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PHASE RE-DISTRIBUTION AND HEAT TRANSFER IN GAS/CONDENSATE FLOW SHUT-IN IN A DEEPWATER LAZY-WAVE RISER

机译:在深水惰性潮波提升机中的气/冷凝水流中的相位再分布和传热

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The mechanisms of phase re-distribution of gas/condensate flow in a deepwater steel lazy-wave riser after system shutdown have been studied numerically. The investigated system consists of a 15-mile long subsea pipeline tieback to a floating vessel, via a 9,800-ft long lazy-wave production riser. The subsea well is located at 6,350 ft of water. The system is insulated, and transports a gas-condensate mixture with liquid loading of 10 stb/mmscfd. This study reveals that besides pressure, the internal heat transfer during system cool-down is a key factor for the phase re-destribution between gas and liquid, and along the system. The liquid holdup variations are caused by the interfacial mass transfer between gas-liquid interface and phase re-distribution due to the combined effects of gravitational and buoyancy forces. Fluid cool down temperature "overshoot" in the lazy wave riser valley during system cool down has been observed. The pressure effect on the cool down temperature overshoot has been studied. The phenomenon is discussed based on fundamental heat transfer, phase equilibrium, and multiphase flow principles. The lazy wave riser configuration is a promising option for deepwater development, and gas/condensate flow is a multiphase flow phenomenon commonly encountered in raw gas transportation. The results of this study improve the understanding of multiphase flow transient behavior in deepwater pipeline/riser systems, and benefits gas/condensate production system design.
机译:在数值关断后,深水钢阱波提升机中的气/冷凝水流量的相位重新分布机制已经进行了数值。调查系统由一个15英里的长海底管道连接到浮动容器,通过9,800英尺长的懒惰波生产提升管。海底井位于6,350英尺的水中。该系统是绝缘的,并将气溶液混合物与10STB / MMSCFD的液体负载运输。本研究表明,除了压力之外,系统冷却过程中的内部传热是气体和液体之间的相位重新倾辨的关键因素,以及沿着该系统。由于引力和浮力力的组合效果,液体储存变化是由气液界面和相再分布之间的界面传质引起的。已经观察到在系统冷却期间懒惰波提升谷的流体冷却温度“过冲”。研究了对冷却温度过冲的压力影响。该现象是基于基础传热,相平衡和多相流原理讨论的现象。懒惰的波提升器配置是深水开发的有希望的选择,气体/冷凝水流是在原料气体运输中常常遇到的多相流动现象。本研究的结果提高了深水管道/立管系统中对多相流动瞬态行为的理解,并利用气体/冷凝水生产系统设计。

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