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An integrated, multi-scale modelling approach for the simulation of multiphase dispersion from accidental CO2 pipeline releases in realistic terrain

机译:一种综合的多尺度建模方法,用于仿真性地形中意外二氧化碳排水管道释放的多相色散模拟

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摘要

The deployment of a complete carbon capture and storage chain requires a focus upon the hazards posed by the operation of pipelines transporting carbon dioxide (CO2) at high pressure in a dense-phase (supercritical or liquid state). The consequences of an intentional or accidental release from such pipelines must be considered as an integral part of the design process. There are a number of unique challenges to modelling these releases due to the unusual phase-transition behaviour of CO2. Additionally, few experimental observations of large-scale CO2 releases have been made, and the physics and thermochemistry involved are not fully understood. This work provides an overview of elements of the EC FP7 CO2PipeHaz project, whose overall aim is to address these important and pressing issues, and to develop and validate mathematical models for multiphase discharge and dispersion from CO2 pipelines. These are demonstrated here upon a full-scale pipeline release scenario, in which dense-phase CO2 is released from a full-bore 36-in. pipeline rupture into a crater, and the resulting multiphase CO2 plume disperses over complex terrain, featuring hills and valleys. This demonstration case is specifically designed to illustrate the integration of different models for the pipeline outflow, near-field and far-field dispersion.
机译:完整的碳捕获和存储链的部署需要关注致密相(超临界或液态)中高压输送二氧化碳(CO2)的管道运行所带来的危害。从此类管道中故意释放或意外释放的后果必须被视为设计过程的组成部分。由于二氧化碳的不寻常的相变行为,对这些排放进行建模存在许多独特的挑战。此外,很少有实验观察到大规模释放CO2,并且对所涉及的物理和热化学还没有完全了解。这项工作概述了EC FP7 CO2PipeHaz项目的要素,其总体目标是解决这些重要而紧迫的问题,并开发和验证用于CO2管道多相排放和扩散的数学模型。这些是在大规模管道释放场景中演示的,在该场景中,密相CO2从36英寸全孔释放。管道破裂成一个火山口,由此产生的多相二氧化碳羽流散布在复杂的地形上,包括丘陵和山谷。该演示案例专门用于说明管道流出,近场和远场扩散的不同模型的集成。

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