理论教育 近五年来取得的成果附录

近五年来取得的成果附录

时间:2023-06-16 理论教育 版权反馈
【摘要】:(1)文章[1]Facheng Qiu,Zuohua Liu,Renlong Liu,et al. Fluid flow signals processing based on fractional Fourier transform in a stirred tank reactor[J]. ISA Transactions,2019,90:268-277.[2]Facheng Qiu,Zuoh

近五年来取得的成果附录

(1)文章

[1]Facheng Qiu,Zuohua Liu,Renlong Liu,et al. Fluid flow signals processing based on fractional Fourier transform in a stirred tank reactor[J]. ISA Transactions,2019,90:268-277.

[2]Facheng Qiu,Zuohua Liu,Renlong Liu,et al. Gas-liquid mixing performance,power consumption,and local void fraction distribution in stirred tank reactors with a rigid-flexile impeller[J]. Experimental Thermal and Fluid Science,2018,97:351-363.

[3]Facheng Qiu,Zuohua Liu,Renlong Liu,et al. Experimental study of power consumption,local characteristics distributions and homogenization energy in gas-liquid stirred tank reactors[J]. Chinese Journal of Chemical Engineering,2019,27 (2):278-285.

[4]Facheng Qiu,Zuohua Liu,Renlong Liu,et al. Fluid flow characteristics analysis based on fractional Fourier transform in gas-liquid stirred tank reactors[J]. Chemical Engineering Transactions,2019,Accept.

[5]邱发成,刘作华,刘仁龙,等. 偏心射流-刚柔组合桨搅拌器内混沌混合行为研究[J]. 化工学报,2018,69 (02):618-624.

[6]Deyin Gu,Zuohua Liu,Facheng Qiu,et al. Design of impeller blades for efficient homogeneity of solid-liquid suspension in a stirred tank reactor[J]. Advanced Powder Technology,2017,28(10):2514-2523.

[7]Deyin Gu,Zuohua Liu,Zhaoming Xie,et al. Numerical simulation of solid-liquid suspension in a stirred tank with a dual punched rigid-flexible impeller [J]. Advanced Powder Technology,2017,28(10):2723-2734.

[8]Deyin Gu,Zuohua Liu,Chuanlin Xu,et al. Solid-liquid mixing performance in a stirred tank with a double punched rigid-flexible impeller coupled with a chaotic motor [J].Chemical Engineering & Processing: Process Intensification,2017,118:37-46.

[9]Deyin Gu,Zuohua Liu,Jun Li,et al. Intensification of chaotic mixing in a stirred tank with a punched rigidflexible impeller and a chaotic motor [J]. Chemical Engineering &Processing: Process Intensification,2017,122:1-9.

[10]Deyin Gu,Zuohua Liu,Chuanlin Xu,et al. CFD simulation of solid suspension in a stirred reactor driven by a punched rigid-flexible impeller [J]. International Journal of Chemical Reactor Engineering,2018,16(5):1-15.

[11]Deyin Gu,Zuohua Liu,Changyuan Tao,et al. Design of impeller blades for intensification of gas-liquid dispersion process in a stirred tank[J]. International Journal of Chemical Reactor Engineering,2018,16(12):1-17.

[12]谷德银,刘作华,邱发成,等. 穿流-刚柔组合桨强化固液两相的悬浮行为[J]. 化工学报,2017,68(12):4556-4564.

[13]谷德银,刘作华,张姬一哲,等. 搅拌槽内气液两相混沌混合及分散特性[J]. 化工学报,2018,69(2):630-637.

[14]Deyin Gu,Zuohua Liu,Changyuan Tao,et al. Numerical simulation of gas-liquid dispersion in a stirred tank agitated by punched rigid-flexible impeller[J]. International Journal of Chemical Reactor Engineering,2019,17(4):1-17.

[15]Deyin Gu,Zuohua Liu,Chuanlin Xu,et al. PIV measurement and CFD simulation of liquid-liquid mixing in mixer settler with rigid-flexible impeller,International Journal of Chemical Reactor Engineering[C]. Boston,2019,DOI: https:/ /doi. org/10. 1515/ijcre-2019-0065.

[16]熊黠,刘作华,谷德银,等. 刚柔组合桨强化粉煤灰酸浸搅拌槽内固液混沌混合[J]. 化工学报,2019,70(5):1693-1701.

[17]李兵,杨义,刘作华,等. 湿法磷酸固-液体系混沌混合与浸出强化行为[J]. 化工学报,2019,70(5):1742-1749.

[18]刘作华,许恢琴,谷德银,等. 单层钢丝柔性桨强化搅拌槽中流体混沌混合行为[J]. 化工学报,2017,68(12):4592-4599.

[19]刘作华,许传林,何木川,等. 穿流式刚-柔组合搅拌桨强化混合澄清槽内油-水两相混沌混合[J].化工学报,2017,68(2):637-642.

