首页> 外文会议>Society of Petroleum Engineers Asia Pacific Oil Gas Conference and Exhibition >Integrated Approach to Unconventional Reservoir Characterization: Key for Understanding Hydrocarbon Production Challenges in Kerogen and Tight- Fractured Deep Carbonate Complex in Kuwait.
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Integrated Approach to Unconventional Reservoir Characterization: Key for Understanding Hydrocarbon Production Challenges in Kerogen and Tight- Fractured Deep Carbonate Complex in Kuwait.

机译:非传统储层特征的综合方法:在科威特在科因根和紧密的深碳酸根综合体中了解碳氢化合物生产挑战的关键。

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The unique Kimmeridgian-Oxfordian complex of unconventional and fractured carbonates has been tested to be prolific producer of gas, condensate and light oil in different wells discovered in various North Kuwait fields. The challenge is to characterize the complex reservoir flow system where critical reservoir parameters such as reservoir type, porosity and permeability characteristics, and production and pressure data can vary substantially. The relationship between the natural fractures and the tight matrix in controlling effective system conductivity in reservoir flow units are the key features which dictate the nature of inflow mechanisms thus the production performance. The paper deals with developing an effective methodology which integrates the variations in critical reservoir properties of the low porosity yet naturally-fractured carbonate reservoir. The drill stem test (DST) results in some wells were successful without stimulation, while in other wells the DSTs were unsuccessful in spite of advance and repeated stimulations, thus categorizing these plays as geologically-complex, tight gas condensate reservoirs where out of ordinary stimulation techniques may be needed to activate the fractured matrix. Pressure transient analyses and flow regime interpretation of the successfully-tested wells confirm the dual porosity flow-system and the fractured nature of the reservoir. In this paper, the authors will discuss a new integrated approach for understanding the production and pressure behavior in light of the unique unconventional reservoir characteristics along with the fractured reservoir properties. Dual-layer and dual poro-perm models for pressure transient analysis have been applied extending the previous study of relationship developed between the productivity index (PI) and the total organic carbon (TOC). The proposed integrated methodology can significantly improve the current approach to production optimization, reservoir management strategy, completion, and stimulation design in fractured tight gas condensate reservoirs in Kuwait as well as in other regions.
机译:独特的Kimmeridgian-oxfordian综合体的非传统和裂缝碳酸盐的复合物已被测试为各种北科威特领域的不同井中的煤气,冷凝水和轻油的多产性生产商。挑战是表征复杂的储层流系统,其中储层类型,孔隙率和渗透性特性等关键储层参数以及生产和压力数据的临界储层参数可以显着变化。在控制储层流动单元中控制有效系统电导率的自然裂缝与紧密矩阵之间的关系是指示流入机制的性质的关键特征,从而使生产性能。本文涉及开发一种有效的方法,其整合了低孔隙率和天然裂缝碳酸盐贮存器的临界储层性质的变化。钻井干预(DST)导致一些孔的情况下成功而不刺激,而在其他井中,DSTS尽管提前和重复的刺激,因此将这些作用视为地质复杂,紧密气凝块储层,其中普通刺激可能需要技术来激活裂缝矩阵。成功测试的井的压力瞬态分析和流动制度解释确认了储层的双孔隙率流量系统和骨折性质。在本文中,作者将讨论一种新的综合方法,以了解鉴于独特的非传统储层特性以及裂缝储层特性的生产和压力行为。用于压力瞬态分析的双层和双孔渗入模型已延长先前的工作率指数(PI)和总有机碳(TOC)之间发展的研究。该拟议的综合方法可以显着提高当前的生产优化,水库管理策略,完成和刺激设计的方法,在科威特和其他地区的骨折紧熔液储存器中。

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