不同土壤中保温层破损对埋地输油管道温降特性的影响研究OA
Study on the Impact of Insulation Damage on Temperature Drop Characteristics of Buried Oil Pipelines in Different Soils
埋地输油管道保温层破损会显著改变管周土壤温度场的分布,进而影响管道的热力性能和运行安全.基于多物理场耦合传热理论,构建了埋地输油管道三维稳态传热模型,定量分析了不同土壤介质(黏土、壤土、砂等)条件下管道的温降特性和管周土壤温度场的演化规律;采用ANSYS Fluent 2022软件对模型进行求解,求解过程中考虑了水分侵入效应.结果表明,在砂土地段,埋地输油管道保温层全部破损的临界段数为15段(单段长度100 m),对应的临界破损距离为 1.5 km;依据此临界距离设置初始段监测点,80 km管道共需设置 56个温度监测点;各监测点温度沿管道轴向呈非线性下降趋势,其中第28个监测点(管道42.0 km处)的出口温度首次降至析蜡临界温度(45℃).研究提出的"临界距离分段监测法"可实现砂土地段埋地管道保温层破损状态的精准监测,为埋地管道的安全运行提供技术支撑.
Damage to insulation layer of buried oil pipelines will significantly change the distribution of the soil temperature field around the pipeline,thereby affecting the thermal performance and operational safety of the pipeline.Based on the theory of multi-physics field coupling,this study establishes a three-dimensional steady-state heat transfer model to quantitatively analyze the temperature drop characteristics of the pipeline and the evolution law of the soil temperature field under different soil types(clay,loam,sand).The model was solved using ANSYS Fluent 2022,with the effect of moisture intrusion considered.The numerical simulation results show that in sand soil,the critical number of segments with complete insulation damage is 15 segments(each 100 meters),corresponding to a critical damage distance of 1.5 kilometers.According to this critical distance,initial monitoring points are set,and a total of 56 monitoring points are required for an 80-kilometer pipeline.The temperature at each monitoring point shows a non-linear decreasing trend along the pipeline.The outlet temperature at the 28th monitoring point(42 kilometers away)drops to the wax precipitation point of 45℃for the first time.The"critical distance segmented monitoring method"proposed in this study can achieve accurate monitoring of the pipeline damage status in the sand soil section,providing technical support for the safe operation of the pipeline.
班梓轩;樊丽敏;周志强;任泽乾;关丽;洪兰兰;刘德俊;荣峰
辽宁石油化工大学 石油天然气工程学院,辽宁 抚顺 113001中国石油天然气股份有限公司 辽宁朝阳销售分公司,辽宁 朝阳 122000中国石油天然气管道工程有限公司 沈阳分公司,辽宁 沈阳 110031中国石油天然气管道工程有限公司 沈阳分公司,辽宁 沈阳 110031中国石油天然气管道工程有限公司 沈阳分公司,辽宁 沈阳 110031中国石化销售股份有限公司福建泉州石油分公司,福建 泉州 362000辽宁石油化工大学 石油天然气工程学院,辽宁 抚顺 113001辽宁石油化工大学 石油天然气工程学院,辽宁 抚顺 113001
能源科技
埋地管道保温层破损温度场多物理场耦合数值模拟
Buried pipelineInsulation layer damageTemperature fieldMulti-physics field couplingNumerical simulation
《辽宁石油化工大学学报》 2026 (3)
66-72,7
辽宁省科技厅博士启动基金项目(2025-BS-0416).
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