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New models for heater wells in subsurface simulations, with application to the in situ upgrading of oil shale

机译:地下模拟中用于加热井的新模型,并应用于油页岩的现场升级

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Downhole electrical heating can be used to achieve the high temperatures required for in situ upgrading of oil shale or oil sands. Heater-well models are needed if this process is to be simulated accurately. The traditional Peaceman approach used for fluid injection and production wells may not be applicable because it does not capture transient effects, which can be important in downhole heater models. Standard models also neglect the effects of heterogeneity and temperature dependence in the rock properties. Here, we develop two new models for representing heater wells in reservoir simulators. The first model is applicable for homogeneous systems with properties that are not temperature dependent. For such cases, we develop a semi-analytical procedure based on Green's functions to construct time-dependent heater-well indexes and heater-block thermal transmissibilities. For the general case, which can include both fine-scale heterogeneity and nonlinearity due to the temperature dependence of rock properties, we present a numerical procedure for constructing the heater-well model. This technique is essentially a near-well upscaling method and requires a local fine-scale solution in the near-well region. The boundary conditions are determined using a localglobal treatment. The accuracy of the new heater-well models is demonstrated through comparison to reference solutions for example problems. The approach is then applied for the coarse-scale modeling of the in situ upgrading of oil shale, which entails a thermalcompositional simulation with chemical reactions. The model is shown to provide an accurate and efficient solution for this challenging problem.
机译:井下电加热可用于实现油页岩或油砂原位改造所需的高温。如果要精确模拟此过程,则需要加热井模型。用于流体注入和生产井的传统Peaceman方法可能不适用,因为它不能捕获瞬态效应,这在井下加热器模型中可能很重要。标准模型还忽略了岩石特性中非均质性和温度依赖性的影响。在这里,我们开发了两个新模型来表示油藏模拟器中的加热井。第一个模型适用于特性与温度无关的均质系统。对于这种情况,我们基于格林函数开发了一个半分析程序,以构造与时间有关的加热器孔指数和加热器块热传递率。对于一般情况,由于岩石特性的温度依赖性,该情况可能同时包含精细尺度的异质性和非线性,我们提出了构建加热器井模型的数值程序。该技术本质上是近井放大方法,并且需要在近井区域中进行局部精细缩放。使用局部全局处理确定边界条件。通过与示例问题的参考解决方案进行比较,证明了新型加热器井模型的准确性。然后将该方法应用于油页岩原位改造的粗尺度建模,这需要通过化学反应进行热组成模拟。该模型显示出可以为这个具有挑战性的问题提供准确而有效的解决方案。

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