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An Improved Steam Injection Model with the Consideration of Steam Override

机译:考虑蒸汽覆盖的改进的蒸汽注入模型

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摘要

The great difference in density between steam and liquid during wet steam injection always results in steam override, that is, steam gathers on the top of the pay zone. In this article, the equation for steam override coefficient was firstly established based on van Lookeren’s steam override theory and then radius of steam zone and hot fluid zone were derived according to a more realistic temperature distribution and an energy balance in the pay zone. On this basis, the equation for the reservoir heat efficiency with the consideration of steam override was developed. Next, predicted results of the new model were compared with these of another analytical model and CMG STARS (a mature commercial reservoir numerical simulator) to verify the accuracy of the new mathematical model. Finally, based on the validated model, we analyzed the effects of injection rate, steam quality and reservoir thickness on the reservoir heat efficiency. The results show that the new model can be simplified to the classic model (Marx-Langenheim model) under the condition of the steam override being not taken into account, which means the Marx-Langenheim model is corresponding to a special case of this new model. The new model is much closer to the actual situation compared to the Marx-Langenheim model because of considering steam override. Moreover, with the help of the new model, it is found that the reservoir heat efficiency is not much affected by injection rate and steam quality but significantly influenced by reservoir thickness, and to ensure that the reservoir can be heated effectively, the reservoir thickness should not be too small.
机译:在湿蒸汽注入过程中,蒸汽和液体之间的密度差异很大,总是导致蒸汽超控,即,蒸汽聚集在开采区的顶部。在本文中,首先基于van Lookeren的蒸汽超驰理论建立了蒸汽超驰系数方程,然后根据更现实的温度分布和产油区的能量平衡推导了蒸汽带和热流体带的半径。在此基础上,建立了考虑蒸汽超驰的储层热效率方程。接下来,将新模型的预测结果与另一个分析模型和CMG STARS(成熟的商业油藏数值模拟器)的预测结果进行比较,以验证新数学模型的准确性。最后,基于验证的模型,我们分析了注入速率,蒸汽质量和储层厚度对储层热效率的影响。结果表明,在不考虑蒸汽超驰的情况下,新模型可以简化为经典模型(马克思-朗根海姆模型),这意味着马克思-朗根海姆模型对应于该新模型的特殊情况。与Marx-Langenheim模型相比,新模型由于考虑了蒸汽覆盖,因此更接近实际情况。此外,在新模型的帮助下,发现储层热效率受注入速率和蒸汽质量的影响不大,但受储层厚度的影响很大,为了确保能有效加热储层,储层厚度应不能太小。

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