CIESC Journal ›› 2021, Vol. 72 ›› Issue (1): 483-494.DOI: 10.11949/0438-1157.20201126
• Reviews and monographs • Previous Articles Next Articles
YANG Xiaoyong1(),DAI Jian1,WANG Bingjie1,YAN Shenglin1,YANG Hang1,BAI Zhishan1(),PENG Chong2
Received:
2020-08-06
Revised:
2020-10-19
Online:
2021-01-05
Published:
2021-01-05
Contact:
BAI Zhishan
杨晓勇1(),代健1,王炳捷1,严圣林1,杨航1,白志山1(),彭冲2
通讯作者:
白志山
作者简介:
杨晓勇(1989—),男,博士,博士后,基金资助:
CLC Number:
YANG Xiaoyong, DAI Jian, WANG Bingjie, YAN Shenglin, YANG Hang, BAI Zhishan, PENG Chong. Advancement in two-phase flow of annular centrifugal extractor[J]. CIESC Journal, 2021, 72(1): 483-494.
杨晓勇, 代健, 王炳捷, 严圣林, 杨航, 白志山, 彭冲. 环隙式离心萃取器内部两相流动研究进展[J]. 化工学报, 2021, 72(1): 483-494.
Add to citation manager EndNote|Ris|BibTeX
1 | 叶春林. 圆筒式离心萃取器[M]. 北京: 原子能出版社, 2007: 36-38. |
Ye C L. Cylinderical Centrifugal Extractor[M]. Beijing: Atomic Energy Press, 2007: 36-38. | |
2 | Andereck C D, Liu S S, Swinney H L. Flow regimes in a circular Couette system with independently rotating cylinders[J]. Journal of Fluid Mechanics, 1986, 164: 155-183. |
3 | Deshmukh S S, Sreepriya V A, Joshi J B, et al. Computational flow modeling and visualization in the annular region of annular centrifugal extractor[J]. Industrial & Engineering Chemistry Research, 2007, 46(25): 8343-8354. |
4 | 叶立, 李立楠, 陈丹, 等. 泰勒流反应器的流动及反应特性[J]. 化工学报, 2013, 64(6): 2058-2064. |
Ye L, Li L N, Chen D, et al. Flow and reaction performance of Taylor-vortex flow reactor[J]. CIESC Journal, 2013, 64(6): 2058-2064. | |
5 | Ramezani M, Legg M J, Haghighat A, et al. Experimental investigation of the effect of ethyl alcohol surfactant on oxygen mass transfer and bubble size distribution in an air-water multiphase Taylor-Couette vortex bioreactor[J]. Chemical Engineering Journal, 2017, 319: 288-296. |
6 | Pawar S B, Thorat B N. CFD simulation of Taylor-Couette flow in scraped surface heat exchanger[J]. Chemical Engineering Research & Design, 2012, 90(3A): 313-322. |
7 | Webster D S, Williamson C L, Ward J F. Hydraulic performance of a 5-inch centrifugal contactor: DP-370 [R]. USA: Savannah River Laboratory, 1962. |
8 | Bernstein G, Grosvenor D, Lenc J, et al. A high-capacity annular centrifugal contactor[J]. Nuclear Technology, 1973, 20(3): 200-202. |
9 | 段五华, 张春秀, 周秀珠, 等. ϕ50 mm核用离心萃取器的研制及其水力学性能[J]. 核科学与工程, 2006, 26(2): 97-102. |
Duan W H, Zhang C X, Zhou X Z, et al. Development and hydraulic performance of ϕ50 mm centrifugal extractor used in nuclear industry[J]. Chinese Journal of Nuclear Science and Engineering, 2006, 26(2): 97-102. | |
10 | 张志庚, 张成群, 周嘉贞, 等. ϕ 230环隙式离心萃取器的流体力学性能研究[J]. 化学工程, 1993, 21(4): 21-28. |
Zhang Z G, Zhang C Q, Zhou J Z, et al. Study on hydromechanical properties of ϕ230 annular centrifugal extractor[J]. Chemical Engineering(China), 1993, 21(4): 21-28. | |
11 | 周嘉贞, 周秀珠, 于文东, 等. 一种放化分离用的微型离心萃取器[J]. 清华大学学报 (自然科学版), 1997, (5): 46-49. |
Zhou J Z, Zhou X Z, Yu W D, et al. A miniature centrifugal extractor for radiochemical separation[J]. Journal of Tsinghua University ( Sci & Tech), 1997, (5): 46-49. | |
12 | 李传博, 张宇, 晏太红, 等. ϕ20 mm离心萃取器的水力学性能[J]. 核化学与放射化学, 2011, 33(6): 349-352. |
