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润滑油基础油黏度调合模型的优化及应用
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作者 张安贵 王汉文 +5 位作者 李艳 于晓文 梁雪美 王恒 燕艺楠 郑舒丹 《石油炼制与化工》 CAS CSCD 北大核心 2022年第5期95-102,共8页
研究了天然气合成润滑油基础油(简称基础油)与其他3种基础油的混合油黏度调合数学模型的准确度和适用性.测定了天然气合成基础油GTL420分别与合成基础油PAO10、矿物基础油500N和煤基费-托合成基础油CTL10按不同比例调合的混合基础油在4... 研究了天然气合成润滑油基础油(简称基础油)与其他3种基础油的混合油黏度调合数学模型的准确度和适用性.测定了天然气合成基础油GTL420分别与合成基础油PAO10、矿物基础油500N和煤基费-托合成基础油CTL10按不同比例调合的混合基础油在40℃和100℃时的运动黏度,对黏度调合模型进行优化.基于偏差率、均方根误差、残差平方和以及决定系数对模型进行评价.结果表明:Arrhenius方程在3种调合体系中的偏差率最大,不能精确描述混合基础油的真实运动黏度;Lederer-Roegiers Sr方程和Grunberg-Nissan方程表现出相似的模拟效果,但在不同调合体系中的有效性不同;Oswal-Desai方程的结构较复杂,但准确度和适用性是最优的. 展开更多
关键词 天然气 合成基础油 混合基础油 黏度调合模型 优化
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Study on the Thermal Ignition of Gasoline-air Mixture in Underground Oil Depots based on Experiment and Numerical Simulation 被引量:6
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作者 Ou Yihong Du Yang +2 位作者 Jiang Xingsheng Wang dong Liang Jianjun 《Journal of Thermal Science》 SCIE EI CAS CSCD 2010年第2期173-181,共9页
The study on the special phenomenon,occurrence process and control mechanism of gasoline-air mixture thermal ignition in underground oil depots is of important academic and applied value for enriching scientific theor... The study on the special phenomenon,occurrence process and control mechanism of gasoline-air mixture thermal ignition in underground oil depots is of important academic and applied value for enriching scientific theories of explosion safety,developing protective technology against fire and decreasing the number of fire accidents.In this paper,the research on thermal ignition process of gasoline-air mixture in model underground oil depots tunnel has been carried out by using experiment and numerical simulation methods.The calculation result has been demonstrated by the experiment data.The five stages of thermal ignition course,which are slow oxidation stage,rapid oxidation stage,fire stage,flameout stage and quench stage,have been firstly defined and accurately descried.According to the magnitude order of concentration,the species have been divided into six categories,which lay the foundation for explosion-proof design based on the role of different species.The influence of space scale on thermal ignition in small-scale space has been found,and the mechanism for not easy to fire is that the wall reflection causes the reflux of fluids and changes the distribution of heat and mass,so that the progress of chemical reactions in the whole space are also changed.The novel mathematical model on the basis of unification chemical kinetics and thermodynamics established in this paper provides supplementary means for the analysis of process and mechanism of thermal ignition. 展开更多
关键词 underground oil depots gasoline-air mixture thermal ignition EXPERIMENT numerical simulation
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