阿拉斯加北坡首次聚合物驱中加热管聚合物诱导结垢的实验研究(二

Anshul Dhaliwal, Yin Zhang, A. Dandekar, S. Ning, J. Barnes, W. Schulpen
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引用次数: 4

摘要

在阿拉斯加北坡Milne Point的Schrader Bluff稠油油藏中,聚合物驱试验正在进行中。试点的结果令人鼓舞。然而,作业者主要关心的是聚合物对突破后生产系统的影响,特别是换热器中的结垢。本工作采用多实验方法研究聚合物诱导的污染在生产流体的动态和静态状态下的严重程度,以确定安全的操作条件。在模拟流体在热交换器中停留时间的动态流体流动状态下,在不同的表面温度(165-350°F)下,进行了动态尺度环(DSL)测试,以研究聚合物造成的污垢。使用内部设计和制造的新型实验装置,在相似的皮肤温度(165-250°F)下进行静态沉积试验。结果发现,在250-350°F的较高皮肤温度下,DSL测试中观察到管阻塞,而在165-200°F的测试中,即使在更长的测试周期内,也没有出现任何管阻塞。沉积试验表明,随着皮肤温度的升高,沉积速率普遍增大,聚合物的存在加重了污垢。铜管在表层温度为165-200°F时表现最佳,而不锈钢管在表层温度为250°F时表现最佳。这些实验也体现了溶液浊点的影响,当皮肤温度高于溶液浊点时,沉积率明显增加。这项研究为实地行动提供了实际指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Investigation of Polymer-Induced Fouling of Heater Tubes in the First-Ever Polymer Flood on Alaska North Slope Part II
A polymer flood pilot has been ongoing in the Schrader Bluff viscous oil reservoir at Milne Point on the Alaska North Slope. The results from the pilot are encouraging. However, a major concern of the operator is the influence of polymer on the production system after breakthrough, especially the fouling in heat exchangers. This work applies a multiexperimental approach to study the severity of polymer-induced fouling in both dynamic and static states of produced fluids to determine safe operating conditions. Dynamic scale loop (DSL) tests were conducted to study fouling due to polymer at different skin temperatures (165–350°F) in a dynamic state of fluid flow where the fluids’ flow mimics the residence time of fluids in the heat exchanger of the field pilot. Static deposit tests were also conducted at similar skin temperatures of 165–250°F using a novel experimental apparatus designed and built in-house. It was found that at higher skin temperatures of 250–350°F, tube blocking was observed in the DSL tests, whereas the tests at 165–200°F did not show any tube blocking, even in a more extended test period. The deposit test showed that the deposit rate generally increases with skin temperature, and the presence of polymer aggravates the fouling. The copper tube performs best when the skin temperatures are 165–200°F, while the stainless steel tube performs best at a skin temperature of 250°F. These experiments also manifested the influence of the cloudpoint of the solution as the deposit rate increased significantly when the skin temperature was higher than the solution cloudpoint. The study provides a source of practical guidance to the field operations.
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