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Modeling the Shearing Effect of Flowing Fluid and Wax Ageing on Wax Deposition in Pipelines

机译:模拟流液和蜡老化在管道中蜡沉积的剪切效果

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Wax precipitation and deposition in pipelines is one of the most important flow assurance challenges for the oil and gas industry.Much work has been carried out to model wax deposition as measured by flow loops and other experiments.Models are routinely scaled up to predict the behavior of full-scale pipelines,but little information is available to verify if such predictions are reliable. A fully compositional wax deposition model has been developed that combines an accurate model for the thermodynamics of wax precipitation,a model for diffusive wax deposition based on heat and mass transfer analogy and a method for the shearing effect on the wax deposits caused by the turbulence of the flowing fluid.The wax is treated throughout as a fully compositional distribution of n-paraffins,because previous work has shown that simplifying the representation of the n- paraffins leads to results that appear to be physically unrealistic.The model has been shown to be in reasonable agreement with wax deposition rates reported from flow-loop experiments. This paper describes the application of the wax deposition model to real pipelines and the shearing effect on the deposited waxes.The shearing effect will be illustrated by reference to some flow-loop experiments and the real field cases,and the operating experience of a sub-sea pipeline.The deposition model is analyzed to assess its agreement with the real field operating experience,and to assess under what conditions the pipeline could be considered at risk of blocking. The paper also considers the effect of wax ageing on wax deposits.In cases where fluid turbulence may limit wax build-up, the wax deposit may gradually harden with time due to ageing.A hardening deposit could lead to long-term remediation problems.A number of possible wax ageing mechanisms are considered,and how they would modify the deposition process. It is found that the effective diffusivity of hydrocarbon molecules inside the waxy gel deposit is a major uncertainty affecting the predictions.Model sensitivities are investigated in the light of this uncertainty,and the possible impact of ageing on the pipeline is assessed.
机译:管道中的蜡降沉淀和沉积是石油和天然气行业最重要的流动保障挑战之一。通过流量回路和其他实验测量,对蜡沉积进行了模型的工作。方法是常规扩大到预测行为满量程管道,但如果这样的预测是可靠的,则可以验证很少的信息。已经开发了一种完全成分的蜡沉积模型,其结合了蜡沉淀的热力学的准确模型,一种基于热量和传质沉积的衍射蜡沉积的模型,以及用于扫描造成由湍流引起的蜡沉积物的剪切效果的方法流动的流体。作为N-链烷烃的完全组成分布治疗蜡,因为先前的工作表明,简化了N-链烷烃的表示导致似乎物理不现实的结果。模型已被证明是以合理的协议与流水回路实验报告的蜡沉积率。本文介绍了蜡沉积模型将蜡沉积模型应用于真实管道和沉积蜡的剪切效果。通过参考一些流回路实验和真实的现场情况来说明剪切效果,以及子的操作经验分析了沉积模型,以评估其与实地运营经验的协议,并在管道可能被视为阻塞风险的情况下评估。本文还考虑了蜡老化对蜡沉积的影响。在流体湍流可能限制蜡堆积的情况下,蜡沉积可能随着耕种而逐渐消耗。硬化沉积物可能导致长期修复问题。考虑可能的蜡老化机制的数量,以及它们将如何修改沉积过程。结果发现,蜡质凝胶沉积物内的烃分子的有效扩散性是影响预测的主要不确定性。根据这种不确定性研究了敏感性,评估了老化对管道上的可能影响。

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