Semi-analytical modeling for water injection well in tight reservoir considering the variation of waterflood - Induced fracture properties – Case studies in Changqing Oilfield, China
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Semi-analytical modeling for water injection well in tight reservoir considering the variation of waterflood - Induced fracture properties – Case studies in Changqing Oilfield, China

机译:浅析水液中注水井的半分析模型,考虑水料诱导的骨折特性变异 - 常青油田案例研究

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AbstractIt is well acknowledged that water injection may induce formation fracturing in tight reservoir, and the injection well may experience shrinking fracture length (SFL) and variable fracture conductivity (VFC) during fracture-falloff period, which shows the bi-storage behavior. However, available pressure-transient analysis (PTA) models hardly consider these effects (SFL, VFC and bi-storage behavior) on pressure-transient response, which can lead to erroneous results. This paper aims at presenting an innovative approach to model the water injection wells considering the dynamic characteristics of waterflood-induced fracture (WIF).We first modeled fluid flow between reservoir and the fracture which characterized by fracture-storage coefficient and fracture-face skin factor, and flow between wellbore and the fracture which represented by wellbore-storage coefficient and choked-fracture skin factor. In addition, the effects of SFL and VFC were included by finite difference method. A semi-analytical solution was then derived to model injection well with waterflood-induced fracture (IWWIF). Finally, this methodology has been successfully applied in Changqing oilfield, China.There are six flow regimes for the IWWIF model in the tight reservoir, including wellbore-storage regime, transitional-flow regime, fracture-storage regime, the second transitional regime, linear flow regime and bilinear flow regime. Compared to current models, the bi-storage phenomenon is discovered and validated as two straight lines with unit slope in the pressure derivate curve of type plot. The WIF that closely links with the wellbore can be regarded as an “expanding wellbore”, which illustrates the reason that the “wellbore-storage coefficients” are increased by up to several orders of magnitude in a great many of water injection wells. The VFC behavior could cause the upward of pressure-derivative curve, which is generally recognized as the characteristic of closed boundary condition while the variable fracture-storage effect may occur because of SFL. In addition, the relation between matched fracture-storage coefficient and fracture length is given, which provides us another way to obtain the probable length of WIF. Finally, this new model has been successfully used to evaluate well performance and reservoir characteristics based on bottom-hole pressure (BHP) history of five field cases in Changqing oilfield, China.Graphical abstractWe model the water injection well with waterflood-induced fracture by characterizing the shrinking fracture length (SFC), variable fracture conductivity (VFC) and bi-storage behavior in fracture-falloff period.Compared to current models, the bi-storage phenomenon is discovered and validated as two straight lines with unit slope in the pressure derivate curve. The VFC behavior could cause the upward of pressure-derivative curve, which is generally recognized as the characteristic of closed boundary condition while the variable fracture-storage effect may occur because of SFL.Display Omitted展开▼
机译:<![CDATA [ 抽象 它确认注水可能会在紧密水库中诱导压裂,并注射井可能会经历折衷骨折骨折 - 衰减期间长度(SFL)和可变断裂电导率(VFC),其显示了双储存行为。然而,可用的压力瞬态分析(PTA)模型在压力瞬态响应上几乎不考虑这些效果(SFL,VFC和BI-Storage行为),这可能导致错误的结果。本文旨在提出一种创新的方法来模拟水注入井的考虑水料诱导的骨折的动态特性(WIF)。 IWWIF模型中有六个流动制度紧密水库,包括井筒储存制度,过渡流程,骨折储存制度,第二过渡制度,线性流动制度和双线性流动制度。与当前模型相比,将发现和验证的双储存现象作为两条直线,其压力衍生曲线的单元斜率。与井筒紧密联系的WIF可以被视为“扩展井筒”,其示出了“井筒储存系数”在众多水喷射井中增加了多达几个数量级的原因。 VFC行为可能导致压力导数曲线向上,这通常被识别为闭边界条件的特性,而由于SFL可能发生可变骨折储存效果。另外,给出了匹配的骨折储存系数和断裂长度之间的关系,为我们提供了另一种方法以获得WIF的可能长度。最后,这种新模型已成功地用于评估基于Changqing Oilfield的五个现场案例的井底压力(BHP)历史的井性能和储层特征。 图形抽象 我们通过表征收缩裂缝长度(SFC),可变裂缝导电性(VFC )在骨折 - 衰减期间的双储存行为。对于当前模型,发现和验证了双储存现象,作为两个直线,在压力衍生曲线中具有单位斜率。 VFC行为可能导致压力导数曲线向上,这通常被识别为闭边界条件的特性,而由于SFL可能发生可变骨折储存效果。 显示省略

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