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Numerical Modeling of Foam Carrying Sand Transport in Multifactor Horizontal Wells

The solution of wellbore multiphase flow models has an important position in oil–gas field development. However, the solution of multiphase flow models often involves a series of complicated situations such as interphase mass and energy transfer, surface problems, and so on. Foam carrying sand parti...

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Published in:ACS omega 2024-04, Vol.9 (17), p.18777-18785
Main Authors: Yu, Zhenye, Yang, Changhua, Cheng, Pengfei, Wang, Huipeng, Zhang, Yongwei, Wang, Chen
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container_end_page 18785
container_issue 17
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container_title ACS omega
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creator Yu, Zhenye
Yang, Changhua
Cheng, Pengfei
Wang, Huipeng
Zhang, Yongwei
Wang, Chen
description The solution of wellbore multiphase flow models has an important position in oil–gas field development. However, the solution of multiphase flow models often involves a series of complicated situations such as interphase mass and energy transfer, surface problems, and so on. Foam carrying sand particles in the wellbore is a solid, liquid, and gas three-phase cylinder flow problem. To solve this problem, we developed a computational fluid dynamics-discrete element method model based on the traditional N–S equations to track the streamline of the foam fluid and sand particles in the wellbore. On this basis, we investigated the influence of three factors, i.e., foam and sand properties and wellbore parameters, on the sand carrying rate of foam. The results show that whether the sand mound at the bottom of wells that can be dispersed is mainly affected by the properties of foam. The location of sand deposition in the wellbore and the effectiveness of foam in sand transportation are mainly influenced by the wellbore parameters and sand properties.
doi_str_mv 10.1021/acsomega.3c06203
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title Numerical Modeling of Foam Carrying Sand Transport in Multifactor Horizontal Wells
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