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Porosity-permeability relationships in modeling salt precipitation during CO2 sequestration: Review of conceptual models and implementation in numerical simulations

机译:二氧化碳封存过程中盐析出的孔隙度-渗透率关系:概念模型的回顾和数值模拟的实现

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Previous model studies indicate that injectivity can be impaired by salt precipitation near the injection well during CO2 injection (Pruess and Muller, 2009). These results are largely determined by the relationship between permeability and salt precipitation which is developed by Velma and Pruess (1988). Liu et al. (2013) presents a new relationship for permeability change owing to salt precipitation near a CO2 injection well, which differs from previous relationships in that it considers the fact that the salt precipitation occurs only in pore space occupied by brine during the precipitation process, and in that it is based on well-established relative-permeability relationships for two-phase flow in porous media. This work reviews the conceptual models based on which these porosity-permeability relationships are developed. The Liu et al. (2013) model is implemented in the multi-phase reservoir simulator TOUGH2, and simulation is conducted and compared with results in Pruess and Muller (2009). Results show that the two constitutive relations give opposite conclusions in whether CO2 dry-out will clog the reservoir. In contrast to the conclusion from Pruess and Muller (2009) that permeability will decrease to essentially zero near the injection well, the new simulation predicts much less reduction in permeability. Discussions are given at the end on the evaluation of each relation and relevant experimental evidences. (C) 2016 Elsevier Ltd. All rights reserved.
机译:先前的模型研究表明,在二氧化碳注入过程中,注入井附近的盐沉淀会削弱注入能力(Pruess and Muller,2009)。这些结果很大程度上取决于Velma和Pruess(1988)提出的渗透率与盐析之间的关系。刘等。 (2013年)提出了一个新的渗透率变化的关系,该变化是由于二氧化碳注入井附近的盐沉淀引起的,这与以前的关系不同,它认为盐沉淀仅发生在沉淀过程中被盐水占据的孔隙空间中,并且这是基于多孔介质中两相流的公认的相对渗透率关系。这项工作回顾了概念模型,在这些模型的基础上开发了这些孔隙率-渗透率关系。刘等。 (2013年)模型在多相油藏模拟器TOUGH2中实现,进行了模拟并与Pruess和Muller(2009年)的结果进行了比较。结果表明,两种本构关系得出的结论是,CO2变干是否会阻塞储层。与Pruess和Muller(2009)得出的结论相反,在注入井附近,渗透率将降低至基本为零,新的模拟预测渗透率的降低要少得多。最后讨论了每种关系的评估和相关的实验证据。 (C)2016 Elsevier Ltd.保留所有权利。

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