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首页> 外文期刊>Journal of Petroleum Science & Engineering >Quantitative study on the stress sensitivity of pores in tight sandstone reservoirs of Ordos basin using NMR technique
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Quantitative study on the stress sensitivity of pores in tight sandstone reservoirs of Ordos basin using NMR technique

机译:使用NMR技术对鄂尔多斯盆地紧密砂岩储层应力敏感性的定量研究

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摘要

For tight sandstone reservoirs, the pore structure is sensitive to the stress variations during the production process. The alternation of pore structure influences the petrophysical properties and therefore the dynamic flow of tight sandstone reservoirs. In this research, Nuclear Magnetic Resonance (NMR) technique is employed to quantitatively study the pore volume variation under different confining pressures. Not only during the compression process, this research also investigated the sandstone pore sensitivity to stress during the recovery process of rock samples, which is equally important and happens during the production process when the formation pressure is building up due to the temporary well shut-in or water injection. The core samples selected from Ordos basin are first tested routinely for basic parameters like porosity, permeability and detrital components, and then through both compression and recovery processes where the pressure decreases and increases, respectively. It is found that the core samples with high permeability show stronger stress sensitivity of pores than those with low permeability due to the higher content of large pores. Besides permeability, detrital components and interstitial material can also affect the stress sensitivity of pores. During the recovery process, the low recovery degree of pore volume is related to the recoverable pore size (mainly smaller size pores) and the narrow distribution range of recovered pores. Furthermore, the power function relationship and the exponential relationship are suggested to evaluate the variation of pore volume in compression and recovery process, respectively. The results demonstrated that the compressibility of larger pores is bigger than that of smaller pores. During the compression process, the higher permeability rocks, containing a higher content of larger pores, are easier to be compressed, and has a greater decrease in permeability. Besides, the recoverability of the total pore volume after compression is mainly controlled by smaller pores, which results in the lower recoverability of the total pore volume and the permeability for the higher permeability core samples.
机译:对于紧密砂岩储层,孔隙结构对生产过程中的应力变化敏感。孔隙结构的交替影响岩石物理性质,因此影响了紧密砂岩储层的动态流动。在该研究中,采用核磁共振(NMR)技术来定量地研究不同的限制压力下的孔体积变化。不仅在压缩过程中,该研究还研究了岩石样品的恢复过程中砂岩孔对应力的敏感性,这同样重要,并且在生产过程中发生时,当由于临时关闭而建立了生产过程时或注水。从鄂尔多斯盆地中选择的核心样本是常规测试孔隙率,渗透率和滴乳组分的基本参数,然后通过压缩和恢复过程分别降低并增加。结果发现,具有高渗透性的核心样品显示出孔的较强的应力敏感性而不是由于大孔的含量较高而具有低渗透性的孔隙。除了渗透性,脱滴组分和间质材料也可以影响孔隙的应力敏感性。在恢复过程中,孔体积的低回收度与可回收的孔径(主要尺寸尺寸孔)和回收的孔的窄分布范围有关。此外,建议分别评估压缩和恢复过程中孔体积的变化的功率函数关系和指数关系。结果表明,较大孔的可压缩性大于较小孔的压缩性。在压缩过程中,含有较高孔的较高孔的较高渗透性岩石更容易被压缩,并且具有更大的渗透性降低。此外,压缩后总孔体积的可回收性主要由较小的孔控制,这导致总孔体积的可回收性和较高渗透性核心样品的渗透性。

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