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Numerical simulation of CO2 dispersion from punctures and ruptures of buried high-pressure dense phase CO2 pipelines with experimental validation

机译:埋地高压密相CO2管道穿刺破裂CO2分散的数值模拟及实验验证

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摘要

Carbon capture and storage (CCS) presents an option for significantly reducing the amount of carbon dioxide (CO2) released into the atmosphere and mitigating the effects of climate change. Pipelines are considered to be the most likely method for transporting captured CO2 and their safe operation is of paramount importance as their contents are likely to be in the region of several thousand tonnes and CO2 poses a number of concerns upon release due to its unusual physical properties. To this end, National Grid initiated the COOLTRANS (CO2 Liquid Pipeline Transportation) research programme to consider the pipeline transportation of high-pressure dense phase CO2. Part of this work involved the development of a mathematical model for predicting the dispersion of pure CO2 following the venting, puncture, or rupture, of such a transportation pipeline during normal operational conditions. In this paper, we describe the use of a computational fluid dynamic (CFD) tool that can be used to numerically simulate the near-field sonic dispersion from such releases, above and below ground. The model is shown to qualitatively and quantitatively reproduce observed experimental results. Validated flows at the top of the crater formed by below ground releases presented here for a range of scenarios provide the basis for developing robust source conditions for use in CFD studies of far-field dispersion, and for use with pragmatic quantified risk assessment (QRA) models.
机译:碳捕集与封存(CCS)为显着减少释放到大气中的二氧化碳(CO2)量和减轻气候变化的影响提供了一种选择。管道被认为是最可能的运输捕获的二氧化碳的方法,其安全操作至关重要,因为管道的内含物可能在数千吨左右,并且由于其不寻常的物理特性,二氧化碳在释放时会引起很多关注。为此,国家电网启动了COOLTRANS(二氧化碳液体管道运输)研究计划,以考虑高压密相二氧化碳的管道运输。这项工作的一部分涉及数学模型的开发,该数学模型用于预测在正常运行条件下这种运输管道的排气,刺穿或破裂后纯净二氧化碳的扩散。在本文中,我们描述了计算流体动力学(CFD)工具的使用,该工具可用于数值模拟地面以上和地下这种释放的近场声波频散。该模型显示出定性和定量再现观察到的实验结果。此处针对一系列情况提出的地下释放所形成的火山口顶部的经过验证的流动,为开发可靠的源条件提供了基础,这些条件可用于远场弥散的CFD研究以及实用的量化风险评估(QRA)楷模。

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