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首页> 外文期刊>Ground water >Influence of Hydraulic Fracturing on Overlying Aquifers in the Presence of Leaky Abandoned Wells
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Influence of Hydraulic Fracturing on Overlying Aquifers in the Presence of Leaky Abandoned Wells

机译:废弃漏水井存在下水力压裂对上覆含水层的影响

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摘要

The association between hydrocarbon-rich reservoirs and organic-rich source rocks means unconventional oil and gas plays usually occur in mature sedimentary basinswhere large-scale conventional development has already taken place. Abandoned wells in proximity to hydraulic fracturing could be affected by increased fluid pressures and corresponding newly generated fractures that directly connect (frac hit) to an abandoned well or to existing fractures intersecting an abandoned well. If contaminants migrate to a pathway hydraulically connected to an abandoned well, upward leakage may occur. Potential effects of hydraulic fracturing on upward flow through a particular type of leaky abandoned wellabandoned oil and gas wells converted into water wells were investigated using numerical modeling. Several factors that affect flow to leaky wells were considered including proximity of a leaky well to hydraulic fracturing, flowback, production, and leaky well abandonment methods. The numerical model used historical records and available industry data for the Eagle Ford Shale play in south Texas. Numerical simulations indicate that upward contaminant migration could occur through leaky converted wells if certain spatial and hydraulic conditions exist. Upward flow through leaky converted wells increased with proximity to hydraulic fracturing, but decreased when flowback and production occurred. Volumetric flow rates ranged between 0 and 0.086m(3)/d for hydraulic-fracturing scenarios. Potential groundwater impacts should be paired with plausible transport mechanisms, and upward flow through leaky abandoned wells could be unrelated to hydraulic fracturing. The results also underscore the need to evaluate historical activities.
机译:富含碳氢化合物的储层和富含有机质的烃源岩之间的联系意味着非常规油气开采通常发生在成熟的沉积盆地中,那里已经进行了大规模的常规开发。靠近水力压裂的废弃油井可能会受到流体压力升高和相应的新产生的裂缝的影响,这些裂缝直接将(压裂)连接至废弃油井或与废弃油井相交的现有裂缝。如果污染物迁移到液压连接到废弃井的通道上,则可能会发生向上泄漏。使用数值模型研究了水力压裂对通过特定类型的泄漏废弃废弃的废弃油气井转化为水井的向上流动的潜在影响。考虑了影响渗漏井流动的几个因素,包括渗漏井与水力压裂的接近程度,返排,生产和渗漏井废弃方法。该数字模型使用历史记录和可用的德克萨斯州南部鹰滩页岩油层的行业数据。数值模拟表明,如果存在一定的空间和水力条件,向上的污染物迁移可能会通过泄漏的转换井发生。通过泄漏的转换井的向上流量随着水力压裂的临近而增加,但在发生返排和生产时减少。对于水力压裂方案,体积流量介于0到0.086m(3)/ d之间。潜在的地下水影响应与合理的运输机制结合起来,通过泄漏的废弃井的向上流动可能与水力压裂无关。结果还强调了评估历史活动的必要性。

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  • 来源
    《Ground water》 |2016年第6期|781-792|共12页
  • 作者单位

    Baylor Univ, Dept Geosci, One Bear Pl 97354, Waco, TX 76798 USA;

    Baylor Univ, Dept Geosci, One Bear Pl 97354, Waco, TX 76798 USA|Baylor Univ, Dept Mech Engn, One Bear Pl 97354, Waco, TX 76798 USA;

    Baylor Univ, Dept Geosci, One Bear Pl 97354, Waco, TX 76798 USA;

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