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热油在不同颗粒土壤中泄漏的温度场模拟
引用本文:史俊杰,王岳,马跃,曹燕龙,代堪亮. 热油在不同颗粒土壤中泄漏的温度场模拟[J]. 辽宁石油化工大学学报, 2012, 32(4): 33-36
作者姓名:史俊杰  王岳  马跃  曹燕龙  代堪亮
作者单位:辽宁石油化工大学石油天然气工程学院,辽宁抚顺,113001
基金项目:辽宁省自然科学基金资助项目
摘    要:针对油品在颗粒直径不同的土壤中的泄漏问题,运用CFD模拟仿真软件,建立了土壤多孔介质中流固耦合的相变数学模型。模拟结果表明,泄漏前,稳态温度场各等温线的分布呈扁圆形且由内到外温度依次降低,土壤的颗粒大小不同时未产生明显的变化;泄漏后,在颗粒直径小的土壤中温度场等温线呈发散状由内到外依次减小分布,温度梯度随着泄漏油品持续进入多孔介质而趋于平稳;在颗粒直径大的土壤中,油流阻力小,致使冻土层中水分相变更快,等温线的无规则发散分布现象更为明显,对稳定温度场的破坏更加严重。

关 键 词:泄漏  土壤颗粒  多孔介质  模拟  等温线

Simulation of Temperature Field With Hot Oil Leak in the Soil of Different Particle
SHI Jun-jie , WANG Yue , MA Yue , CAO Yan-long , DAI Kan-liang. Simulation of Temperature Field With Hot Oil Leak in the Soil of Different Particle[J]. Journal of Liaoning University of Petroleum & Chemical Technology, 2012, 32(4): 33-36
Authors:SHI Jun-jie    WANG Yue    MA Yue    CAO Yan-long    DAI Kan-liang
Affiliation:(College of Petroleum Engineering,Liaoning Shihua University,Fushun Liaoning 113001,P.R.China)
Abstract:For the problem of oil leak in different soil particle diameter,using CFD simulation software to establish the soil porous media mid-stream solid coupled mathematical model of phase transitions.The simulation results show that before the leaking,the distribution of isotherms of the steady-state temperature field becomes the sharp of flat circle and the temperature lower from inside to outside.Meanwhile,this distribution does not have obvious changes in the different sizes of soil particles;after the leaking,the isothermal lines in the small particle diameter soil presented divergent patterns with reduction of the distribution from inside to outside.At the same time,with the leakage of oil flowing into the porous medium,the temperature gradient tended to be stable.In large particles soil,because of the low power of oil flow resistance,the change of water which exit in permafrost could happen faster,and the stochastic distribution of the isotherms of the divergent is more obvious.This situation destructed the stable temperature field more seriously.
Keywords:Leakage  Soil particles  Porous media  Simulation  Isotherm
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