综合储层的地质、地震属性和产量,调整井间面积

A. Zhumabekov, Z. Liu, V. S. Portnov, X. Wei, X. Chen
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引用次数: 0

摘要

储层的地震、地质和流动特征的动态模型是评估钻新井潜力的主要工具。静态地质模型主要基于井眼资料,并结合生产动态的动态分析。它们用于确定新钻井位置的重新开发和调整;然而,这些模型很少包含地震数据。因此,很难控制井间地质模型的变化,从而导致井位配置和预测结果不太理想。为了提高调整区剩余油含量的开发水平,我们开发了一种新的综合分析方法,将静态沉积模型(包括微相分析(以及其他储层和地震特性))与生产行为相结合。在这里,我们通过(1)建立有利于静态地质分析的区域来说明这个新过程;(2)研究完井潜力和非生产井情况;(3)利用地震和沉积资料进行井间分析;(4)确定受地震和地质研究限制的潜在地点,以及油田的初步生产;(5)对新井开发方案提出建议。
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INTEGRATING THE GEOLOGY, SEISMIC ATTRIBUTES, AND PRODUCTION OF RESERVOIRS TO ADJUST INTERWELL AREAS
—Dynamic models of the seismic, geological, and flow characteristics of a reservoir are the main tool used to evaluate the potential of drilling new infill wells. Static geological models are mainly based on borehole data combined with dynamic analyses of production dynamics. They are used to determine the redevelopment of and adjustments to new drilling locations; however, such models rarely incorporate seismic data. Consequently, it is difficult to control the changes in geological models between wells, which results in the configuration of well positions and predicted results being less than ideal. To improve the development of adjusted areas in terms of their remaining oil contents, we developed a new integrated analysis that combines static sediment modelling, including microfacies analysis (among other reservoir and seismic properties), with production behaviours. Here, we illustrate this new process by (1) establishing favourable areas for static geological analysis; (2) studying well recompletion potential and the condition of non-producing wells; (3) conducting interwell analyses with seismic and sedimentary data; (4) identifying potential sites constrained by seismic and geological studies, as well as initial oilfield production; (5) providing suggestions in a new well development plan.
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