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碳酸二乙酯液相导热系数实验研究 被引量:5

Thermal Conductivity of Diethyl Carbonate in Liquid Phase
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摘要 为了给可替代清洁燃料的研究提供急需的基础物性数据,利用瞬态单热线法对温度区间为250~390K、压力区间为0.1~30MPa的碳酸二乙酯(DEC)的导热系数进行了实验研究。将实验数据拟合成关于温度和压力的导热系数方程,并分析了碳酸二乙酯导热系数与温度和压力的关系,方程采用完全三次多项式形式。结果表明,碳酸二乙酯的导热系数随温度升高而减小,随压力的升高而增大。实验数据与拟合方程计算值的最大偏差为-1.94%,绝对平均偏差为0.84%。另外,文中对改进的瞬态单热线测量导热系数实验装置以及所采用的测量系统进行了说明。 In order to provide the urgently needed thermophysical data for the research of alternative clean fuels,the thermal conductivity of diethyl carbonate(DEC) in liquid phase was measured by transient single hot-wire method at the ranges of 250~390 K and 0.1~30 MPa.The measurement system and the used apparatus of transient single hot-wire method were described in detail.Using a perfect cubic polynomial formula,the measured thermal conductivity of DEC was correlated as a function of temperature and pressure,and the relationships of the thermal conductivity of DEC with temperature and pressure were analyzed separately.The results show that the thermal conductivity of DEC increases with the increase of temperature and decreases with the increase of pressure.The maximum deviation and the absolute average deviation between the measured thermal conductivities of DEC and the calculated ones are -1.94% and 0.84%,respectively.
出处 《高校化学工程学报》 EI CAS CSCD 北大核心 2008年第2期183-187,共5页 Journal of Chemical Engineering of Chinese Universities
基金 全国优秀博士论文作者专项资金(200540) 教育部新世纪优秀人才支持计划(NCET-05-0836)
关键词 导热系数 瞬态热线法 碳酸二乙酯 清洁燃料 thermal conductivity transient single hot-wire method diethyl carbonate clean fuel
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参考文献7

  • 1俞能志.酯交换法合成碳酸二乙酯工艺过程控制[J].安徽化工,2004,30(4):29-30. 被引量:3
  • 2马新宾,张震,石海峰,陈学成,王胜平.碳酸二乙酯的合成方法[J].化学通报,2003,66(8):528-535. 被引量:39
  • 3雷群芳,侯虞钧.液体结构与热导率模型[J].高校化学工程学报,2001,15(6):516-520. 被引量:7
  • 4Healy J J,De Groot J J,Kestin J.The theory of the transient hot-wire method for measuring thermal conductivity[J].Physica,1976,82C:392-408.
  • 5SONG Lin-feng(宋琳丰).Experimental Research of Thermal Conductivity of Dimethyl Carbonate and Diethyl Carbonate in the Liquid Phase(碳酸二甲酯与碳酸二乙酯导热系数的实验研究)[D].Xi'an(西安):Xi'an Jiaotong University(西安交通大学),2007.
  • 6WU Jiang-tao(吴江涛).Development of the New Thermophysical Properties Measurement System and Research of Thermophysical Properties of Dimethy Ether(高精度流体热物性测试实验系统的研制及二甲醚热物理性质的研究)[D].Xi'an(西安):Xi'an Jiaotong University(西安交通大学),2003.
  • 7吴江涛,刘志刚,潘江.高精度流体热物性测试实验系统的研制[J].西安交通大学学报,2004,38(9):937-942. 被引量:14

二级参考文献20

  • 1胡英 刘国杰 等.应用统计力学-流体物性的研究基础[M].北京:化学工业出版社,1993..
  • 2[1]Harvey A H, Laesecke A. Fluid properties and new technologies: connecting design with reality[J]. Chemical Engineering Progress, 2002, 98(2): 34-41.
  • 3[2]国家技术监督局计量司. 1990年国际温标宣贯手册 [Z]. 北京: 中国计量出版社, 1990.
  • 4[8]<计量测试技术手册>编辑委员会.计量测试技术手册:第6卷[Z].北京:中国计量出版社,1996.
  • 5[9]Fujiwara K, Nakamura S, Noguchi M. Critical parameters and vapor pressure measurements for 1,1,1-trifluoro-ethane (R-143a) [J]. Journal of Chemical and Engineering Data, 1998, 43(1): 55-59.
  • 6[10]Kao C C, Miller R N. Vapor pressures of hexafluoroethane and octafluorocyclobutane [J]. Journal of Chemical and Engineering Data, 2000, 45(2): 295-297.
  • 7[12]Wu J T, Liu Z G, Pan J, et al. Vapor pressure measurements of dimethyl ether from 233 to 399 K [J]. Journal of Chemical and Engineering Data, 2004, 49(1): 32-34.
  • 8[14]Wu J T, Liu Z G, Wang F K, et al. Surface tension of dimethyl ether from 213 to 368 K [J]. Journal of Chemical and Engineering Data, 2003, 48(6): 1 571-1 573.
  • 9[15]Wu J T, Liu Z G, Bi S S, et al. Viscosity of saturated liquid dimethyl ether from 227 to 343 K [J]. Journal of Chemical and Engineering Data, 2003,48(2): 426-429.
  • 10Lei Q,Chem Eng Sci,1997年,52卷,8期,1243页

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