Li C B, Zhang Y, Yan T H, et al. Hydraulic performance of ϕ20 mm centrifugal extractor[J]. Journal of Nuclear and Radiochemistry, 2011, 33(6): 349-352. | |
13 | 李传博, 郑卫芳, 晏太红, 等. ϕ10 mm离心萃取器水力学性能研究[J]. 原子能科学技术, 2012, 46(5): 530-532. |
Li C B, Zheng W F, Yan T H, et al. Study on hydraulic performance of ϕ10 mm centrifugal extractor[J]. Atomic Energy Science and Technology, 2012, 46(5): 530-532. | |
14 | 陈崔龙, 张德友, 卓培忠, 等. 实验室用小流量环隙式离心萃取器的设计[J]. 流体机械, 2009, 37(7): 30-33. |
Chen C L, Zhang D Y, Zhuo P Z, et al. Design of small flow annular centrifugal extractor for laboratory[J]. Fluid Machinery, 2009, 37(7): 30-33. | |
15 | 陈崔龙, 张德友, 陈道林, 等. 大长径比直联环隙式离心萃取分离机的研制[J]. 湿法冶金, 2011, 30(4): 340-343. |
Chen C L, Zhang D Y, Chen D L, et al. Development of a big length-to-diameter ratio direct-connect centrifugal extracting separator [J]. Hydrometallurgy of China, 2011, 30(4): 340-343. | |
16 | Duan W H, Sun T X, Wang J C. An industrial-scale annular centrifugal extractor for the TRPO process[J]. Nuclear Science and Techniques, 2018, 29(4): 9. |
17 | He X M. Development of compact miniature annular centrifugal contactor for hot cell placement[J]. Chemical Engineering Communications, 2008, 195(10): 1227-1239. |
18 | Brown M A, Wardle K E, Lumetta G, et al. Accomplishing equilibrium in ALSEP: demonstrations of modified process chemistry on 3-D printed enhanced annular centrifugal contactors[J]. Procedia Chemistry, 2016, 21: 167-173. |
19 | Chen H L, Zheng Q, Duan W H. Hydraulic characteristics of n-octanol/aqueous solution systems in a 25-mm annular centrifugal extractor[J]. Separation Science and Technology, 2019, 55(8): 1515-1523. |
20 | Deshmukh S S, Sathe M J, Joshi J B, et al. Residence time distribution and flow patterns in the single-phase annular region of annular centrifugal extractor[J]. Industrial & Engineering Chemistry Research, 2009, 48(1): 37-46. |
21 | Xu J Q, Duan W H, Zhou X Z, et al. Extraction of phenol in wastewater with annular centrifugal contactors[J]. Journal of Hazardous Materials, 2006, 131(1/2/3): 98-102. |
22 | Yang X, Jie F, Wang B, et al. High-efficient synergistic extraction of Co(II) and Mn(II) from wastewater via novel microemulsion and annular centrifugal extractor[J]. Separation and Purification Technology, 2019, 209: 997-1006. |
23 | 包福毅, 杨明德, 方军, 等. 采用离心萃取器萃取净化氯化浸出镍溶液[J]. 矿冶工程, 1995, 15(1): 42-47. |
Bao F Y, Yang M D, Fang J, et al. A process for purification of the nickel leacheate from chlorination leaching in centrifugal extractors[J]. Mining and Metallurgical Engineering, 1995, 15(1): 42-47. | |
24 | Jing X H, Wang J Y, Cao H B, et al. Rapid selective extraction of V(V) from leaching solution using annular centrifugal contactors and stripping for NH4VO3[J]. Separation and Purification Technology, 2017, 187: 407-414. |
25 | Wen J W, Ning P G, Cao H B, et al. Recovery of high-purity vanadium from aqueous solutions by reusable primary amines N1923 associated with semiquantitative understanding of vanadium species[J]. ACS Sustainable Chemistry & Engineering, 2018, 6(6): 7619-7626. |