[20]朱俊,周政霖,刘作华,等. 刚柔组合桨强化流体混合的流固耦合行为[J]. 化工学报,2015,66(10):3849-3856.

[21]刘作华,周政霖,朱俊,等. 湿法提钒浸出段搅拌反应器结构的优化[J]. 化工进展,2015,34(5):1241-1245.

[22]朱俊,刘作华,郑雄攀,等. 双层刚柔组合桨调控流体宏观不稳定性行为[J].化工学报,2015,66(3):896-904.

(2)专利

[1]刘作华,许传林,陶长元,等.一种提高抽吸能力和混合效率的组合式搅拌桨:中国,201711229125.1 [P]. 2017-11-29.

[2]刘作华,许传林,陶长元,等. 一种强化流体混合的组合式搅拌桨:中国,201610681937.9 [P]. 2016-08-18.

[3]刘作华,刘培乔,谷德银,等. 一种强化流体混沌混合的刚柔组合式搅拌桨:中国,201680001618.7[P]. 2016-11-08.

[4]刘作华,陈娜,陶长元,等. 一种强化物料混合的搅拌装置:中国,201510017917.7[P].2015-01-14.(www.daowen.com)

[5]刘作华,杨义,陶长元,等. 一种强化矿物浸出的刚柔组合式搅拌桨:中国,CN 201710621138.7[P].2017-07-27.

[6]刘作华,王靓,陶长元,等. 一种高效节能的腰鼓型弹簧弹性搅拌桨:中国,201810251346.7[P].2018-03-26.

[7]刘作华,熊黠,陶长元,等. 一种提高流体混合效果的新型弹性搅拌桨:中国,201810209935.9[P].2018-03-14.

[8]刘作华,王闯,陶长元,等黠. 一种新型弹性搅拌桨搅拌反应器: 中国,201810216631.5[P].2018-03-16.

[9]刘作华,王闯,陶长元,等. 一种新型环形弹性刚柔组合搅拌桨搅拌反应器:中国,CN 201810828477.7[P].2018-07-25.

[10]刘作华,谷德银,陶长元,等. 一种提高流体湍动程度的刚柔组合式新型搅拌桨:中国,201710806323.3[P].2017-09-08.

[11]刘作华,谷德银,陶长元,等. 一种破坏流场隔离区的新型刚柔组合式搅拌桨:中国,201710293479.6[P].2017-04-28.

[12]刘作华,谷德银,陶长元,等. 一种高效节能的新型刚柔组合搅拌桨:中国,201710101830.7[P].2017-02-24.

[13]刘作华,谷德银,陶长元,等. 一种刚柔组合式搅拌桨的高效搅拌装置:中国,201710101800.6[P].2017-02-24.

(3)学术会议

[1]邱发成,刘作华,谷德银,等. 基于CFD 刚柔组合桨偏心射流数值模拟研究[C].2017 中国化工年会. 北京:2017.

[2]谷德银,刘作华,邱发成,等. 刚柔组合桨强化气液两相混沌混合[C]. 2017 中国化工学会年会,北京:2017.

[3]谷德银,刘作华,许传林,等. 刚柔组合桨强化气液分散行为的实验研究[C]. 第四届全国搅拌与混合技术会议,北京:2016.

[4]谷德银,刘作华,刘仁龙,等. 刚柔组合桨强化搅拌槽中固-液两相混沌混合[C]. 第八届化工过程强化分离精制技术与设备研究进展及工业化应用交流会,南京:2016.

[5]陈娜,刘作华,何海先,等. 应用组合桨强化混合澄清槽内的搅拌过程[C]. 2015 中国化工学会,北京:2015.

[6]何海先,李爽,陈娜,等. 柔性轴耦合混沌电机强化流体混合行为[C]. 2015 中国化工学会,北京:2015.

[7]Zuohua Liu,Facheng Qiu,Renlong Liu,et al. Investigation of fluid flow characteristics based on fractional Fourier transform in gas-liquid stirred tank reactors equipped with a rigid-flexile impeller[C]. The 14th International Congress on Chemical and Process Engineering,Bologna,2019.

[8]Deyin Gu,Zuohua Liu,Facheng Qiu,et al. Chaotic mixing intensified by a punched rigid-flexible impeller[C]. the 23rd International Congress of Chemical and Process Engineering,Prague,2018.

(4)软件著作权

[1]流体混合宏观不稳定性频率计算软件V1.0,登记号:2018SR053917,开发完成日期:2017.07.28.

[2]搅拌反应器故障诊断多尺度熵计算软件,登记号:2018SR051947,开发完成日期:2017.09.18.

[3]流体混合最大Lyapunov 指数计算软件[简称:Lyapunov 指数计算软件]V1.0,登记号:2016SR287167,开发完成日期:2016.06.30.

(5)专著

刘作华,王运东,陶长元. 流体混沌混合及搅拌过程强化方法[M]. 重庆: 重庆大学出版社,2016.

(6)获奖

近五年搅拌与混合获奖一览表

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