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Fifteen Years of Field Experience in LNG Expander Technology

机译:LNG扩展器技术的十五年现场经验

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From the earliest days of gas liquefaction, the thermodynamic process advantage of employing cryogenic liquefied gas expanders in place of throttling valves was very well recognized. The available technology was unable to offer reliable cryogenic liquefied gas expanders until the aerospace industry developed materials and designs suitable for the cryogenic environment. LNG expanders reduce the high pressure of the condensed LNG by converting the static pressure energy of the fluid into electricity and sub-cooling the refrigerated LNG. The Carnot efficiency of the liquefaction process is significantly increased by using LNG expanders, resulting in a very short amortization time of less than six months for the financial investment in LNG expanders. During the past fifteen years cryogenic LNG expanders have experienced an accelerated development in design and performance. Every newly built LNG liquefaction plant since 1996 has included two or more LNG expanders operating in each train. The evolutionary design and performance of LNG expanders is presented, discussed, and fifteen years of practical field experience is demonstrated. Particular linear and non-linear phenomena in rotor-dynamics and fluid dynamics that are specific to the design and operation of single phase and two phase LNG expanders are described. An outlook for upcoming and future requirements of the LNG Expander Technology indicates trends towards both much higher and much smaller flow rates, together with much higher pressures. New design concepts to meet these future requirements are also disclosed.
机译:从最早的气体液化日,非常公认,使用低温液化气扩张器采用低温液化气扩张器的热力学过程优势。可用的技术无法提供可靠的低温液化气扩展器,直到航空航天行业开发适合低温环境的材料和设计。 LNG扩展器通过将流体的静压能量转换为电力并使冷冻液化液晶硅冷却来减小冷凝LNG的高压。使用LNG扩展器,液化过程的液态化效率显着增加,导致LNG扩展器的金融投资的摊销时间不到六个月。在过去的十五年中,低温液化天然气扩展器在设计和性能方面经历了加速发展。自1996年以来的每一个新建的LNG液化工厂都包括在每列火车中运营的两个或更多LNG扩展器。展示了LNG扩展器的进化设计和性能,并讨论了,并证明了十五年的实际经验。描述了对单相和两个相LNG扩展器的设计和操作特异的转子动力学和流体动力学中的特定线性和非线性现象。即将到来和未来的LNG扩展器技术要求的前景表明,趋势既越来越高,流量较小,在一起较高的压力。还披露了满足这些未来要求的新设计概念。

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