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Two-phase flow behaviour for a single flowline with a non-symmetric splitter to a dual riser

机译:带有非对称分流器到双立管的单流线的两相流行为

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We have carried out laboratory experiments for the phase split of a gas-liquid flow from a single flowline to a dual riser. The facility used for the experiments is the air-water loop at the Shell Technology Centre in Amsterdam. The 2" diameter loop consists of a 100 m long flowline followed by a dual 15 m high vertical section. The two risers are connected to the same separator at a platform that is operated at atmospheric pressure. The set-up includes a non-symmetric side-branch T-splitter, of which both the side arm and the run arm result in a vertical riser (Riser 1 and Riser 2, respectively). All experiments were conducted with slug flow conditions in the incoming flowline. It has been observed in the experiments that the liquid phase preferentially flows into Riser 2, while the gas phase is predominantly diverted through Riser 1. However, due to the vertical orientation of the risers, this maldistribution can result in gravity dominated flow in Riser 2. As a result, quasi-stable modes form in the dual riser system. These can imply extreme situations, like a fully liquid-filled Riser 2 or partial separation of the phases over the two risers. Each mode has a typical riser base pressure. It was observed that manual choking can influence the phase split (albeit to a limited extent), and is capable of switching the system between the quasi-stable modes. For specific combinations of valve openings and flow rates, Riser 2 experiences a severe slugging cycle. As a result, the phase split shows strong transient behaviour, either with constant cycle times or with an irregular time dependence. Also here manual choking can influence the characteristics of the cycle and is capable of completely suppressing it. Examples of the flow modes and the measured pressure transients at various locations will be shown.
机译:我们已经进行了实验室实验,研究了从单根流水线到双立管的气液流的相分离。实验所用的设备是位于阿姆斯特丹的壳牌技术中心的空气-水循环系统。直径为2英寸的环路由一条100 m长的流水线和随后的双15 m高的垂直截面组成。两个立管在一个在大气压下操作的平台上连接到同一分离器。侧支T型分流器,其侧臂和运行臂都形成一个垂直立管(分别为立管1和立管2),所有实验均在进水流中的段塞流条件下进行。实验表明,液相优先流入立管2,而气相主要通过立管1转移。但是,由于立管的垂直方向,这种分布不均会导致立管2中重力为主的流动。结果,在双立管系统中会形成准稳定模式,这可能意味着极端情况,例如充满液体的立管2或两个立管上的部分相分离,每种模式都有典型的立管基本压力。手动扼流可以影响相分离(尽管在一定程度上),并且能够在准稳定模式之间切换系统。对于阀门开度和流量的特定组合,立管2经历了严重的塞击循环。结果,无论是恒定的周期时间还是不规则的时间依赖性,相分离都表现出强烈的瞬态行为。同样,在此手动阻塞可能会影响周期的特性,并能够完全抑制周期。将显示在各个位置的流动模式和测得的压力瞬变的示例。

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