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Novel approaches to waxy crude restart: Part 1: Thermal shrinkage of waxy crude oil and the impact for pipeline restart

机译:蜡质原油重启的新方法:第1部分:蜡质原油的热收缩及其对管道重启的影响

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摘要

This paper identifies cooling-induced phenomena that can follow pipeline shut-in. Resultant shrinkage flow can affect the viscosity of gelled semi-solids that develop in pipelines containing waxy fluids. Pressure gradients develop in accordance with flow rate and direction. These same processes may also induce gel fracture and fragmentation. The relationship between these thermally driven events and easily measured parameters is used in numerical calculation for predicting gel viscosity and the distribution of void space and intact gel. The resultant map of the gel state within the line thus delineates the conditions prior to restart. Simulation allows parametric testing to provide a powerful design tool. Laboratory tests are described that support such predictions. The insights provided by this novel approach can indicate cost effective solutions to pipeline design and operation, and possible sources of laboratory testing inaccuracy. The findings reported in this paper represent part of an ongoing investigation into aspects of waxy crude restart that may lead to predictive errors.
机译:本文确定了冷却引起的现象,这些现象可随管道关闭而发生。产生的收缩流会影响在含蜡流体的管道中形成的凝胶状半固体的粘度。压力梯度根据流量和方向而发展。这些相同的过程也可能引起凝胶破裂和断裂。这些热驱动事件与易于测量的参数之间的关系用于数值计算中,以预测凝胶粘度以及空隙空间和完整凝胶的分布。因此,在线中凝胶状态的结果图描绘了重新开始之前的条件。仿真允许参数测试提供强大的设计工具。描述了支持此类预测的实验室测试。这种新颖方法提供的见解可以指示管道设计和运营的经济有效解决方案,以及可能导致实验室测试不准确的来源。本文报道的发现是对蜡质原油重启可能会导致预测误差的部分正在进行的调查的一部分。

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