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A new reservoir simulation approach for fractured gas-condensate reservoirs

机译:裂缝性凝析气藏的新型储层模拟方法

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To correctly simulate and predict the performance of fractured gas condensate reservoirs, based on the previous related studies, a new numerical dual porosity compositional simulation approach, suitable for fractured gas-condensate reservoirs, is proposed in this paper. Firstly, the proper pseudo-components should be correctly divided, and then single-matrix block models are built to establish the pseudo capillary pressure curve through comparing the single porosity model with the dual-porosity model. Based on the results, the dual-porosity compositional simulation method is studied. The study shows that dual-porosity compositional models can be used for fractured gas-condensate reservoirs without water drive, but not for reservoirs with strong water drive, whereas the model with pseudo capillary pressure curve can be correctly used for all kinds of fractured gas-condensate reservoirs. This new method was applied for a fractured gas-condensate reservoir of Tazhong No.1 gas field in the Tarim Basin, NW China, and the performance history of this field was well matched with the fitting error less than 5%.
机译:为了正确地模拟和预测裂缝性凝析气藏的性能,本文在现有相关研究的基础上,提出了一种适用于裂缝性凝析气藏的数值双重孔隙组成数值模拟新方法。首先,应正确地划分适当的假组分,然后通过将单孔隙度模型与双孔隙度模型进行比较,建立单矩阵块模型以建立假毛细管压力曲线。基于结果,研究了双孔隙组成模拟方法。研究表明,双孔隙度组成模型可用于无水驱的裂缝性凝析气藏,但不适用于强水驱油藏,而具有伪毛细管压力曲线的模型可正确用于各种裂缝性气藏。冷凝水库。该新方法已应用于中国塔里木盆地塔中1气田的裂缝性凝析气藏,该气田的生产历史与拟合误差小于5%吻合良好。

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