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Modelling viscous fingering during reinjection in geothermal reservoirs

机译:在地热储层回注过程中模拟粘性指法

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摘要

Viscous fingering is a hydrodynamic instability that can occur when two fluids of differing viscosity come into contact, and leads to complex intrusions (or fingers) of one fluid into the other. We are interested here in this instability within the context of reinjection into a geothermal reservoir, where the viscosity of the injected fluid differs from that in the reservoir due to its higher temperature. We first perform a classical linear stability analysis, which considers the early time growth of temperature perturbations. Here the governing equations can be simplified through linearisation, and this linear stability analysis shows which wave number, and hence fingering displacement shape, will initially be most unstable. Results illustrate that there are two key parameters that define the stability: the Peclet number (which is proportional to injection rate), and the log-mobility ratio (which is related to injection enthalpy). These critical parameters provide limits on injection temperature and flow rate that will be stable against the fingering instability for a reservoir of given temperature, and we see that the values of these suggest that viscous fingering will always likely occur in practice. We also use the TOUGH2 numerical simulator (Pruess et al., 1999) to solve the full (i.e. non-linearised) governing equations, and confirm that viscous fingering is indeed occurring at such low injection rates. Moreover, it enables us to examine cases where reservoir permeability is heterogeneous. Under these circumstances, for heterogeneity indices beyond some critical value, fingering displacements are dominated by the permeability structure (the precise value of which should factor in inherent numerical dissipation present in the TOUGH2 simulator). (C) 2016 Elsevier Ltd. All rights reserved.
机译:粘性指法是一种流体动力不稳定性,当两种不同粘度的流体接触时会发生,并导致一种流体复杂地侵入(或指状)另一种流体。在这里,我们对重新注入地热储层中的这种不稳定性感兴趣,由于地层温度较高,注入的流体的粘度不同于储层中的粘度。我们首先执行经典的线性稳定性分析,其中考虑了温度扰动的早期增长。在这里,可以通过线性化简化控制方程,并且此线性稳定性分析表明,哪个波数以及因此的指形位移形状最初最不稳定。结果表明,有两个决定稳定性的关键参数:佩克利数(与注射速率成正比)和对数迁移率(与注射焓相关)。这些关键参数提供了对注入温度和流速的限制,对于给定温度的储层,该限制将稳定以防止指状不稳定,并且我们看到这些值表明在实践中总是可能发生粘性指状。我们还使用TOUGH2数值模拟器(Pruess等,1999)求解完整的(即非线性的)控制方程,并确认在如此低的注入速率下确实发生了粘性指法。此外,它使我们能够研究储层渗透率非均质的情况。在这种情况下,对于超过某个临界值的异质性指标,指状位移主要由渗透率结构决定(其精确值应考虑TOUGH2仿真器中固有的数值耗散)。 (C)2016 Elsevier Ltd.保留所有权利。

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