Significant Impact of Non H-C Gases (NHG) on Reservoir Fluid of a Jurassic, HPHT and Tight Carbonate Discovery in North of Kuwait: A Case Study of a Sour and Critical Fluid Characteristics and Fluid Compartmentalization

S. Al-Dousari, Haifa Al-Bader, Ahmed M. Al-Otaibi, Sarah Al-Shuaib, Bahaskar Chakrabarti
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Abstract

The objective of this paper is to show the effect of non-HC gases NHG on critical fluid characterization of HPHT discovered deep Jurassic reservoir in north Kuwait in addition to Fluid characterization and compartmentalization with objective of assessing HC potential, well deliverability and reservoir fluid & rock characteristics. Jurassic reservoirs in the state of Kuwait are deep and tight with High-Pressure and High-Temperature (HPHT) environment. The discovery well was drilled targeting the Marrat formation to prove hydrocarbon in this area. The well was successfully completed & tested and then a complete set of surface & subsurface data was acquired including production measurements and downhole P/T gauge data. The produced fluid was found highly sour and of critical-nature Therefore, a detailed fluid characterization process plus a fully-integrated G&G and Engineering analyses were performed to distinguish the fluid nature whether it is Volatile Oil or Gas Condensate and to prove reservoir and fluid compartmentalization using multiple PVT experiments and different analog wells from North Kuwait. Moreover, historical reservoir pressure and well performance for all the wells in this field were tracked and analyzed as t the discovered well was followed with an intensive appraisal campaign with variance in reservoir/fluids characteristics with objective of assessing HC potential for further Development plan to support achieving the strategic production targets. The four wells connected to one of Jurassic Facilities and ready for further development. By integrating both reservoir and fluid analysis, The Northern part observed better reservoir quality and production performance, while reservoir layers are thinning toward the southern part of the structure with the appearance of organic content. The PVT depletion experiments along with compositional analysis and phase envelop all indicated reservoir fluid type is Volatile oil, where saturation pressure is sensitive to reservoir temperature and percentage of non-hydrocarbon gases H2S & CO2. As a result, the fluid found to be highly volatile oil with very high GOR. Fluid compartmentalization is also observed in this field between the three wells as the fluids were lighter towards the south, which will be confirmed after testing the fourth well that was initially drilled to prove the structure boundary/extension. Tremendous exploration efforts and activities resulted in remarkable Jurassic light oil discovery with substantial addition of proven reserves and commercial production potential, which will definitely support achieving the strategic production targets. The exploratory and appraisal wells are currently connected to one of Kuwait's Jurassic facilities handling high concentrations of H2S. After the completion of exploration campaign and completing the fully-Integrated Engineering analyses the reservoir is ready to be transferred to the Hosting Field development.
非H-C气体(NHG)对科威特北部侏罗系、高温高压和致密碳酸盐岩储层流体的重大影响——以含酸临界流体特征和流体划分为例
本文的目的是研究非HC气体NHG对在科威特北部发现的深侏罗系HPHT油藏临界流体表征的影响,以及流体表征和划分,目的是评估HC潜力、井产能和储层流体和岩石特征。科威特侏罗系储层深致密,高压高温环境。该发现井的钻探目标是Marrat地层,目的是为了在该地区探明油气储量。该井成功完井并进行了测试,随后获得了一套完整的地面和地下数据,包括生产测量数据和井下P/T测量数据。因此,研究人员进行了详细的流体表征过程,并进行了全面整合的G&G和工程分析,以区分流体性质是挥发性油还是凝析油,并通过多次PVT实验和来自北科威特的不同模拟井来证明储层和流体的分区。此外,对该油田所有井的历史油藏压力和井况进行了跟踪和分析,随后对发现的井进行了密集的油藏/流体特征变化评估,目的是评估HC潜力,为进一步的开发计划提供支持,以实现战略生产目标。这四口井与侏罗纪设施中的一口相连,并准备进一步开发。储液综合分析表明,北部储层质量和生产动态较好,而储层向南部逐渐变薄,呈现有机质含量。PVT衰竭实验、组分分析和相包络分析均表明储层流体类型为挥发油,其饱和压力对储层温度和非烃气体H2S和CO2的百分比敏感。结果发现,该流体为高挥发性油,GOR非常高。在该油田,三口井之间也观察到流体分隔现象,因为向南方向的流体较轻,这将在对第四口井进行测试以证明结构边界/延伸后得到证实。巨大的勘探努力和活动导致了侏罗纪轻油的显著发现,并大大增加了已探明储量和商业生产潜力,这必将支持实现战略生产目标。这些探井和评估井目前连接到科威特侏罗纪油田的一个处理高浓度H2S的设施。在完成勘探活动并完成全面综合工程分析后,储层准备转移到托管油田开发。
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