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A Comparative Study on Sand Transport Modeling for Horizontal Multiphase Pipeline

机译:水平多相管道输沙模型的比较研究

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摘要

Presence of sand causes adverse effects on hydrocarbon production, pipeline erosion and problems at wellbore. If the problems persist, production may be stopped and delayed. This imposes workover cost. Hence, operating expenses increase and revenue reduces. There is no explicit calculation algorithm for sand transportation modeling readily available in flow simulators. Therefore, this study aims to develop an Excel-based spreadsheet on sand transportation to predict sand critical velocity and onset of sand deposition based on published literature. The authors reviewed nine sand transportation models in pipelines and made comparisons on the selected models based on various criteria. Four of which were then developed into a sand modeling spreadsheet. The four models are the Turian et al. (1987), Oudeman (1993), Stevenson et al. (2002b) Model and Danielson (2007). The spreadsheet presently focuses on sand production prediction in horizontal two-phase flow. The Danielson model can predict sand hold up while the other models estimate grain size transportable and critical velocity of sand. Flowing pipeline properties, sand properties and results of simulations like using OLGA (for flow rate, velocity and superficial velocity of different phases) are necessary inputs of the spreadsheet. A user selects any model based on different operating conditions or user preference. The spreadsheet was validated by comparing data extracted from the research papers. Sensitivity analyses can also be performed with the spreadsheet by manipulating the parameters such as grain size and flow rate. This review is useful for flow simulators' development to include sand transport modeling.
机译:沙子的存在会对油气生产,管道侵蚀和井眼问题产生不利影响。如果问题仍然存在,则生产可能会停止并延迟。这增加了修井费用。因此,运营费用增加而收入减少。在流量模拟器中没有可用于砂粒运输建模的显式计算算法。因此,本研究旨在基于已发表的文献,开发一个基于Excel的关于沙粒运输的电子表格,以预测沙粒的临界速度和沉积的开始。作者回顾了管道中的9种输沙模型,并根据各种标准对所选模型进行了比较。然后将其中四个开发成砂模型电子表格。四个模型是Turian等。 (1987),Oudeman(1993),Stevenson等人。 (2002b)Model和Danielson(2007)。该电子表格目前专注于水平两相流中的出砂量预测。丹尼尔森模型可以预测砂粒的滞留量,而其他模型则可以估算出颗粒的可运输性和临界流速。流动的管道特性,砂子特性以及类似使用OLGA的模拟结果(用于不同相的流速,速度和表观速度)是电子表格的必要输入。用户根据不同的操作条件或用户偏好选择任何模型。通过比较从研究论文中提取的数据对电子表格进行了验证。还可以通过处理诸如晶粒尺寸和流速之类的参数,使用电子表格进行灵敏度分析。这篇评论对于流量模拟器的开发包括砂传输模型很有用。

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