由于临界喉咙半径的影响所致。通过气体渗透应力敏感性实验,纠正了致密油藏应力敏感性的错误,对致密砂岩油藏的开发具有重要意义。

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