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FOUR-PHASE FLOW OF OIL, GAS, WATER, AND SAND MIXTURES IN SUBSEA PIPELINES

机译:海底管道中的石油,天然气,水和沙子混合物的四相流动

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This paper investigates issues around four-phase (Oil/CO2/water/sand) flows occurring within subsea pipelines. Multi-phase flows are the norm, as production fluid from reservoirs typically include sand with water. However, these multi-phase flow mixtures, whether three- or four-phase, are at risk of forming slug flows. The inclusion of sand in this mixture is concerning, as it not only leads to increased levels of pipeline erosion but it also has the potential, to accumulate sand at the bottom of the pipe, blocking the pipe or at the very least hindering the flow. This latter impact can prove problematic, as a minimum fluid velocity must be maintained to ensure the safe and regulated flow of particles along a pipeline. The presence of low amounts of sand particles in oil/gas/water flow mixtures can serve to reduce the pressure exerted on bends. The sand volume fraction must in this case, be relatively low such that the particles" resistance causes only a moderate loss in pressure. Therefore, the study aims to gauge the impact of oil/gas/water/sand mixtures on various pipeline structures as well as to further investigate the phenomenon of flow-induced vibration to determine the optimal flow variables which can be applied predicting the structural responses of subsea pipelines.
机译:本文研究了海底管道内发生的四相(油/二氧化碳/水/沙子)流动的问题。多相流动是标准的标准,因为来自储层的生产流体通常包括与水的沙子。然而,这些多相流动混合物是三阶段或四相面临形成粘液流的风险。在这种混合物中包含沙子是关于,因为它不仅导致管道侵蚀的水平增加,而且它也具有潜力,在管道底部累积砂,阻挡管道或在最不妨碍流动的情况下。后一种暗影可以证明是有问题的,因为必须保持最小的流体速度,以确保沿管道的安全和调节颗粒流动。油/气/水流混合物中少量砂颗粒的存在可用于降低弯曲施加的压力。在这种情况下,砂体级分必须相对较低,使得颗粒“抗性仅导致压力中的中等损失。因此,该研究旨在衡量油/气/水/砂混合物对各种管道结构的影响为了进一步研究流动诱导的振动的现象,以确定可以应用预测海底管道的结构响应的最佳流量变量。

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