...
首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Maximum Drag Reduction Asymptote for Surfactant-Based Fluids in Circular Coiled Tubing
【24h】

Maximum Drag Reduction Asymptote for Surfactant-Based Fluids in Circular Coiled Tubing

机译:圆形螺旋管中基于表面活性剂的流体的最大减阻渐近线

获取原文
获取原文并翻译 | 示例
           

摘要

Surfactants are superior to polymers in reducing drag and their advantages are very well established. As drag reducers, several factors, such as concentration, temperature, salinity, shear rate, etc., can affect their behavior. Other unique factors relevant to surfactants may include tubing diameter (scale-up effect), head group structure, counterion, charge, etc. Although, drag reduction envelope is customarily employed to investigate drag reduction phenomena, it is defined only for polymeric fluids in both straight and coiled tubing and for surfactant-based (SB) fluids in straight tubing. No such envelope is available for SB fluids in coiled tubing. The present research aims at experimentally investigating the drag reduction characteristics of the most widely used Aromox APA-T surfactant-based fluids. It is a highly active surfactant used as gelling agent in aqueous and brine base fluids. Flow data are gathered using small and large scale flow loops. Straight and coiled tubing with various sizes (1.27 cm to 7.30 cm o.d.) and curvature ratios (0.01 to 0.031) covering the field application range are utilized. The results show that SB fluids exhibit superior drag reduction characteristics. Their behavior is significantly affected by surfactant concentration, shear, tubing size, and geometry. Higher drag reduction is seen in straight tubing than in coiled tubing and increasing curvature ratio yields higher friction pressure losses. In coiled tubing, SB fluids exhibit better drag reduction characteristics than Shah and Zhou maximum drag reduction (MDR) asymptote for polymeric fluids. Therefore, a new maximum drag reduction asymptote is developed using data gathered in 1.27 cm o.d. tubing. The proposed correlation agrees with Zakin MDR asymptote for SB fluids in straight tubing where the curvature ratio is set to be zero. Employing the proposed correlation, a modified drag reduction envelope can be used to evaluate drag reduction characteristics of SB fluids.
机译:表面活性剂在减少阻力方面优于聚合物,并且其优点已得到充分确立。作为减阻剂,一些因素(例如浓度,温度,盐度,剪切速率等)会影响其性能。与表面活性剂有关的其他独特因素可能包括管道直径(放大效应),头基结构,抗衡离子,电荷等。尽管减阻包膜通常用于研究减阻现象,但仅针对两种流体中的聚合物流体进行了定义。直管和连续油管以及直管中的基于表面活性剂的(SB)流体。对于连续油管中的SB流体,没有这样的外壳。本研究旨在通过实验研究最广泛使用的Aromox APA-T表面活性剂基流体的减阻特性。它是一种高活性的表面活性剂,用作水性和盐水基液中的胶凝剂。使用小型和大型流量循环收集流量数据。使用了各种尺寸(外径为1.27厘米至7.30厘米)和覆盖现场应用范围的曲率比(0.01至0.031)的直管和盘管。结果表明,SB流体表现出优异的减阻特性。它们的行为受到表面活性剂浓度,剪切力,油管尺寸和几何形状的显着影响。与直管相比,直管中的减阻效果更高,曲率比的增加会产生更高的摩擦压力损失。在连续油管中,SB流体的减阻特性比Shah和Zhou的聚合物流体最大减阻(MDR)渐近线更好。因此,使用1.27 cm o.d的数据开发了一种新的最大减阻渐近线。管道。对于曲率比设为零的直管中的SB流体,拟议的相关性与Zakin MDR渐近线一致。利用提出的相关性,可以使用修改后的减阻包络线来评估SB流体的减阻特性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号