26 | Zhou J Z, Duan W H, Zhou X Z, et al. Extraction of hydrocortisone from the fermentation liquor with annular centrifugal contactors[J]. Separation Science and Technology, 2006, 41(3): 573-581. |
27 | Schuur B, Winkelman J G M, Vries J G D, et al. Experimental and modeling studies on the enantio-separation of 3,5-dinitrobenzoyl-(R),(S)-leucine by continuous liquid-liquid extraction in a cascade of centrifugal contactor separators[J]. Chemical Engineering Science, 2010, 65(16): 4682-4690. |
28 | 潘九海, 甘仁武, 张艳红, 等. 环隙式离心萃取器流场研究进展[J]. 现代化工, 2012, 32(6): 26-29. |
Pan J H, Gan R W, Zhang Y H, et al. Research advances of flow field of annular centrifugal extractor[J]. Modern Chemical Industry, 2012, 32(6): 26-29. | |
29 | Hwang J Y, Yang K S. Numerical study of Taylor-Couette flow with an axial flow[J]. Computers & Fluids, 2004, 33(1): 97-118. |
30 | Wereley S T, Lueptow R M. Velocity field for Taylor-Couette flow with an axial flow[J]. Physics of Fluids, 1999, 11(12): 3637-3649. |
31 | Bai Z S, Zhang J, Gan R W, et al. Effect of cylinder rotation on flow characteristics of the annular region in annular centrifugal extractor[J]. Separation Science, 2015, 50(6): 813-819. |
32 | Eggert A, Kogl T, Arlt W, et al. Computer tomographic detection of the liquid-liquid mixing and separation within the annular centrifugal contactor extractor[J]. Chemical Engineering Research & Design, 2019, 142: 143-153. |
33 | Li S, Duan W, Chen J, et al. CFD simulation of gas-liquid-liquid three-phase flow in an annular centrifugal contactor[J]. Industrial & Engineering Chemistry Research, 2012, 51(34): 11245-11253. |
34 | 杨晓勇. 基于三元溶剂与离心萃取协同技术的煤焦油加工硫酸钠废水资源化研究[D]. 上海: 华东理工大学, 2019. |
Yang X Y. Study on synergetic treatment of sodium sulfate wastewater from coal tar processing by ternary solvent and centrifugal extractor[D]. Shanghai: East China University of Science and Technology, 2019. | |
35 | Wang C Q, Li S W, Duan W H, et al. CFD simulations of the air/water two-phase flow in an annular centrifugal contactor[J]. Energy Procedia, 2013, 39: 467-473. |
36 | Misumi R, Kunii K, Todoroki K, et al. Rotor speed and supply flow rate effects on flow behavior in an annular centrifugal extractor[J]. Kag. Kog. Ronbunshu, 2018, 44(3): 135-141. |
37 | Wardle K E, Allen T R, Anderson M H, et al. Free surface flow in the mixing zone of an annular centrifugal contactor[J]. AIChE Journal, 2008, 54(1): 74-85. |
38 | Wardle K E, Lee T. Finite element lattice Boltzmann simulations of free surface flow in a concentric cylinder[J]. Computers & Mathematics with Applications, 2013, 65(2): 230-238. |
39 | 李志康, 商鲁伟, 聂苗苗, 等. G/O/W微分散体系实现甲酸/三辛胺-正辛醇体系萃取分离[J]. 化工学报, 2020, 71(9): 4219-4227. |
Li Z K, Shang L W, Nei M M, et al. Extraction of formic acid with G/O/W microdispersion system[J]. CIESC Journal, 2020, 71(9): 4219-4227 | |
40 | Eduardo M F, Canedo L, Zehev T, et al. An experimental study of bubble deformation in viscous liquids in simple shear flow[J]. AIChE Journal, 1993, 39(4): 553-559. |
41 | Prakash J, Lavrenteva O M, Byk L, et al. Interaction of equal-size bubbles in shear flow[J]. Physical Review E, 2013, 87(4): 043002. |
