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Modelling ruptures of buried high-pressure dense-phase CO2 pipelines in carbon capture and storage applications - Part II. A full-scale rupture

机译:在碳捕集与封存应用中埋藏的高压密相CO2管道破裂的建模-第二部分。全面破裂

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of carbon dioxide (CO2) released into the atmosphere. National Grid initiated the COOLTRANS research programme to consider the CCS pipeline transportation of high-pressure dense-phase CO2, including the development and application of a mathematical model for predicting the sonic near-field dispersion of pure CO2 following pipeline venting or failure. In Part I (Wareing et al., 2015a) validation of this numerical model against experimental data was considered, with reasonably good agreement quantitatively and qualitatively demonstrated for a rupture of a 0.15 m external diameter pipeline. In this second part, the model is applied to the rupture of a 96 km pipeline with a nominal 0.61 m external diameter, the same as that proposed in the Don Valley CCS Project. In the base-case, six snapshots of the flow dispersing into dry air are numerically simulated. Integrated mass and momentum fluxes exiting the crater are calculated, with the intention that they can be directly employed as source conditions for far-field dispersion simulations. The amount of solid CO2 deposited in the crater is estimated through particle tracking techniques and six sensitivity studies vary crater properties.
机译:释放到大气中的二氧化碳(CO2)。国家电网启动了COOLTRANS研究计划,以考虑高压密相CO2的CCS管道运输,包括数学模型的开发和应用,该模型可预测管道排放或失效后纯CO2的声波近场弥散。在第一部分(Wareing等人,2015a)中,考虑了根据实验数据验证此数值模型,并定量和定性地证明了0.15 m外径管道的破裂。在第二部分中,该模型应用于标称外径为0.61 m的96 km管道的破裂,与Don Valley CCS项目中提出的破裂相同。在基本情况下,数值模拟了六个散布在干燥空气中的流动快照。计算了离开陨石坑的积分质量和动量通量,目的是将它们直接用作远场弥散模拟的源条件。通过粒子跟踪技术估算了沉积在火山口中的固体二氧化碳的量,六项敏感性研究改变了火山口的性质。

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