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基于影响比对的氢气管道流速探讨OACSTPCD

Discussion on flow velocity of hydrogen transmission pipeline based on impact comparison

中文摘要英文摘要

近年来,氢能高效利用是世界各国的关注重点和研究热点,也是新能源的重要发展方向之一.大规模运输氢气时,管道运输更加高效、安全,采用氢气管道输送是推进氢能大规模利用的有效途径.相比天然气,氢气的单位体积热值较低,分子量较小,在管道输送中对提高氢气管道流速的需求较大,为提升管道输送效率,氢气流速提高后对管道系统的潜在影响值得探讨.基于氢气、天然气物理特性,开展了氢气、天然气的流速影响场景分析,提出了氢气管道流速选择的关注要点;剖析了基于冲蚀的氢气、天然气管道流速评价方法,对含固体杂质工况下氢气、天然气的冲蚀尺度进行了比对;探讨了氢气、天然气的管道流动噪声问题,开展了定量分析.研究表明,相比于露空管道系统,埋地管道系统更应关注流速问题;氢气管道允许的冲蚀流速更大,管道系统具备提速潜力,但应对气体夹带杂质的问题进行持续关注;在相同的能量输送场景下,氢气管道内流动噪声声压值稍大于天然气管道噪声声压值,可参考常规噪声控制手段应对.研究成果可为氢气管道设计提供借鉴.

The efficient utilization of hydrogen energy has been a research hot spot around the world in recent years and is also one of the important development directions of new energy.When transporting hydrogen on a large scale,pipeline transportation is more efficient and safe.The use of hydrogen pipeline transportation is an effective way to promote large-scale utilization of hydrogen energy.Compared with natural gas,hydrogen has a lower calorific value per unit volume and a lower molecular weight.In pipeline transportation,there is a greater demand for increasing the flow rate of hydrogen pipelines to overcome the problem of low calorific value per unit volume.Therefore,the potential impacts on the pipeline system are worth exploring when increasing the flow rate of hydrogen.Based on the physical properties of hydrogen and natural gas,a scenario analysis of the impact of the flow rate of hydrogen and natural gas was carried out,and the main considerations in selecting the flow rate of hydrogen pipelines were put forward;The evaluation methods for the erosion velocities of hydrogen and natural gas were analyzed,and in particular,the extent of erosion caused by impurities in the natural gas and hydrogen was compared and discussed.The flow induced noise problem of hydrogen and natural gas pipelines was discussed,and a quantitative comparative analysis was carried out.Research shows that when compared to exposed pipeline systems,buried pipeline systems should pay more attention to flow rate issues;the threshold for erosion velocity in hydrogen pipelines is higher,allowing for the potential to increase gas velocities within the system.However,it is important to continuously monitor and address the issue of impurities entrained in the gas.Under the same energy transmission scenario,the sound pressure value of the flow induced noise in the hydrogen pipeline is slightly greater than that of the natural gas pipeline,and conventional noise control methods can be used to manage it.The research results can provide reference for hydrogen pipeline design.

陈俊文;刘翠伟;汤晓勇;花争立;李玉星;朱红钧;谌贵宇;陈凤;李天雷;张双蕾

中国石油工程建设有限公司西南分公司,四川 成都 610041中国石油大学(华东)储运与建筑工程学院,山东 青岛 266580浙江大学化工机械研究所,浙江 杭州 310027西南石油大学石油与天然气工程学院,四川 成都 610500

氢气管道冲蚀流速流动噪声探讨

Hydrogen pipelinesErosion velocityFlow-induced noiseDiscussion

《天然气与石油》 2024 (002)

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国家重点研发计划"纯氢/掺氢长距离管输工艺及大流量掺氢与分离装备"(2022YFB4003403);国家重点研发计划"高压纯氢/掺氢管道及关键设备运维安全保障技术"(2022YFB4003404);中国石油工程建设有限公司科研课题"在役集输管道转纯氢输送适应性评价技术研究"(CPECC2023KJ04)

10.3969/j.issn.1006-5539.2024.02.005

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