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Non-equilibrium phase behavior of hydrocarbons in compositional simulations and upscaling

机译:成分模拟和放大过程中碳氢化合物的非平衡相行为

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摘要

Numerical models widely used for hydrocarbon phase behavior and compositional flow simulations are based on assumption of thermodynamic equilibrium. However, it is not uncommon for oil and gas-condensate reservoirs to exhibit essentially non-equilibrium phase behavior, e.g., in the processes of secondary recovery after pressure depletion below saturation pressure, or during gas injection, or for condensate evaporation at low pressures. In many cases, the ability to match field data with equilibrium model depends on simulation scale. The only method to account for non-equilibrium phase behavior adopted by the majority of flow simulators is the option of limited rate of gas dissolution (condensate evaporation) in black oil models. For compositional simulations, no practical yet thermodynamically consistent method has been presented so far except for some upscaling techniques in gas injection problems. Previously reported academic non-equilibrium formulations have a common drawback of doubling the number of flow equations and unknowns compared with the equilibrium formulation. In the paper, a unified thermodynamically consistent formulation for compositional flow simulations with non-equilibrium phase behavior model is presented. Same formulation and a special scale-up technique can be used for upscaling of an equilibrium or non-equilibrium model to a coarse-scale non-equilibrium model. A number of test cases for real oil and gas-condensate mixtures are given. Model implementation specifics in a flow simulator are discussed and illustrated with test simulations. A non-equilibrium constant volume depletion algorithm is presented to simulate condensate recovery at low pressures in gas-condensate reservoirs. Results of satisfactory model matching to field data are reported and discussed.
机译:广泛用于烃相行为和组成流模拟的数值模型是基于热力学平衡的假设。但是,油气凝析油藏表现出基本上非平衡的相态并不少见,例如在低于饱和压力的压力耗尽之后,在注气期间或在低压下凝析油蒸发的二次采收过程中。在许多情况下,将现场数据与平衡模型进行匹配的能力取决于模拟规模。大多数流量模拟器采用的解决非平衡相行为的唯一方法是在黑油模型中选择限制气体溶解(冷凝水蒸发)速率的选项。对于成分模拟,到目前为止,除气体注入问题中的某些放大技术外,尚未提出实用但热力学一致的方法。先前报道的学术性非平衡公式的一个共同缺点是,与平衡公式相比,流动方程和未知数的数量增加了一倍。在本文中,提出了一种用于非平衡相行为模型的成分流动模拟的统一热力学一致公式。可以使用相同的公式和特殊的按比例放大技术将平衡或非平衡模型按比例放大为粗尺度非平衡模型。给出了许多实际石油和天然气-凝析油混合物的测试用例。讨论了流量仿真器中的模型实现细节,并通过测试仿真进行了说明。提出了一种非平衡恒定体积消耗算法,以模拟低压凝析气藏中的凝结水回收。报告并讨论了与现场数据令人满意的模型匹配结果。

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