42 | Prakash J, Lavrenteva O M, Nir A. Interaction of bubbles in an inviscid and low-viscosity shear flow[J]. Physical Review E, 2013, 88(2): 023021. |
43 | Deng R S, Wang C H, Smith K A. Bubble behavior in a Taylor vortex[J]. Physical Review E, 2006, 73(3): 036306. |
44 | Ramezani M, Kong B, Gao X, et al. Experimental measurement of oxygen mass transfer and bubble size distribution in an air-water multiphase Taylor-Couette vortex bioreactor[J]. Chemical Engineering Journal, 2015, 279: 286-296. |
45 | Gao X, Kong B, Vigil R D. CFD investigation of bubble effects on Taylor-Couette flow patterns in the weakly turbulent vortex regime[J]. Chemical Engineering Journal, 2015, 270: 508-518. |
46 | Joseph D D, Nguyen K, Beavers G S. Non-uniqueness and stability of the configuration of flow of immiscible fluids with different viscosities[J]. Journal of Fluid Mechanics, 1984, 141: 319-345. |
47 | Campero R J, Vigil R D. Flow patterns in liquid-liquid Taylor-Couette-Poiseuille flow[J]. Industrial & Engineering Chemistry Research, 1999, 38(3): 1094-1098. |
48 | Nakase M, Makabe R, Takeshita K. Relation between oil-water flow and extraction performance in liquid-liquid countercurrent centrifugal extractors with Taylor vortices[J]. Journal of Nuclear Science and Technology, 2013, 50(3): 287-295. |
49 | Campbell C, Olsen M G, Vigil R D. Flow regimes in two-phase hexane/water semibatch vertical Taylor vortex flow[J]. Journal of Fluids Engineering-Transactions of the ASME, 2019, 141(11): 111203. |
50 | Zhu X, Vigil R D. Banded liquid-liquid Taylor‐Couette‐Poiseuille flow[J]. AIChE Journal, 2004, 47(9): 1932-1940. |
51 | Zhu X, Campero R J, Vigil R D. Axial mass transport in liquid-liquid Taylor-Couette-Poiseuille flow[J]. Chemical Engineering Science, 2000, 55(21): 5079-5087. |
52 | Sathe M J, Deshmukh S S, Joshi J B, et al. Computational fluid dynamics simulation and experimental investigation: study of two-phase liquid-liquid flow in a vertical Taylor-Couette contactor[J]. Industrial & Engineering Chemistry Research, 2010, 49(1): 14-28. |
53 | Hass P A. Turbulent dispersion of aqueous drops in organic liquids[J]. AIChE Journal, 1987, 33(6): 987-995. |
54 | Kadam B D, Joshi J B, Koganti S B, et al. Dispersed phase hold-up, effective interfacial area and Sauter mean drop diameter in annular centrifugal extractors[J]. Chemical Engineering Research & Design, 2009, 87(10): 1379-1389. |
55 | Tamhane T V, Joshi J B, Mudali K, et al. Measurement of drop size characteristics in annular centrifugal extractors using phase Doppler particle analyzer (PDPA)[J]. Chemical Engineering Research and Design, 2012, 90(8): 985-997. |
56 | Wyatt N B, O'Hern T J, Shelden B. Drop size distributions and spatial distributions in an annular centrifugal contactor[J]. AIChE Journal, 2013, 59(6): 2219-2226. |
57 | Joseph D D, Singh P, Chen K. Couette flows, rollers, emulsions, tall Taylor cells, phase separation and inversion, and a chaotic bubble in Taylor-Couette flow of two immiscible liquids[J]. Nonlinear Evolution of Spatio-Temporal Structures in Dissipative Continuous Systems, 1990, 225: 169-189. |
