Xie Hanyu, Li Changjun, Wei Nan, Zhang Caigong, He Jie
College of Petroleum EngineeringSouthwest Petroleum University, Chengdu 610500, China.
Cyberspace Institute of Advanced Technology, Guangzhou University, Guangzhou 510000, China.
ACS Omega. 2023 Jul 18;8(30):27761-27775. doi: 10.1021/acsomega.3c03945. eCollection 2023 Aug 1.
Crude oil pipeline transportation is usually a closed process under a certain depth of burial, and the condition of oil in the pipeline changes with the continuous decline of temperature during the transportation process. The safety and energy consumption of pipeline transportation are closely related to the accurate prediction of oil temperature. It is a popular technique to use the thermally affected region to overcome the problem of an unclosed calculation domain caused by the semi-infinite soil around the pipeline. However, there is no clear and unified guidance on the thermally affected region at present, and improper region size may lead to a loss of the accuracy of the pipeline system. Therefore, our study answers two questions about the optimal form of the thermally affected region and its economic scope of application. The coupled solution of heat transfer and flow in a tridimensional numerical model is carried out, and the thermodynamic influences of the geometric shape and range of the thermally affected region on the buried pipeline system are investigated. The results show that the rectangular region is more suitable for the modeling of buried oil pipelines, and a region with 16 m width and 9 m height is recommended for the conventional case.
原油管道输送通常是在一定埋深下的封闭过程,管道内油品的状态在输送过程中会随着温度的持续下降而变化。管道输送的安全性和能耗与油温的准确预测密切相关。利用热影响区域来克服管道周围半无限土体导致的计算域不封闭问题是一种常用技术。然而,目前对于热影响区域尚无明确统一的指导,区域尺寸不当可能导致管道系统精度丧失。因此,我们的研究回答了关于热影响区域的最优形式及其经济应用范围的两个问题。进行了三维数值模型中传热与流动的耦合求解,研究了热影响区域的几何形状和范围对埋地管道系统的热力学影响。结果表明,矩形区域更适合于埋地输油管道的建模,对于常规情况,建议采用宽度为16 m、高度为9 m的区域。