挪威海上乳化液性能测试——油的类型和释放条件的重要性

Per S Daling , Merete Øverli Moldestad , Øistein Johansen , Alun Lewis , Jon Rødal
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引用次数: 64

摘要

本文综述了近年来在挪威进行的关于海上溢油乳化的实验室研究和现场试验的主要发现。利用广泛的油类进行的受控的试验台尺度和中尺度盆地实验表明,油的物理化学性质和释放条件是乳化液形成速度、乳化液流变性能和海上自然分散速度的基本决定因素。在过去十年中,在北海和挪威海进行了一系列全面的现场试验,试验释放了各种原油。其中包括海面释放、水下管道泄漏模拟(在低压和无气体的情况下释放石油)和水下井喷模拟(用气体加压石油),深度为100米和850米。现场试验是与NOFO(挪威清洁海洋运营公司协会)、个别石油公司、挪威污染控制管理局(SFT)和矿产管理服务(MMS)合作进行的。在这些野外实验中,SINTEF负责科学设计和监测。试验的主要目的是研究不同原油在不同条件下的泄漏行为,并确定与不同对策技术相关的操作和后勤因素。文中给出了在这些现场试验中得到的溢油乳化数据的实例。现场试验产生的经验数据对于SINTEF的数值模型的验证和开发具有宝贵的价值,用于预测在各种条件下释放的石油的扩散、风化和行为。这些模型广泛用于应急计划和应急分析,以及在泄漏情况和作战行动中作为操作工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Norwegian Testing of Emulsion Properties at Sea––The Importance of Oil Type and Release Conditions

This paper is a review of the major findings from laboratory studies and field trials conducted in Norway in recent years on the emulsification of oils spilled at sea. Controlled bench-scale and meso-scale basin experiments using a wide spectrum of oils have revealed that both the physico-chemical properties of the oils and the release conditions are fundamental determinants of the rate of emulsion formation, for the rheological properties of the emulsion formed and for the rate of natural dispersion at sea.

During the last decade, several series of full-scale field trials with experimental releases of various crude oils have been undertaken in the North Sea and the Norwegian Sea. These have involved both sea surface releases, underwater pipeline leak simulations (release of oil under low pressure and no gas) and underwater blowout simulations (pressurized oil with gas) from 100 and 850 m depth. The field trials have been performed in co-operation with NOFO (Norwegian Clean Seas Association for Operating Companies), individual oil companies, the Norwegian Pollution Control Authority (SFT) and Minerals Management Services (MMS). SINTEF has been responsible for the scientific design and monitoring during these field experiments. The main objectives of the trials have been to study the behaviour of different crude oils spilled under various conditions and to identify the operational and logistical factors associated with different countermeasure techniques.

The paper gives examples of data obtained on the emulsification of spilled oil during these field experiments. The empirical data generated from the experimental field trials have been invaluable for the validation and development of numerical models at SINTEF for predicting the spreading, weathering and behaviour of oil released under various conditions. These models are extensively used in contingency planning and contingency analysis of spill scenarios and as operational tools during spill situations and combat operations.

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