酸化压裂煤体Weibull统计损伤本构关系的改进

Improvement of damage constitutive relationships for acid fracturing coals based on Weibull statistics

  • 摘要: 酸化压裂技术是提高低透煤层透气性的有效途径之一。酸液的腐蚀和劈裂作用是煤体软化和致裂的关键,为探究煤体在酸液侵蚀作用下的破坏机理,采用矿用酸基CO2泡沫压裂液(配方为NA∶K–12=6∶4,起泡剂质量分数为0.6%,稠化剂质量分数为0.6%)进行了原煤试样的压裂液侵蚀试验,获取峰值应力、弹性模量、破坏形态和裂隙发育特征等参数,分析煤体酸化腐蚀过程,并构建了酸化压裂煤体的统计损伤本构模型。结果表明:增加压裂酸液侵蚀时间,煤体的玻璃介质性质会导致其物理结构重组,使得聚合物体系的自由体积增加,提高了煤岩的可压缩性和脆性。随着压裂液侵蚀时间增加,煤体孔隙裂隙内部矿物质的化学反应程度加剧,导致煤体表面矿物质结晶析出量增多,煤体的单轴抗压强度和弹性模量下降幅度增大,表明此配方下的侵蚀煤岩孔隙、裂隙内部连通性较好,煤岩致裂效果受侵蚀时间的影响更为显著,煤体脆性损伤表现明显。采用煤体强度Weibull分布规律,构建了饱和碳酸侵蚀煤体脆性强度的统计损伤本构关系,并通过对该模型关键参量EmF进行准确性验证,表明所建本构关系可准确表征低透煤层在酸化压裂作用下的受力‒变形基本规律。以上研究结果为酸化压裂煤体致裂半径的确定提供了理论计算依据,对压裂钻孔布置起重要指导作用。

     

    Abstract: Acid fracturing technology is one of the effective ways to improve the permeability of low permeability coal seam. The corrosion and splitting effect of acid solution is the key to softening and fracturing of coal. In order to explore the failure mechanism of coal under the action of acid solution, the acid-based CO2 foam fracturing fluid (formula∶NA∶K–12 = 6∶4, foaming agent concentration 0.6%, thickener concentration 0.6%) was used to carry out the fracturing fluid erosion test of raw coal samples, and the peak stress, elastic modulus, failure morphology and fracture development characteristics were obtained. The acidizing corrosion process of coal was analyzed, and the damage statistical constitutive model of acid fracturing coal was constructed. The results show that: Increasing the erosion time of fracturing acid solution, the properties of glass medium of coal body will lead to the reorganization of its physical structure, which increases the free volume of polymer system and improves the compressibility and brittleness of coal rock. With the increase of fracturing fluid erosion time, the chemical reaction degree of minerals in the pores and fissures of coal will be intensified, resulting in the increase of mineral crystallization precipitation on the surface of coal, and the decrease of uniaxial compressive strength and elastic modulus of coal will increase. It shows that the internal connectivity of the pores and fissures of the eroded coal rock under this formula is better, and the fracture effect of coal rock is more significantly affected by the erosion time, and the brittle damage of coal body is obvious. Based on the Weibull distribution of coal strength, the statistical damage constitutive relation of brittle strength of saturated carbonate eroded coal is constructed. The accuracy of the key parameters E, m and F of the model is verified, which shows that the constitutive relation can accurately characterize the basic law of stress-deformation of low permeability coal seam under acid fracturing. The above research results provide theoretical calculation basis for the determination of fracturing radius of acid fracturing coal body, and play an important guiding role in the arrangement of fracturing boreholes.

     

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