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首页> 外文期刊>Journal of natural gas science and engineering >Estimation of hydraulic fracture volume utilizing partitioning chemical tracer in shale gas formation
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Estimation of hydraulic fracture volume utilizing partitioning chemical tracer in shale gas formation

机译:页岩气形成中利用分区化学示踪剂估算水力压裂体积

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Hydraulic fracture geometry is of the interest in optimizing stimulation treatment and forecasting production potential. Current diagnostic tools such as tiltmeter and microseismic are insufficient in evaluating fracture geometry. Knowing that gas from the shale reservoir has a much higher mobility than fracldng fluid, partitioning chemical tracer is employed so that tracer data can be obtained earlier and more complete. The proposed approach is examined by synthetic numerical simulations. On the semi-log plot, tracer production declined tail clearly divides into two straight-line segments. Applying the moment of methods to the entire tracer production data gives the total volume of hydraulic fracture and the invaded matrix swept by the tracer due to leak-off. Additionally, extrapolating the first segment of tracer decline tail using the exponential law yields a volume that is close to the actual hydraulic fracture volume, especially when fracture permeability is several orders larger than matrix permeability. (C) 2016 Elsevier B.V. All rights reserved.
机译:水力压裂几何形状对于优化增产措施和预测生产潜力具有重要意义。当前的诊断工具(例如倾斜仪和微震)不足以评估裂缝的几何形状。已知来自页岩储层的气体比压裂液具有更高的迁移率,因此采用了分区化学示踪剂,以便可以更早,更完整地获得示踪剂数据。通过综合数值模拟对提出的方法进行了研究。在半对数图上,示踪剂产量下降的尾巴清楚地分为两个直线段。将方法的力矩应用到整个示踪剂生产数据中,可以得出水力压裂的总体积以及由于泄漏而被示踪剂清除的侵入基质。此外,使用指数定律推断示踪剂下降尾部的第一段会产生接近实际水力压裂体积的体积,尤其是当裂缝渗透率比基质渗透率大几个数量级时。 (C)2016 Elsevier B.V.保留所有权利。

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