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Experimental study on stress sensitivity of high‐temperature and high‐pressure sandstone gas reservoirs in Yingqiong Basin

机译:英琼盆地高温高压砂岩气藏应激敏感性的试验研究

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Performing stress‐sensitivity evaluation on a high‐temperature and high‐pressure gas reservoir is essential for correctly understanding the characteristics of physical property changes and reasonably designing the development scheme of a reservoir under stratum conditions. By focusing on six core samples with different physical properties in a gas field in the Yingqiong Basin, stress‐sensitivity experiments have been conducted along with mercury intrusion porosimetry and X‐ray diffraction measurements to study the relationship among porosity, permeability, and effective stress at a temperature of 140°C and effective stress ranging from 2?MPa to 70?MPa. Our results showed that the stress‐sensitivity curve characterized by three‐stage segmentation is primarily affected by average pore radius and mineral composition but has no direct relation with porosity and permeability. Meanwhile, the stress sensitivity of permeability is mainly related to the average pore throat radius and mineral composition of core specimen. The smaller the pore throat radius and the higher the clay content, the stronger the stress sensitivity of permeability. Under high‐temperature and high‐pressure conditions, the stress sensitivities of permeability and porosity can be characterized by power functions although the stress sensitivity of permeability is about 2–11 times higher than that of porosity.
机译:对高温和高压气体储层进行应力敏感性评估对于正确理解物理性质变化的特征以及合理地设计水库的发展方案,这是必不可少的。通过将六个核心样本聚焦在繁月盆地的气田中具有不同物理性质的六个核心样本,已经进行了汞侵入孔隙瘤和X射线衍射测量的应力敏感性实验,以研究孔隙率,渗透性和有效应力之间的关系温度为140°C,有效的应力范围为2≤MPa至70?MPa。我们的研究结果表明,三阶段分割的应激敏感性曲线主要受孔隙半径和矿物组合物的平均影响,但与孔隙率和渗透性没有直接关系。同时,渗透性的应力敏感性主要与核样品的平均孔喉半径和矿物成分有关。孔喉半径越小,粘土含量越高,渗透性的应力敏感性越强。在高温和高压条件下,渗透性和孔隙率的应力敏感性可以通过功率函数表征,尽管渗透性的应力敏感性约为高于孔隙率的2-11倍。

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