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Investigation of the Severity of Wax Deposition in Bend Pipes Under Subcooled Pipelines Conditions

机译:弯管管道条件下弯管蜡沉积严重程度的研究

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Curved pipes are essential components of subsea process equipment and some part of production pipeline and riser.So far,most of the studies on of wax deposition and the possible mitigation strategies have been carried out using straight pipelines,with little attention given to curved pipes.Therefore,the objective of this study is to use an experimental flow loop designed and assembled in the lab to study and understand the mechanisms and variable parameters that affect wax depositional behaviour under the single-phase flow.Series of experiments were carried out with pipes curvatures of 0,45 and 90-degree at different flow rates (2 and 11 L/min).The sequence in which the bends are incorporated creates non-uniformity of boundary shear,flow separation,and caused isolation of fluid around the bends that affect wax deposition,which depends on flow regimes-Reynolds number along with the radius of curvature of the bend.Prior to the flow loop experiment,the waxy crude oil was characterized by measuring the viscosity,WAT (30°C),pour point (25.5°C),n-Paraffin distribution (C10-C67),and the saturated/aromatic/resin/asphalte (SARA) fractions Results of this study shows that the wax deposit thickness decreases at higher flow rate within the laminar (Re<2300) and turbulent (Re>2300) flow regimes.It was observed that the deposition rate was significantly higher in curved pipes,about 8 and 10% for 45 and 90-degree,respectively in comparison to the straight pipe for all flow conditions.Increase elevation of the curved pipe,however,led to a more wax deposition trend;where a higher percentage of wax deposit was observed in 45-degree compared to 90-degree curved pipe.This trend was due addition of gravity forces to the frictional forces-influenced by the physical mechanisms of wax deposition mainly molecular diffusion,shear dispersion and gravity settling.From the results of this study,a new correlation between wax deposit thickness and pressure drop was developed.A relationship was established between wax deposit thicknesses,bend angle in pipes and wax deposition mechanisms with a reasonable agreement with published data,especially for steady state condition.Therefore,this study will enhance the understanding of the wax deposition management and improve predictions for further development of a robust mitigation strategy.
机译:弯曲管是海底工艺设备的基本组成部分,以及生产管道的某些部分和提升机。所以,大多数关于蜡沉积的研究和可能的缓解策略已经使用直管道进行,几乎没有注意到弯曲的管道。因此,本研究的目的是使用设计并装配在实验室中研究的实验流动回路和了解影响单相下蜡沉积行为的实验flow.Series用管道曲率进行的机制和可变参数在不同的流量速率(2和11L / min)的0,45和90度。弯曲的序列掺入的序列产生边界剪切,流动分离的不均匀性,并引起了影响的弯曲周围的流体的隔离蜡沉积,这取决于流动制度 - 雷诺数与弯曲的曲率半径与流水回路实验相同,蜡质原油的特征在于测量粘度,Wat(30℃),倾点(25.5℃),N-石蜡分布(C10-C67)和该研究的饱和/芳族/树脂/沥青物(SARA)级分数显示蜡沉积物厚度在层流(RE <2300)和湍流(RE> 2300)流动方面的较高流速下降。观察到弯曲管道沉积速率显着高,约8%和90%分别与所有流动条件的直管相比。然而,弯曲管的升高,导致了更蜡的沉积趋势;在45度相比,在45度观察到较高百分比的蜡沉积物(90度弯曲) 。这一趋势是由于重力力增加了对摩擦力的影响,受到蜡沉积的物理机制的影响,主要是分子扩散,剪切分散和重力沉降。从本研究的结果,蜡沉积物厚度和压降之间的新相关性发达.A的关系是es在蜡沉积物厚度之间,管道沉积物厚度和蜡沉积机制之间,具有合理的与公布的数据一致,特别是对于稳态条件。因此,本研究将提高对蜡沉积管理的理解,提高进一步发展的预测缓解战略。

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