李宗源, 倪小明, 石延霞, 霍丽芬, 李佳峰, 张少勇. 马必东区块水力喷射分段压裂工艺优化与应用[J]. 煤矿安全, 2021, 52(12): 78-83.
    引用本文: 李宗源, 倪小明, 石延霞, 霍丽芬, 李佳峰, 张少勇. 马必东区块水力喷射分段压裂工艺优化与应用[J]. 煤矿安全, 2021, 52(12): 78-83.
    LI Zongyuan, NI Xiaoming, SHI Yanxia, HUO Lifen, LI Jiafeng, ZHANG Shaoyong. Optimization and application of hydraulic injection segmental fracturing process in Mabidong Block[J]. Safety in Coal Mines, 2021, 52(12): 78-83.
    Citation: LI Zongyuan, NI Xiaoming, SHI Yanxia, HUO Lifen, LI Jiafeng, ZHANG Shaoyong. Optimization and application of hydraulic injection segmental fracturing process in Mabidong Block[J]. Safety in Coal Mines, 2021, 52(12): 78-83.

    马必东区块水力喷射分段压裂工艺优化与应用

    Optimization and application of hydraulic injection segmental fracturing process in Mabidong Block

    • 摘要: 马必东区块埋深大、应力高、煤体结构相对复杂,前期约有35%水平井分段压裂施工中存在破裂困难、施工压力高、砂堵等问题。为此,通过对马必东区块压裂施工难点分析,有针对性地开展了水力喷射分段压裂工艺、煤层段不测井条件下差异化压裂点优选、低伤害降阻压裂液、压裂施工参数等方面的研究。研究结果表明:优选的扩径喷枪水力喷射改造方式可以有效降低水平井施工压力,更利于有效加砂;“滑溜水+活性水”压裂液组合使用方式,可以有效降阻、降低伤害;建立的压裂点钻井参数优选标准,通过伽马、气测、导向位置等钻井指标优选合适的压裂点,利于水平井压裂造缝。现场实践表明:优选的扩径式水力喷射压裂工艺及参数对马必东区块高应力、煤体结构复杂区域针对性较强,试验井MPX-3井在流压3.18 MPa情况下日产气量达到14 230 m3。

       

      Abstract: Due to the large buried depth, high stress and relatively complex coal structure in Mabidong block, about 35% of horizontal wells have problems such as difficult fracturing, high construction pressure and sand plugging during the stage fracturing, therefore, based on the analysis of the difficulties of fracturing construction in the block, targeted research was carried out in the aspects of hydraulic jet staged fracturing technology, differentiated fracturing point optimization under the condition of coal seam without logging, low damage and resistance reduction fracturing fluid, fracturing construction parameters and so on. The results show that the optimized expansion gun hydraulic jet reconstruction method can effectively reduce the construction pressure of horizontal wells, and is conducive to effective sand addition. Combined use of “slippery water + active water” fracturing fluid can effectively reduce resistance and damage; the established drilling parameter optimization standard of fracturing point can select the appropriate fracturing point through gamma, gas measurement, guiding position and other drilling indexes, which is conducive to the fracturing of horizontal wells. The field practice shows that the optimized expanded hydraulic jet fracturing process and parameters are highly targeted to the area with high stress and complex coal structure in the block, and the daily gas output of MPX-3 well in the test well reaches 14 230 m3 under the flow pressure of 3.18 MPa.

       

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