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Simulations for CO2 Injection Projects With Compositional Simulator

机译:用成分模拟器模拟二氧化碳注入项目

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The need for CO2 emissions reduction at a large scale globally implies that CO2 injection into the subsurface be undertaken in a greater variety of geological environments that has been the case previously. Often when the storage reservoirs are saline aquifers, exploration data for proposed injection sites are extremely sparse. The special behaviour of CO2-water/brine systems (mutual solubility and chemical reactivity) adds complex processes, such as dry-out, salting-out, chemical reactions to the dynamic model. Simulation in these situations is one of few means of assessing an injection site and testing various scenarios. The accurate description of physics and chemistry in numerical simulation tools is fundamental for understanding processes, as well as designing appropriate injection or mitigation strategies. We present simulations of CO2 injection into saline aquifers with a fully compositional code that has been expanded and enhanced to include specific phenomena, such as dryingout and salting-out. The examples illustrate the importance of pre-injection studies, as the wrong injection strategy may severely impact injectivity, putting the project in jeopardy.
机译:全球范围内大规模减少CO2排放的需求意味着向地下注入CO2的情况要像以前那样在多种多样的地质环境中进行。通常,当储层是盐水层时,建议的注入点的勘探数据极为稀疏。 CO2-水/盐水系统的特殊行为(互溶性和化学反应性)为动态模型增加了复杂的过程,例如变干,盐析,化学反应。在这些情况下进行仿真是评估注入位置并测试各种情况的几种方法之一。数值模拟工具中对物理和化学的准确描述是理解过程以及设计适当的注入或缓解策略的基础。我们用完全组成的代码(已扩展和增强到包括特定现象,如变干和盐析)来模拟向盐水层中注入CO2的模拟。这些示例说明了进样前研究的重要性,因为错误的进样策略可能会严重影响进样量,从而使该项目处于危险之中。

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