个人简介
教育背景及工作经历:
2015/9-至今郑州轻工业大学,能源与动力工程学院
2010/9–2015/6重庆大学,动力工程及工程热物理,博士
主要讲授课程:工程热力学
科研项目:
国家自然科学基金青年基金项目:离子液体-水工质对太阳能吸收制冷两相流动热质传输特性研究
河南省高等学校重点科研项目计划:新型制冷工质对离子液体-水太阳能吸收制冷系统循环特性研究
郑州轻工业学院博士启动基金:离子液体-水为工质对的吸收制冷循环气液相流动及热质传递特性研究
研究领域
研究方向:1.吸收制冷技术2.多相流动与热质传输3.二氧化碳的捕集与分离技术4.界面现象与传递强化
近期论文
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代表性学术成果:
(1)FangfangZhang,FeifeiZheng,YalingYin,XuehongWu,GengGengChen.Fallingfilmflowof[EMIm]AcionicliquidaqueousonhorizontaltubesconsideringtheMarangonieffect[J],ExperimentalThermalandFluidScience,2019,107:130-139.
(2)FangfangZhang,LihengGuo,YudongDing,XunZhu,QiangLiao.FlowpatternandCO2absorptioninafallingfilmreactorwithmixedaqueoussolutionofionicliquidandMEA[J].AppliedThermalEngineering,2018,138:583-590.
(3)FangfangZhang,FeifeiZheng,XuehongWu,YalingYin,GengChen,2019Variationsofthermophysicalpropertiesandheattransferperformanceofnanoparticle-enhancedionicliquids[J]R.Soc.opensci.2019,6:182040.
(4)FangfangZhang,FeifeiZheng,XuehongWu,XuzhaoYang,QiZhang,YalingYin.Thermophysicalpropertiesof[EMIm]Acanditsbinaryandternarymixtureswithwaterandgraphenenanoplateletsforabsorptionrefrigeration[J].AIPAdvances,20199,055124.
(5)XunZhu,FangfangZhang,YudongDing,HailiuZhong,QiangLiao.Fallingfilmflowofionicliquid–MEAsolutiononverticalcoolingflatplateandchannel[J].AppliedThermalEngineering,2015,88:334-340.
(6)FangfangZhang,FeifeiZheng,XuehongWu,GengChen.Numericalstudyofthefallingfilmflowandheattransfercharacteristicintheabsorber[C].the16thInternationalHeatTransferConference,IHTC-16,2018.8.10-2018.8.15,Beijing.
(7)FangfangZhang,YudongDing,XunZhu,HongWang,QiangLiao.Marangonieffectinheatedfallingliquidfilmonaverticallyconfinedplate[C].the15thInternationalHeatTransferConference,IHTC-16,2014.8.10-2014.8.15,Kyoto.
(8)张芳芳,郑飞飞,吴学红,尹亚领,刘亚莉.离子液体[EMIm]Ac比热容、导热系数及黏度的研究[J].工程热物理学报,2018,39(08):1809-1813.
(9)张芳芳,丁玉栋,朱恂,廖强,王宏,赵林林.不同流型下离子液体-MEA复合工质降膜吸收CO2特性[J].化工学报,2015,66(05):1760-1766.
(10)张芳芳,丁玉栋,朱恂,王宏,廖强,宋淦,离子液体-MEA混合工质平板降膜吸收CO2[J].工程热物理学报,2014,(03):503-506.
(11)张芳芳,陈更,郑飞飞等.离子液体工质对吸收制冷循环研究进展[J].现代化工,2019,39(02):42-46+48.
(12)张芳芳,郑飞飞,张永海,吴学红,陈更.吸收器水平管外降膜流动数值模拟研究[J].低温与超导,2018,46(07):64-69.