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The Analysis of Pipeline Transportation Process for CO2 Captured From Reference Coal-Fired 900 MW Power Plant to Sequestration Region

机译:从参考燃煤900 MW电厂到封存区的CO2管道输送过程分析

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Three commercially available intercooled compression strategies for compressing CO2 were studied. All of the compression concepts required a final delivery pressure of 153 bar at the inlet to the pipeline. Then, simulations were used to determine the maximum safe pipeline distance to subsequent booster stations as a function of inlet pressure, environmental temperature, thickness of the thermal insulation and ground level heat flux conditions. The results show that subcooled liquid transport increases energy efficiency and minimises the cost of CO2 transport over long distances under heat transfer conditions. The study also found that the thermal insulation layer should not be laid on the external surface of the pipe in atmospheric conditions in Poland. The most important problems from the environmental protection point of view are rigorous and robust hazard identification which indirectly affects CO2 transportation. This paper analyses ways of reducing transport risk by means of safety valves.
机译:研究了用于压缩CO2的三种市售中冷压缩策略。所有压缩方案都要求在管道入口处的最终输送压力为153 bar。然后,使用模拟来确定到后续增压站的最大安全管道距离,该距离取决于入口压力,环境温度,绝热层厚度和地平面热通量条件。结果表明,在传热条件下,过冷的液体输送提高了能源效率,并最大限度地减少了长距离传输CO2的成本。研究还发现,在波兰的大气条件下,绝不能在管道的外表面上放置隔热层。从环境保护的角度来看,最重要的问题是严格和可靠的危害识别,这间接影响了CO2的运输。本文分析了通过安全阀降低运输风险的方法。

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