Cao Yang, Liu Tao, Song Guangchun, Zhou Wei, Han Hui, Li Yuxing, Hu Qihui, Jing Ruidong
CNOOC Research Institute Ltd., Beijing 100028, China.
CNOOC China Ltd., Beijing Research Center, Beijing 100028, China.
ACS Omega. 2024 Jun 11;9(25):27537-27548. doi: 10.1021/acsomega.4c03002. eCollection 2024 Jun 25.
Pipeline transportation of CO is the key link to realize carbon capture, utilization, and storage. CO pipeline transportation may face the risk of leakage, which poses a great threat to the production process and personnel safety. It is of great significance to study the leakage and diffusion characteristics of CO in pipeline transportation for the safety design and personnel protection of the offshore CO storage platform. In order to study the leakage and diffusion characteristics of CO in pipeline transportation on offshore platforms, a physical model of a target platform and several numerical models were built, and a series of pipeline CO leakage and diffusion simulations were carried out using the method of numerical simulation. Based on the simulation results, the temperature distribution and CO concentration distribution on the offshore platforms after leakage were measured and analyzed. The influence of leakage direction (horizontal and oblique 45° upward) was also studied. Dangerous areas on the platform and suggestions for staff evacuation were given according to the simulation results. The research results of this work can provide guidance for the safe operation of offshore CO storage platforms.
二氧化碳的管道输送是实现碳捕获、利用与封存的关键环节。二氧化碳管道输送可能面临泄漏风险,这对生产过程和人员安全构成巨大威胁。研究二氧化碳在管道输送中的泄漏与扩散特性,对海上二氧化碳封存平台的安全设计和人员防护具有重要意义。为研究海上平台管道输送中二氧化碳的泄漏与扩散特性,构建了目标平台的物理模型和多个数值模型,并采用数值模拟方法进行了一系列管道二氧化碳泄漏与扩散模拟。基于模拟结果,对泄漏后海上平台的温度分布和二氧化碳浓度分布进行了测量与分析。还研究了泄漏方向(水平和向上倾斜45°)的影响。根据模拟结果给出了平台上的危险区域及人员疏散建议。这项工作的研究成果可为海上二氧化碳封存平台的安全运行提供指导。