产砂开始的多尺度研究

A. Lv, H. L. Ramandi, H. Roshan
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引用次数: 1

摘要

尽管进行了数十年的数值、分析和实验研究,但出砂仍然是石油行业面临的重大挑战。在所有的技术中,解析解在工业应用中得到了更多的普及,因为数值分析是耗时的;在许多情况下,计算要求高且解决方案不稳定。另一方面,解析解还有待发展,以更准确地代表岩石的行为。因此,我们开发了一套新的具有应变软化行为的孔隙弹塑性封闭解,以预测井眼周围的应力-应变分布。然后在不同的压缩场景下进行了一组空心圆柱体实验,并进行了三维x射线计算机断层扫描分析了内部结构损伤。将所提出的解析解与实验结果进行了比较,发现模型预测与实验数据吻合较好。通过对渤海湾地区一口井出砂情况的分析,验证了该模型的性能。声波和密度测井以及岩心数据被用来为所提出的分析模型提供输入参数,以预测该井的潜在出砂情况。提出的解决方案预测了一个重要的塑性层的发展,从而证实了该井目前的出砂问题所观察到的出砂量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Multiscale Study on The Onset of Sand Production
Despite decades of numerical, analytical and experimental researches, sand production remains a significant operational challenge in petroleum industry. Amongst all techniques, analytical solutions have gained more popularity in industry applications because the numerical analysis is time consuming; computationally demanding and solutions are unstable in many instances. Analytical solutions on the other hand are yet to evolve to represent the rock behaviour more accurately. We therefore developed a new set of closed-form solutions for poro-elastoplasticity with strain softening behaviour to predict stress-strain distributions around the borehole. A set of hollow cylinder experiments was then conducted under different compression scenarios and 3D X-Ray Computed Tomography was performed to analyse the internal structural damage. The results of the proposed analytical solutions were compared with the experimental results and good agreement between the model prediction and experimental data was observed. The model performance was then tested by analysing the onset of sand production in a well drilled in Bohai Bay in Northeast of China. Acoustic and density log along with core data were used to provide the input parameters for the proposed analytical model in order to predict the potential sanding in this well. The proposed solution predicted the development of a significant plastic zone thus confirming sand production observed by today sanding issue in this well.
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