Complex cross-segment modelling approach applying for productive increase of horizontal wells with multi-stage hydraulic fracturing in Achimov formation conditions

D. I. Torba, A. Lisitsyn, A. Gula, A. Bochkarev, A. Glazyrina, Yuriy S. Berezovskiy, D. Metelkin
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Abstract

Summary Achimov deposits development is always a challenging process that frequently requires application of innovative approaches. Horizontal drilling in non-uniform lithology is frequently accompanied by circulation, wellbore stability losses and other complications. Hydraulic fracturing stimulation does not always result in productivity increase, which reduces profitability of development. Due to the incomplete understanding of geological and geomechanical specifics of Achimov deposits, - formations with complex heterogenous structure, low permeability, presence of low-amplitude structural dislocations, - the controlled use of features of formation is hindered and, in turn, makes it necessary to develop an innovative strategy of their surveillance and stimulation. In purpose to optimize an existing development strategy of Achimov deposits in Vingayakhinskoe oilfield, we have developed and applied an approach involving complex cross-segment modelling. 1D and 3D geomechanical models have been built in view of the applied approach. Development of hydraulic fracturing designs, efficiency of which has been evaluated with respect to such reservoir modeling results as predicted production rate and cumulative production, have been the next step, performed for different geological and geomechanical conditions. Thus, the principal feature of applied approach is coupling between geomechanical modeling, complex multivariant hydraulic fracturing modeling and reservoir modeling with the target to maximize production.
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复杂横段建模方法在Achimov地层多级水力压裂水平井增产中的应用
Achimov矿床的开发一直是一个具有挑战性的过程,经常需要应用创新的方法。在非均匀岩性的水平井钻井中,经常会出现循环、井筒稳定性损失等问题。水力压裂增产并不一定能提高产能,从而降低了开发的盈利能力。由于对Achimov矿床地质和地质力学特征的不完全了解,地层具有复杂的非均质结构,低渗透率,存在低幅度结构位错,因此阻碍了对地层特征的控制利用,反过来,有必要制定一种创新的监测和增产策略。为了优化Vingayakhinskoe油田Achimov矿床的现有开发策略,我们开发并应用了一种涉及复杂横段建模的方法。根据应用方法,建立了一维和三维地质力学模型。针对不同的地质和地质力学条件,开发水力压裂设计,并根据预测产量和累积产量等油藏建模结果对其效率进行评估。因此,该方法的主要特点是地质力学建模、复杂多变量水力压裂建模和储层建模之间的耦合,以实现产量最大化。
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