首页> 外文会议>Abu Dhabi International Petroleum Exhibition Conference >Wax Deposition and Hydrate Transport Dynamic Simulations on an Oil Pipeline - Experiences Applying Novel Models for Flow Assurance Assessment
【24h】

Wax Deposition and Hydrate Transport Dynamic Simulations on an Oil Pipeline - Experiences Applying Novel Models for Flow Assurance Assessment

机译:油管道沉积和水合物运输动态模拟 - 应用新型模型的流量保证评估

获取原文

摘要

To minimize capital costs, operating companies are choosing to produce oil and gas through longer and longer subsea tie-backs. Transportation of multiphase gas, oil and aqueous mixture over long pipelines under high pressure and low subsea temperatures present some unique challenges. One of the most important challenges in flow assurance for such more common long pipeline designs is the possibility of blockage due to hydrate formation and/or wax deposition. This paper discusses results using the newly developed wax deposition and hydrate transport models for a pre-FEED study. The models demonstrated are integrated into a generic and well proven multiphase dynamic simulator framework designed to be used for pre-FEED and FEED studies for a green oil field as well as to trouble shoot production challenges and simulate production of an already producing field. LedaFlow~(TM) is the multiphase, transient simulator that was used during the study. It contains a framework which easily allowed implementation of the new modules for wax and hydrate. Wax deposition and hydrate transport are two important challenges for pipeline design and operations with waxy oil fluids that are prone to hydrate formation. An accurate model for quantifying the wax deposition and hydrate transport processes is essential to assure secure and safe transportation of these hydrocarbons. In addition, providing accurate predictions of not only the pressure drop along the pipeline but also of the flow behavior during the transport will help to optimize the development schemes, avoiding over-design. There are several options for modeling both processes, however, for the evaluation reported here not only the process itself is important, but to model dynamic operational scenarios is also important. For this study a waxy and hydrate forming stream was selected. This stream comes from a single stage separator in an offshore facility. The new wax model includes some key features, such as the non-Newtonian nature of the waxy oil, the growth of the wax layer and the effect on heat transfer throughout the pipeline. It is based on a known model from the literature, however, it brings a fundamental new framework for simulating the effect of wax on multiphase flow as it benefits from all the functionalities of the multiphase flow simulator like transient operations, accurate thermal modeling including use of heat tracing. All of this has been considered in our study of normal operations. In the hydrate transport model, mass transfer during hydrate formation, the hydrate former/water depletion in the pipeline and the slurry viscosity with hydrate particles have all been considered.
机译:为尽量减少资本成本,运营公司正在选择通过更长且更长的海底系背部生产石油和天然气。在高压和低海底温度下,长管道的多相气体,油和含水混合物的运输存在一些独特的挑战。这种更常见的长管道设计的流动保证中最重要的挑战之一是由于水合物形成和/或蜡沉积而阻塞的可能性。本文讨论了使用新开发的蜡沉积和水合物运输模型进行了前饲料研究的结果。演示的模型集成到通用且经过良好的经过验证的多相动态模拟器框架中,旨在用于绿色油田的前饲料和进料研究以及故障拍摄生产挑战并模拟已经产生的领域的生产。 LEDAFLOW〜(TM)是在研究期间使用的多相,瞬态模拟器。它包含一个框架,可轻松允许实现蜡和水合物的新模块。蜡沉积和水合物运输是管道设计和与易于水合物形成的蜡质油液的两个重要挑战。用于量化蜡沉积和水合物运输过程的准确模型对于确保这些碳氢化合物的安全和安全运输至关重要。此外,不仅提供了沿着管道的压力下降的准确预测,而且在运输过程中的流动行为也有助于优化开发方案,避免过度设计。有几个选择两个过程的选项,然而,对于此处报告的评估不仅是过程本身很重要,而是模型动态操作场景也很重要。对于该研究,选择了蜡质和水合物形成物流。该流来自海上设施中的单级分离器。新的蜡模型包括一些关键特征,例如蜡质油的非牛顿性质,蜡层的生长以及整个管道的热传递的影响。它基于来自文献的已知模型,但是,它为模拟蜡对多相流的效果来实现一个基本的新框架,因为它从多相流动模拟器等瞬态操作中的所有功能都有益,准确的热建模包括使用热跟踪。在我们对正常运营的研究中,所有这些都被考虑。在水合物运输模型中,在水合物形成期间的传质,在管道中的水合物以前/水耗水和具有水合物颗粒的浆料粘度已经考虑。

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