58 | Fridjonsson E O, Chandrasekera T C, Sederman A J, et al. Imaging the effects of peptide bio-surfactants on droplet deformation in a Taylor-Couette shear cell[J]. Soft Matter, 2011, 7(6): 2961-2967. |
59 | Qiao J, Deng R, Wang C H. Droplet behavior in a Taylor vortex[J]. International Journal of Multiphase Flow, 2014, 67: 132-139. |
60 | Eskin D, Taylor S D, Yang D. Modeling of droplet dispersion in a turbulent Taylor-Couette flow[J]. Chemical Engineering Science, 2017, 161: 36-47. |
61 | Padial-Collins N T, Zhang D Z, Zou Q, et al. Centrifugal contactors: separation of an aqueous and an organic stream in the rotor zone (LA-UR-05-7800)[J]. Separation Science and Technology, 2006, 41(6): 1001-1023. |
62 | 徐艳. 环隙式离心萃取器转筒区域流场PIV测试研究[D]. 上海: 华东理工大学, 2014. |
Xu Y. Studies on the flow field in the rotor zone of annular centrifugal contactor[D]. Shanghai: East China University of Science and Technology, 2014. | |
63 | Xu Y, Wang J G, Zhao S L, et al. PIV experimental study on the flow field in the rotor zone of an annular centrifugal contactor[J]. Chemical Engineering Research & Design, 2015, 94: 691-701. |
64 | Wardle K E, Allen T R, Swaney R. CFD simulation of the separation zone of an annular centrifugal contactor[J]. Separation Science and Technology, 2009, 44(3): 517-542. |
65 | Gandhir A, Wardle K E. CFD analysis of fluid flow above the upper weir of an annular centrifugal contactor[J]. Separation Science and Technology, 2012, 47(1): 1-10. |
66 | 段五华, 景山, 陈靖, 等. 核用离心萃取器的研制和应用进展[J]. 科技导报, 2006, (6): 55-58. |
Duan W H, Jing S, Chen J, et al. Advances in development and application of centrifugal extractors in nuclear industry[J]. Science and Technology Review, 2006, (6): 55-58. | |
67 | Wardle K E, Allen T R, Anderson M H, et al. Analysis of the effect of mixing vane geometry on the flow in an annular centrifugal contactor[J]. AIChE Journal, 2009, 55(9): 2244-2259. |
68 | Wardle K E. Liquid-liquid mixing studies in annular centrifugal contactors comparing stationary mixing vane options[J]. Solvent Extraction and Ion Exchange, 2015, 33(7): 671-690. |
69 | Tamhane T V, Joshi J B, Patil R N. Performance of annular centrifugal extractors: CFD simulation of flow pattern, axial mixing and extraction with chemical reaction[J]. Chemical Engineering Science, 2014, 110: 134-143. |
70 | Grafschafter A, Siebenhofer M. Effect of rotor disc diameter on holdup, axial dispersion and droplet size in a Taylor-Couette disc contactor[J]. Chemie Ingenieur Technik, 2019, 91(11): 1589-1596. |
71 | 范智, 白志山, 徐艳, 等. 离心萃取器转筒入口半径对筒内流场的影响[J]. 化工进展, 2015, 34(5): 1232-1235. |
Fan Z, Bai Z S, Xu Y, et al. Effects of centrifugal extractor cylinder inlet radius on the cylinder flow field[J]. Chemical Industry and Engineering Progress, 2015, 34(5): 1232-1235. | |
72 | Ghaya H, Guizani R, Mhiri H, et al. CFD study of the effect of geometrical shape of separation blades on the rotor performance of an annular centrifugal extractor (ACE)[J]. Journal of Applied Fluid Mechanics, 2019, 12(4): 1189-1202. |
[1] | He JIANG, Junfei YUAN, Lin WANG, Guyu XING. Experimental study on the effect of flow sharing cavity structure on phase change flow characteristics in microchannels [J]. CIESC Journal, 2023, 74(S1): 235-244. |
