首页> 外文会议>Corrosion conference and expo >Correlating Flow Dynamics and Fluid Characteristics with Internal Corrosion Management in Pipelines
【24h】

Correlating Flow Dynamics and Fluid Characteristics with Internal Corrosion Management in Pipelines

机译:管道内部腐蚀管理与流动动力学和流体特性相关

获取原文

摘要

For a given production system, the corrosion mitigation philosophy is usually established based on the fluid properties and the operating parameters pre-identified within the Basis of Design (BOD). Information in the BOD comes from reservoir simulation, process/flow modeling, and thermodynamic/ compositional fluid analyses. These data have limited accuracy and a wide variability throughout the field life. Very often and due to capital expenditure (CapEx) constraints, most of production facilities primarily utilize carbon steel lines with corrosion mitigation provided by injection of chemical inhibitors. When using carbon steel and inhibition, a successful operation requires active corrosion monitoring to keep tabs on effectiveness of the chemical inhibition program. The monitoring program is a key to proactively identify new corrosion mechanisms surfacing during the field operation. Due to the wide variety of operating conditions, it is not practical to run laboratory corrosion tests simulating every production scenario. Most of the corrosion predictions rely heavily on the laboratory test results; however, the tests have limitations and may not precisely cover all of the corrosion mechanisms in predicting field performance. Depending on new mechanisms identified by the corrosion monitoring program, corrective actions are usually taken. These actions may include additional chemical treatments and mechanical systems such as pigging to bring the corrosion under control. This paper discusses some of the interesting corrosion mechanisms that have emerged in production systems due to changes in operating conditions during field operations. Corrosion monitoring data with fluid analyses, flow modeling, and additional laboratory testing have been effectively used to understand the corrosion mechanism and develop solutions for control. This work focuses on internal corrosion control of carbon steel in production and transportation lines with single or multiphase flow.
机译:对于给定的生产系统,通常根据设计基准(BOD)中预先确定的流体特性和操作参数来建立腐蚀缓解原理。 BOD中的信息来自储层模拟,过程/流量建模以及热力学/成分流体分析。这些数据在整个现场寿命中具有有限的准确性和广泛的可变性。很多时候,由于资本支出(CapEx)的限制,大多数生产设施主要使用碳钢生产线,并通过注入化学抑制剂来缓解腐蚀。当使用碳钢和缓蚀剂时,成功的操作需要积极的腐蚀监测,以密切关注化学缓蚀程序的有效性。监控程序是主动识别在现场操作过程中出现的新腐蚀机制的关键。由于多种多样的操作条件,因此无法模拟每个生产场景来进行实验室腐蚀测试。大多数腐蚀预测在很大程度上取决于实验室的测试结果。但是,这些测试有局限性,可能无法准确地涵盖预测现场性能的所有腐蚀机理。根据腐蚀监控程序确定的新机制,通常会采取纠正措施。这些措施可能包括其他化学处理和机械系统,例如清管,以控制腐蚀。本文讨论了由于现场操作过程中操作条件的变化而在生产系统中出现的一些有趣的腐蚀机理。通过流体分析,流动建模和其他实验室测试得到的腐蚀监测数据已被有效地用于理解腐蚀机理和开发控制解决方案。这项工作着重于单相或多相流生产和运输线中碳钢的内部腐蚀控制。

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