摘要
为了准确测量高温高压下乳化煤油的比定压热容,基于能量守恒的量热计理论,搭建了一套流动型比定压热容在线测量系统。系统温度测量范围为301~900K,测量压力可达10MPa。通过去离子水和质量比1:1正辛烷-正庚烷混合物对测量系统进行标定,实验结果与文献值进行比较,最大相对误差小于±1%,相对误差绝对平均值在0.46%以内。在此基础上,对含水质量分数为10%,20%,30%,50%的四种乳化煤油比定压热容进行测量,温度为301~880K,压力为3MPa。实验结果与航空煤油RP-3进行对比,结果表明:相同工况下,乳化煤油比定压热容较大,吸热能力更强,冷却壁温效果更好。该系统的搭建为进一步研究乳化碳氢燃料比定压热容创造了条件。
A set of constant pressure heat capacity on-line measurement system based on the energy conservation calorimeter theory is established in order to accurately measure the specific heat capacity of emulsified kerosene at high temperature and pressure,which temperature covering from 301 to 900 K and pressures up to 10 MPa. The deionized water and the binary mixtures of n-octane and n-heptane with a mass ratio of 1:1 were measured for the calibration of the measurement system. Compared with the literature values,the experimental results show that the maximum relative deviations were below ± 1% and the absolute average relative deviations were within 0.46%. The isobaric specific heat capacity of emulsified kerosene with water content fraction of 10%,20%,30% and 50% were measured at the temperatures from 301 to 880 K and the pressure of 3 MPa. Compared with those of aviation kerosene RP-3,the experimental results show that the isobaric specific heat capacity of emulsified kerosene is larger and the heat capacity is stronger and the effect of cooling wall temperature is better.The construction of the system creates the conditions to further study isobaric specific heat capacity of the emulsified hydrocarbon fuel.
作者
贺宇锋
郭亚军
冯松
毕勤成
HE Yu-Feng;GUO Ya-jun;FENG Song;BI Qin-Cheng(School of Environmental and Municipal Engineering,Xi' an University of Architecture & Technology,Xi'an 710055,China;State Key Laboratory of Muhiphase Flow in Power Engineering,Xi' an Jiaotong University,Xi' an 710049,China)
出处
《推进技术》
EI
CAS
CSCD
北大核心
2018年第7期1660-1666,共7页
Journal of Propulsion Technology
基金
青年科学基金项目(21306147)
国家博士后科学基金项目(2013M532044)
关键词
超临界压力
乳化煤油
定压比热容
在线测量
Supercritical pressure
EmuLsified fuel
Specific heat capacity
On-line measurement