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Application of Velocity-Dependent Relative Permeability for Modeling Gas- Condensate Reservoirs: Field Example

机译:速度依赖性相对渗透性对气体冷凝水储层的应用:现场示例

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In recent years there has been a growing interest in accurately modelling the condensate banking phenomena in gas-condensate reservoirs to better predict production performances. The velocity- dependent relative permeability (VDRP) concept is one of the methodologies to replicate well production performance reflecting both condensate banking phenomena and velocity effect in gas-condensate reservoirs. In this paper, we present the result of a fine-scale compositional reservoir simulation study by introducing VDRP model validated against the actual field production data from a gas-condensate reservoir called S-Tuff Formation in Minami-Nagaoka Gas Field in Japan. A comprehensive data acquisition program was implemented during the long-term production test of the S-Tuff formation to enable the detailed evaluation of production performance and near-wellbore fluid behavior in the reservoir. The program included the measurements of flowing and shut-in bottomhole pressures, surface flow data and fluid sampling. The ultimate objective was to accurately predict the field production performance by an established reservoir simulation model through history matching. The fine-scale compositional reservoir simulation study showed that VDRP model was required to obtain reasonable match with production data, including BHPs and GOR, whilst it was not achieved by the model with conventional gas-oil relative permeability curves because the simulated FBHP fell far below the observed data when the FBHP was below dewpoint. Hence, the study suggested that improvement of gas-oil relative permeability by velocity effect occurred during production. It was also shown that the well productivity impairment due to condensate banking in VDRP model was not as severe as in the case where the conventional fixed gas-oil relative permeability was used. In this study, the VDRP concept was adopted to evaluate the impact of condensate banking and velocity effect, and its methodology was validated using the actual field production data and its history matching. This study will contribute further improvement of performance prediction for similar gas-condensate reservoirs.
机译:近年来,在准确地建模气体冷凝水储层中的冷凝水银现象以更好地预测生产表演,已经越来越兴趣。速度依赖性相对渗透率(VDRP)概念是复制良好生产性能的方法之一,反映了气体冷凝水储层中的冷凝物银行现象和速度效应。在本文中,我们通过引入验证的VDRP模型从日本南纳卡冈天然气场中的气凝矿储层验证的VDRP模型验证的VDRP模型来介绍微尺度组成储层模拟研究。在S-Tuff形成的长期生产试验期间实施了全面的数据采集计划,以便在储层中详细评估生产性能和近井眼流体行为。该程序包括流动和关闭底孔压力,表面流量数据和流体采样的测量。最终目标是通过历史匹配准确地预测建立的储层模拟模型的现场生产性能。细尺寸的组成储层模拟研究表明,VDRP模型需要与包括BHP和GOR的生产数据获得合理匹配,同时由于模型与传统的气体 - 油相对渗透率曲线没有实现,因为模拟的FBHP远低于下降当FBHP低于露点时观察到的数据。因此,该研究表明,在生产过程中,通过速度效应提高气体 - 油相对渗透性。还表明,由于使用传统的固定气体 - 油相对渗透性的情况下,由于VDRP模型中的冷凝水库而导致的良好生产力损伤并不严重。在这项研究中,采用VDRP概念来评估冷凝水库和速度效应的影响,并使用实际现场生产数据及其历史匹配验证其方法。该研究将有助于进一步改善类似气凝液储层的性能预测。

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