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Screen sand retaining precision optimization experiment and a new empirical design model

机译:筛沙保持精度优化试验及新的经验设计模型

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In the design of sand retaining precision, the existing design methods consider unilateral factors or have limited applicability. A series of experimental tests for screen sand retaining precision optimization were performed. An empirical model was worked out by experiment results fitting. The experimental tests were performed using screen evaluation experimental apparatus with 35 types of formation sand samples and 9 types of screen samples. For all sand samples with different sizes, the optimum sand retaining precisions were determined by calculating the sand-passed ratios and flow capacity index under different sand retaining precisions. The experiment results were fitted, and a new model was put forward to design reasonable screen precision for a given formation sand, considering the median size, the characteristic size of fine composition and uniformity coefficient of the sand and real production condition. The model has been applied in more than 20 wells and the effect is very good. The model considers most important factors affecting sand control effect and has excellent adaptability. And the model provides an effective method to optimize the screen precision without the need of performing lots of experiment tests and is easy to be used.
机译:在防砂精度设计中,现有的设计方法考虑了单方面因素或适用性有限。进行了一系列筛网筛分精度优化的实验测试。通过实验结果拟合建立了一个经验模型。使用筛分评估实验设备对35种地层砂样品和9种筛分样品进行了实验测试。对于所有不同尺寸的砂样,通过计算不同砂型保持率下的砂通过率和流量指数,可以确定最佳砂型保持率。拟合了实验结果,并提出了一个新模型来设计给定地层砂的合理筛分精度,其中考虑了中值尺寸,细粒特征尺寸和砂的均匀系数以及实际生产条件。该模型已应用于20余口井,效果非常好。该模型考虑了影响防砂效果的最重要因素,具有很好的适应性。该模型提供了一种有效的方法来优化屏幕精度,而无需执行大量的实验测试,并且易于使用。

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