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Mitigating Flow Assurance Challenges in Deepwater Fields using Active Heating Methods

机译:利用主动加热方法缓解水域田地的流动保障挑战

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Flow assurance challenges, mainly of hydrates and wax depositions, are amongst the key issues that must be resolved and mitigated to ensure that hydrocarbons can be efficiently and economically transported from well to processing facilities. As wells step further away from shore into deeper water, the flow assurance challenges are increasing tremendously due to prevalence of higher pressure and lower temperature conditions. Thus, the development of cutting edge technologies to cater for the ever increasing demand in exploring the hostile and technologically challenging deepwater fields is a matter of great urgency. One of the effective solutions to prevent the formation of wax or hydrates is to use active heating methods. This paper describes an overview of the available active heating methods and mechanisms which are being implemented as thermal management systems for flowline in deepwater fields. It also discusses the thermal performance calculation models available to aid the design and modelling of such systems. Some comparative studies are carried out to determine the advantages and disadvantages of each of the methods to establish a general reference source on the technology that provides the most significant economic impact without compromising the reliability and efficiency of the overall system. Active heating systems have been used in several projects in the North Sea, Gulf of Mexico and Offshore West Africa. This paper also summarizes these projects and their operating experience from open literature. In general, due to their operational flexibility and high efficiency through control of the pipeline temperature above the hydrate formation and wax deposition temperatures, active heating seems to be the most practical, economical and viable solutions in managing flow assurance issues; especially for the development of deepwater fields.
机译:流动保障挑战主要是水合物和蜡沉积,是必须解决和减轻的关键问题,以确保碳氢化合物可以有效地和经济地从加工设施中运输。由于距离岸进入更深的水,因此由于较高的压力和更低的温度条件,流动保证挑战越来越大。因此,开发尖端技术,以满足探索敌对和技术挑战深水田越来越多的需求,这是一个很大的紧迫性问题。防止蜡或水合物形成的有效解决方案之一是使用主动加热方法。本文介绍了可用的主动加热方法和机构的概述,该机构正在被实施为深水场中流动线的热管理系统。它还讨论了可用于帮助这些系统的设计和建模的热性能计算模型。进行了一些比较研究,以确定建立了在技术的一般参考来源的方法中建立一般参考来源的优点和缺点,这在不影响整个系统的可靠性和效率的情况下提供最大的经济影响。主动加热系统已用于北海,墨西哥湾和海外西非的几个项目中。本文还总结了这些项目及其开放文学的运营经验。一般而言,由于它们通过控制水合物形成和蜡沉积温度的管道温度的操作灵活性和高效率,主动加热似乎是管理流动保证问题中最实用,经济和可行的解决方案;特别是对于深水田的发展。

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