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Source strength and dispersion of CO2 releases from high-pressure pipelines: CFD model using real gas equation of state

机译:CO2源极强度和色散从高压管道中的释放:CFD模型使用真实气体方程

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摘要

Transportation of CO2 in high-pressure pipelines forms a crucial link in the ever-increasing application of Carbon Capture and Storage (CCS) technologies. An unplanned release of CO2 from a pipeline presents a risk to human and animal populations and the environment. Therefore it is very important to develop a deeper understanding of the atmospheric dispersion of CO2 before the deployment of CO2 pipelines, to allow the appropriate safety precautions to be taken. This paper presents a two-stage Computational Fluid Dynamics (CFD) study developed (1) to estimate the source strength, and (2) to simulate the subsequent dispersion of CO2 in the atmosphere, using the source strength estimated in stage (1). The Peng-Robinson (PR) EOS was incorporated into the CFD code. This enabled accurate modelling of the CO2 jet to achieve more precise source strength estimates. The two-stage simulation approach also resulted in a reduction in the overall computing time. The CFD models were validated against experimental results from the British Petroleum (BP) CO2 dispersion trials, and also against results produced by the risk management package Phast. Compared with the measurements, the CFD simulation results showed good agreement in both source strength and dispersion profile predictions. Furthermore, the effect of release direction on the dispersion was studied. The presented research provides a viable method for the assessment of risks associated with CCS.
机译:在高压CO2管道运输形式的碳捕集与封存(CCS)技术的日益增加的应用程序中的重要环节。从管道CO2的释放无计划呈现给人类和动物种群和环境的风险。因此,开发二氧化碳的大气扩散更深入的了解二氧化碳管道的部署之前,以允许采取适当的安全预防措施是非常重要的。本文提出了一种两阶段的计算流体动力学(CFD)的研究开发(1)来估计源的强度,和(2)以模拟CO2的随后分散在大气中,使用在阶段(1)所估计的源强度。彭一罗宾逊(PR)EOS被纳入CFD代码。这使CO2喷射的精确建模,实现更精确的源强估算。两阶段模拟方法也导致了总计算时间的减少。该CFD模型进行了验证对来自英国石油公司(BP)CO2分散试验的实验结果,并通过对风险管理包PHAST产生的结果。与测量相比,CFD模拟结果显示,在这两个源的强度和色散分布的预测一致。此外,释放方向上的分散体中的作用进行了研究。所提出的研究提供了与CCS相关的风险评估的一个可行的方法。

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