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原油管输不可逆过程火用的传递和转换规律研究
引用本文:成庆林,丁宁,衣犀,赵妍,孙巍.原油管输不可逆过程火用的传递和转换规律研究[J].热科学与技术,2015,14(2):125-129.
作者姓名:成庆林  丁宁  衣犀  赵妍  孙巍
作者单位:东北石油大学提高油气采收率教育部重点实验室
基金项目:国家自然科学基金资助项目(51174042,51106020);中国石油科技创新基金资助项目(2012D-5006-0610);黑龙江省普通高等学校青年学术骨干计划支持资助项目(1252G005);黑龙江省省院科技合作资助项目(HZ201205)
摘    要:基于不可逆过程热力学的基本理论,探讨了原油管输过程各不可逆过程的强度量势场梯度驱动力作用下的火用流传递现象,结合原油管道输送过程的基本场平衡方程组和普遍化热力学体系的火用平衡动力学方程,推导了管输过程的热火用和压火用传递和转换方程,进一步建立管输过程的总火用传递方程。以某原油管道为例,对管道输送过程进行数值分析得到管输过程中热火用和压火用的传递和转换火用流分布规律,为将火用的传递转换规律应用到管道节能体系中提供理论基础和合理依据。

关 键 词:管输原油  不可逆过程  火用传递  火用转换
收稿时间:2015/5/5 0:00:00
修稿时间:2015/5/5 0:00:00

The study of exergy transfer and conversion law of irreversibleprocess in crude oil pipeline transportation
Cheng qing-lin,Ding ning,Yi xi,Zhao yan and Sun wei.The study of exergy transfer and conversion law of irreversibleprocess in crude oil pipeline transportation[J].Journal of Thermal Science and Technology,2015,14(2):125-129.
Authors:Cheng qing-lin  Ding ning  Yi xi  Zhao yan and Sun wei
Affiliation:CHENG Qing-lin;DING Ning;YI Xi;ZHAO Yan;SUN Wei;Department of Petroleum Engineering,Northeast Petroleum University;
Abstract:Based on the basic theory of irreversible thermodynamics, discussing the exergy flow phenomenon which was driven by the intensive quantity potential field gradient force in each irreversible process of crude oil pipeline transportation. Combined the basic balance equations of crude oil pipeline process with exergy balance dynamic equations of the generalized thermodynamic system, infering the equations of the heat and pressure pipeline process exergy transfer and conversion equations, then establishing the total exergy transfer equation in the pipeline process. Taking a crude oil pipeline as an example, numerical analysis was carried out on the process of pipeline transportation in the process of heat and pressure of exergy transfer and conversion flow distribution law, which could provide theoretical and reasonable basis for applying exergy transfer and conversion law to the pipe energy saving system.
Keywords:Oil transportation  irreversible process  exergy transfer  exergy conversion
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