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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >A hierarchical Bayesian approach to modelling fate and transport of oil released from subsea pipelines
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A hierarchical Bayesian approach to modelling fate and transport of oil released from subsea pipelines

机译:从海底管道释放的命运和释放石油运输的分层贝叶斯方法

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The significant increase in global energy demand has drawn the attention of oil and gas industries to exploration of less-exploited resources. Arctic offshore region is reported to hold a great proportion of un-discovered oil reserves. While this can be a promising opportunity for the industry, more exploration activities will also increase the possibility of oil spill during the entire process including production and transport. A comprehensive risk assessment based on Ecological Risk Assessment (ERA) method is then required during the planning and operation stages of future Arctic oil production facilities. In the exposure analysis stage, ERA needs an evaluation of the oil concentration profile in all media. This paper presents a methodology for predicting the stochastic fate and transport of spilled oil in ice-infested regions. For this purpose, level IV fugacity models are used to estimate the time-variable concentration of oil. A hierarchical Bayesian approach (HBA) is adopted to estimate the probability of time to reach a concentration (TRTC) based on the observations made from a fugacity model. To illustrate the application of the proposed method, a subsea pipeline accident resulting in the release of 100 t of Statfjord oil into the Labrador Sea is considered as the case study. (C) 2018 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:全球能源需求的显着增加引起了石油和天然气行业对较少开采资源的探讨。据报道,北极海上地区占据了未发现的石油储备比例。虽然这可能是该行业的有希望的机会,但更多的勘探活动也将增加整个过程中溢油的可能性,包括生产和运输。然后,在未来北极油生产设施的规划和运营阶段,需要基于生态风险评估(ERA)方法的全面风险评估。在曝光分析阶段,ERA需要评估所有培养基中的油浓度谱。本文介绍了预测冰侵染区中溢油的随机命运和运输方法的方法。为此目的,级别的级别模型用于估计油的时变浓度。采用分层贝叶斯方法(HBA)来估计基于由逃逸模型的观察结果来估计达到浓度(TRTC)的时间概率。为了说明所提出的方法的应用,将导致100t释放的STATFJORD IL释放到拉布拉多进入拉布拉多州的水管事故被认为是案例研究。 (c)2018化学工程师机构。 elsevier b.v出版。保留所有权利。

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