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Study on the wax deposition of waxy crude in pipelines and its application

机译:含蜡原油在管道中的蜡沉积研究及其应用

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摘要

An experimental loop for the wax deposition study is established; a novel method to determine the thickness of the wax deposition in the experimental loop is developed, taking into account the impact of the instant temperature decreasing of the test section wall which leads to the increasing of the viscosity of the crude oil near the pipe wall and the distortion of the flow field in the pipe. The wax deposition characteristics of the QH crude are studied using the experimental loop. For the QH crude oil, there is a peak area of the wax deposition when it is 40 °C around. And very little deposition emerges when the temperature is not only higher than the wax appearance point but also lower than the temperature of solidification. It is also proved in the lab that the shearing dispersion of the wax crystal particles plays little role in the wax deposition when the shearing rate is high. The observation of the pipe which is cut in the field shows that the laying of the wax deposition in the pipe is very clear, and the wax deposition caused by the shearing dispersion exists clearly. From the angel of the shutdown temperature drop and safely restart for the hot oil pipeline, it is concluded that there is a permissible critical thickness of the sedimentary layer for the low flow rate pipelines.
机译:建立了蜡沉积研究的实验循环;考虑到测试截面壁的瞬时温度降低的影响,这种新方法可以确定实验回路中蜡沉积的厚度,从而导致原油在管壁附近的粘度增加和管道中流场的变形。使用实验回路研究了QH原油的蜡沉积特性。对于QH原油,在40°C附近时,会有一个蜡沉积的峰面积。当温度不仅高于蜡出现点而且低于固化温度时,几乎没有沉积物出现。在实验室中还证明了,当剪切速率高时,蜡晶体颗粒的剪切分散在蜡沉积中起很小的作用。对现场切割的管道的观察表明,管道中蜡沉积的铺设非常清晰,并且剪切分散引起的蜡沉积也清晰存在。从停机温度下降和热油管道安全重启的角度出发,可以得出结论,对于低流量管道,沉积层的允许临界厚度是允许的。

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