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Use of Critical Multiphase Flow Correlation for Bean Surveillance

机译:豆类监测临界多相流动相关性

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A simple technique for investigating choke erosion based on critical multiphase flow correlation has been developed. It utilizes the coefficient (C-constant) in the correlation for determining whether the bean is being eroded or plugged. The coefficient remains fairly constant for a given well but only deviates if the bean is being subjected to erosion or plugging or if the well’s operating point is in the sub-critical flow region. Bean erosion and plugging were simulated using a surface facility-coupled well model constructed with Prosper software. The model showed that the C-constant decreased when the bean was being eroded and increased when the bean was experiencing plugging. Test performance for cases of bean plugging was not available and therefore, the study focussed on bean erosion alone. Actual production test data were used from different fields where choke erosion has been reported in verifying the concept. The technique was also used to back- calculate the effective bean sizes for the wells with eroded bean. It was evident that the wells have been produced with effective bean sizes outside the desired operating window with the attendant reservoir management consequences.
机译:开发了一种简单的技术,用于研究基于临界多相流动相关性的扼流侵蚀。它利用相关系数(C-常数)来确定bean是否被侵蚀或插入。给定井的系数保持相当恒定,但仅偏离豆被侵蚀或堵塞,或者井的操作点处于亚临界流动区域。使用由Prosp Software构造的表面设施耦合的井模拟模拟豆腐和堵塞。该模型表明,当豆子在经历堵塞时,当豆被侵蚀并增加时,C-常数降低。豆类堵塞病例的测试性能不可用,因此,该研究仅限于单独的豆腐侵蚀。在验证概念时报告了扼流侵蚀的不同领域使用实际生产测试数据。该技术还用于支持井的井的有效豆尺寸。很明显,井在所需的操作窗口之外生产的井在随访的水库管理后果外。

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