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A multi-source flow model for CCS pipeline transportation networks

机译:CCs管道运输网络的多源流模型

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摘要

As part of the operation of the carbon capture and storage process, there are clear practical and economic incentives in employing an integrated pipeline network system involving the capture of CO2 from multiple emission sources such as power plants or steel works followed by injection into a single storage site. This paper presents the development and testing of multi-source flow model for predicting the entire flow conditions such as pressure, temperature, fluid phase and CO2 composition throughout the pipeline network and the delivery to the storage site. The model also accounts for pipeline elevation and periodic variations in feed source flow rate, for example as a result of the ramping up or ramping down of power production from coal fired power stations connected to the pipeline network. The ability to produce the above information is of vital importance given the large impact of the stream impurities on the CO2 phase behaviour and their physiochemical interactions with the pipeline material of construction, compressor power requirements and the storage reservoir performance.
机译:作为碳捕集与封存过程的一部分,采用集成的管道网络系统具有明显的实践和经济诱因,其中包括从发电厂或钢铁厂等多种排放源捕集CO2,然后注入单个储藏库中现场。本文介绍了多源流模型的开发和测试,用于预测整个管道网络以及输送到存储地点的整个流动条件,例如压力,温度,流体相和CO2组成。该模型还考虑了管道高度和进料源流量的周期性变化,例如由于连接到管道网络的燃煤发电站发电量的上升或下降所致。鉴于物流杂质对CO2相行为及其与建筑管道材料,压缩机功率要求和储油罐性能的物理化学相互作用的巨大影响,产生上述信息的能力至关重要。

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