[2] | Zhewen CHEN, Junjie WEI, Yuming ZHANG. System integration and energy conversion mechanism of the power technology with integrated supercritical water gasification of coal and SOFC [J]. CIESC Journal, 2023, 74(9): 3888-3902. |
[3] | Jiaqi YUAN, Zheng LIU, Rui HUANG, Lefu ZHANG, Denghui HE. Investigation on energy conversion characteristics of vortex pump under bubble inflow [J]. CIESC Journal, 2023, 74(9): 3807-3820. |
[4] | Cong QI, Zi DING, Jie YU, Maoqing TANG, Lin LIANG. Study on solar thermoelectric power generation characteristics based on selective absorption nanofilm [J]. CIESC Journal, 2023, 74(9): 3921-3930. |
[5] | Lei XING, Chunyu MIAO, Minghu JIANG, Lixin ZHAO, Xinya LI. Optimal design and performance analysis of downhole micro gas-liquid hydrocyclone [J]. CIESC Journal, 2023, 74(8): 3394-3406. |
[6] | Yan GAO, Peng WU, Chao SHANG, Zejun HU, Xiaodong CHEN. Preparation of magnetic agarose microspheres based on a two-fluid nozzle and their protein adsorption properties [J]. CIESC Journal, 2023, 74(8): 3457-3471. |
[7] | Jinming GAO, Yujiao GUO, Chenglin E, Chunxi LU. Study on the separation characteristics of a downstream gas-liquid vortex separator in a closed hood [J]. CIESC Journal, 2023, 74(7): 2957-2966. |
[8] | Zhaolun WEN, Peirui LI, Zhonglin ZHANG, Xiao DU, Qiwang HOU, Yegang LIU, Xiaogang HAO, Guoqing GUAN. Design and optimization of cryogenic air separation process with dividing wall column based on self-heat regeneration [J]. CIESC Journal, 2023, 74(7): 2988-2998. |
[9] | Jinbo JIANG, Xin PENG, Wenxuan XU, Rixiu MEN, Chang LIU, Xudong PENG. Study on leakage characteristics and parameter influence of pump-out spiral groove oil-gas seal [J]. CIESC Journal, 2023, 74(6): 2538-2554. |
[10] | Xin DONG, Yongrui SHAN, Yinuo LIU, Ying FENG, Jianwei ZHANG. Numerical simulation of bubble plume vortex characteristics for non-Newtonian fluids [J]. CIESC Journal, 2023, 74(5): 1950-1964. |
[11] | Shanghao LIU, Shengkun JIA, Yiqing LUO, Xigang YUAN. Optimization of ternary-distillation sequence based on gradient boosting decision tree [J]. CIESC Journal, 2023, 74(5): 2075-2087. |
[12] | Bimao ZHOU, Shisen XU, Xiaoxiao WANG, Gang LIU, Xiaoyu LI, Yongqiang REN, Houzhang TAN. Effect of burner bias angle on distribution characteristics of gasifier slag layer [J]. CIESC Journal, 2023, 74(5): 1939-1949. |
[13] | Jiyuan LI, Jinwang LI, Liuwei ZHOU. Heat transfer performance of cold plates with different turbulence structures [J]. CIESC Journal, 2023, 74(4): 1474-1488. |
[14] | Wenxuan XU, Jinbo JIANG, Xin PENG, Rixiu MEN, Chang LIU, Xudong PENG. Comparative study on leakage and film-forming characteristics of oil-gas seal with three-typical groove in a wide speed range [J]. CIESC Journal, 2023, 74(4): 1660-1679. |
[15] | Junxian CHEN, Zhongli JI, Yu ZHAO, Qian ZHANG, Yan ZHOU, Meng LIU, Zhen LIU. Study on online detection method of particulate matter in natural gas pipeline based on microwave technology [J]. CIESC Journal, 2023, 74(3): 1042-1053. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||