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Turbo Expander Design Considerations for Cryogenic Natural Gas Plants Without Molecular Sieve Application for Dehydration

机译:Turbo扩展器设计考虑低温天然气植物,而无需分子筛筛选脱水

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Turbo expander utilization in natural gas cryogenic plants dates back to late 1950’s. The first gas plant with turbo expander design was installed in Corpus Christi Texas in 1958. Dehydration of natural gas is normally carried out upstream of turbo expanders. Hydrate formation inside turbo expander with variable inlet guide vanes, high speed and tight clearances causes serious operational problems. Dehydration of natural gas is achieved by molecular sieves and regeneration system in most cryogenic plants. Several gas plants have also designed with injection of hydrate inhibitors upstream of turbo expander instead of molecular sieves in the last two decades. This paper discusses design features of turbo expander for the latter applications where hydrate inhibitor injection is utilized to replace molecular sieves. The authors present their experiences and lesson learned from several gas plants.
机译:天然气低温植物中的涡轮扩展器利用日期返回1950年代后期。 1958年,有涡轮扩展器设计的第一批煤气厂安装在Corpus Christi德克萨斯州。天然气的脱水通常在涡轮扩张器的上游进行。水合物形成内部涡轮增压器,具有可变入口导向叶片,高速和紧密间隙导致严重的操作问题。在大多数低温植物中的分子筛和再生系统实现天然气的脱水。几种气体厂还设计了在过去二十年中注射涡轮膨胀机上游的水合物抑制剂而不是分子筛。本文讨论了涡轮扩展器的设计特征,用于后一种应用,利用水合物抑制剂注射液代替分子筛。作者展示了他们从几种天然气植物中吸取的经验和经验。

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