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3D Reservoir Geomechanics Workflow and Its Application to a Tight Gas Reservoir in Western China

机译:3D水库地质力学工作流程及其在中国西部靠汽油藏的应用

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Easy oil has gone and now the focus of exploration and development in China has shifted to tight reservoirs deemed techanically challenging. One of the key challenges in tight reservoirs is how to place and land horizontal wells in sweet spots (with high reservoir quality and completion quality) and how to stage-fracture these wells efficiently to produce these tight reservoirs economically. The paper presents a new 3D reservoir geomechanics workflow that has been applied to a tight gas reservoir in western China. The reservoir is very deep (up to 4500m) and the production rates from the wells are very low. Some hydraulic fracturing had been conducted for vertical exploration wells but the post-fracturing production rates were still not satisfactory. The best chance to produce this tight reservoir is to place horizontal wells in the areas with the best reservoir quality and completion quality and carry out optimized multistage hydraulic fracturing. To this end, a 3D full field geomechanics model was constructed through integration of seismic data, geological structure, core data and log data. This 3D geomechanics model enables a 3D identification of the high completion quality (high fracturability) zones in the reservoir and subseqently placement of a new horizontal well. A 1D mechanical model was then extracted along the planned trajectory from the 3D geomechanics model. Based on the 1D geomechanics model, optimization of the stage-fracturing design was conducted to obtain the optimal number of stages, optimum fracture half length and optimum staging.
机译:Easy Oil已经消失了,现在中国勘探和发展的重点转移到紧身水库被认为是理想的挑战。紧密水库中的一个关键挑战是如何在甜点(储层质量和完工质量高)中放置和落地水平井,以及如何有效地在经济上有效地折断这些井。本文提出了一种新的3D水库地质力学工作流程,应用于中国西部的紧汽油藏。水库非常深(高达4500米),井的生产率非常低。已经为垂直勘探井进行了一些液压压裂,但断裂后的生产率仍然不令人满意。生产这种紧身水库的最佳机会是将水平井放在具有最佳储层质量和完井质量的地区,并进行优化的多级水力压裂。为此,通过集成地震数据,地质结构,核心数据和日志数据来构建3D全场地质力学模型。该3D地质力学模型使储层中的高完井质量(高裂缝性)区域的3D识别能够以及新的水平井的子场地放置。然后沿着3D地质​​力学模型的计划轨迹提取1D机械模型。基于1D地质力学模型,进行了舞台压裂设计的优化,以获得最佳的阶段,最佳裂缝半长和最佳分期。

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