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Simulation of effective fracture length of prepad acid fracturing considering multiple leak-off effect

机译:考虑多重泄漏效应的前垫板酸压有效裂缝长度模拟

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For the purpose of improving the accuracy and effectiveness of acid fracturing design for carbonate reservoirs with developed natural fractures, an acidizing fluid flow and reaction model taking the multiple leak-off effect of natural fracture, wormhole and matrix into account was established according to the liquid phase reaction equilibrium principle and the local reaction equilibrium principle after the dynamic change of fracture geometry in the process of fracture created by prepad fluid was simulated in the classical pseudo-three dimensional mathematical model of fracture propagation. Then, the acid fracturing stimulation of a case well on site was taken as an example. The newly developed model was used to simulate the filtration process of acidizing fluid in fractures and the dynamic etching morphology of acidic rocks during the acidizing fluid injection of prepad acid fracturing. The effective length of etched fractures was determined by analyzing the concentration change of acidizing fluid along the direction of hydraulic fracture length and the threshold concentration of residual acidizing fluid comprehensively, and then it was compared with the interpretation result of pressure buildup test. And the following research results were obtained. First, in the process of acid fracturing in fractured–porous reservoirs, the acidizing fluid filtration velocity along the direction of fracture length is not constant and the filtration velocity curve fluctuates in a serrated shape. And the acidizing fluid filtration velocity where etched wormholes meet natural fractures is commonly higher than that in matrix. Second, acidizing fluid is lost seriously and the effective distance of acidizing fluid gets short significantly during the acid fracturing of fractured–porous reservoirs. Third, acid fracturing in the verification well is remarkable in blockage removing and stimulation, and its well test interpretation results are consistent with the simulation interpretation results provided by the newly developed mathematical model. It is indicated that this newly developed model is reliable. In conclusion, the mathematical model of prepad acid fracturing which considers multiple leak-off effect is more suitable for acid fracturing simulation of fractured–porous reservoirs.
机译:为提高天然裂缝发育的碳酸盐岩储层酸压设计的准确性和有效性,根据液体情况,建立了考虑天然裂缝,虫洞和基质多重泄漏影响的酸化液流及反应模型。在经典的裂纹扩展伪三维数学模型中,模拟了预填充流体在裂缝过程中裂缝几何形状动态变化后的相反应平衡原理和局部反应平衡原理。然后,以现场井的酸压裂刺激为例。新开发的模型用于模拟裂缝中酸化液的过滤过程以及在预压裂酸化酸液注入过程中酸性岩石的动态蚀刻形态。综合分析沿水力压裂长度方向的酸化液浓度变化和残余酸化液的临界浓度,确定了酸蚀裂缝的有效长度,并与压力建立试验的解释结果进行了比较。并获得了以下研究结果。首先,在裂缝性多孔储层的酸裂过程中,沿裂缝长度方向的酸化流体过滤速度不是恒定的,过滤速度曲线呈锯齿状波动。腐蚀的虫洞遇到自然裂缝的地方的酸化流体过滤速度通常高于基质中的速度。其次,在裂缝性多孔储层的酸化压裂过程中,酸化液损失严重,酸化液的有效距离明显缩短。第三,验证井中的酸压裂在堵漏和增产方面效果显着,其试井解释结果与新开发的数学模型提供的模拟解释结果一致。表明该新开发的模型是可靠的。综上所述,考虑到多重泄漏效应的预压裂酸裂数学模型更适合于裂缝性多孔储层的酸裂模拟。

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