[1] |
HARTMANN H, DERKSEN J, VAN DEN AKKER H E A, et al. Macroinstability uncovered in a Rushton turbine stirred tank by means of LES[J]. American Institute of Chem. Eng., 2004, 50(10):2383-2393.
|
[2] |
HASAL P, MONTES J L, BOISSON H C, et al. Macro-instabilities of velocity field in stirred vessel:detection and analysis[J]. Chem. Eng. Sci., 2000, 55(2):391-401.
|
[3] |
DUCCI A, DOULGERAKIS Z, YIANNESKIS M. Decomposition of flow structures in stirred reactors and implications for mixing enhancement[J]. Ind. Eng. Chem. Res., 2008, 47(10):3664-3676.
|
[4] |
PAGLIANTI A, LIU Z, MONTANTE G, et al. Effect of macroinstabilities in single-and multiple-impeller stirred tanks[J]. Ind. Eng.Chem. Res., 2008, 47(14):4944-4952.
|
[5] |
FAN J, RAO Q, WANG Y, et al. Spatio-temporal stirred vessel via digital particle image velocimetry macro-instability analysis of DPIV[J]. Chem. Eng.Sci., 2004, 59(6):1863-1873.
|
[6] |
樊建华, 饶麒, 王运东. 搅拌槽内流场脉动的频谱分析研究[J]. 高校化学工程学报,2004, 18(3):287-292. FAN J H, RAO Q, WANG Y D, et al. Spectral analysis of the velocity fluctuations in a mechanically stirred tank[J]. J. Chem.Eng. Chin. Univ., 2004, 18(3):287-292.
|
[7] |
GALLETTI C, PAGLIANTI A, YIANNESKIS M, et al. Observations on the significance of instabilities turbulence and intermittent motions on fluid mixing processes in stirred reactors[J]. Chem. Eng.Sci., 2005, 60(4):2317-2331.
|
[8] |
GALLETTI C, LEE K C, PAGLIANTI A, et al. Reynolds number and impeller diameter effects on instabilities in stirred vessels[J]. Chem. Eng. Sci., 2004, 50(3):2050-2063.
|
[9] |
EIN-MOZAFFARI F, UPRETI S R. Using ultrasonic Doppler velocimetry and CFD modeling to investigate the mixing of non-Newtonian fluids possessing yield stress[J]. Chem. Eng. Res. Des., 2009, 87(4):515-523.
|
[10] |
ADAMS L W, BARIGOU M. CFD analysis of caverns and pseudo-caverns developed during mixing of non-Newtonian fluids[J]. Chem. Eng. Res. Des., 2007, 85(5):598-604.
|
[11] |
栾德玉, 周慎杰, 陈诵英. 错位六弯叶桨搅拌假塑性流体的洞穴变化[J].机械工程学报, 2012, 48(16):152-157. LUAN D Y, ZHOU S J, CHEN S Y, et al. Cavern development of pseudoplastic fluids stirred by impeller of perturbed six-bent-bladed turbine[J]. Journal of Mechanical Engineering, 2012, 48(16):152-157.
|
[12] |
XIAO Q, YANG N, ZHU J, et al. Modeling of cavern formation in yield stress fluids in stirred tanks[J]. AIChE J., 2014, 60(8):3057-3070.
|
[13] |
PAKZAD L, EIN-MOZAFFARI F, CHAN P. Using electrical resistance tomography and computational fluid dynamics modeling to study the formation of cavern in the mixing of pseudoplastic fluids possessing yield stress[J]. Chem. Eng. Sci., 2008, 63(9):2508-2522.
|
[14] |
GALINDOT E, NIENOW A W. Mixing of highly viscous simulated xanthan fermentation broths with the lightnin A-315 impeller[J]. Biotechnology Progress, 2010, 8(3):233-239.
|
[15] |
SOSSA-ECHEVERRIA J, TAGHIPOUR F. Computational simulation of mixing flow of shear thinning non-Newtonian fluids with various impellers in a stirred tank[J]. Chem. Eng. Process., 2015, 93:66-78.
|
[16] |
XU B, GILCHRIST J F. Shear migration and chaotic mixing of particle suspensions in a time-periodic lid-driven cavity[J]. Physics of Fluids, 2010, 22(5):1-7.
|
[17] |
XU B, GILCHRIST J F. Shear migration and chaotic mixing of particle suspensions in a time-periodic lid-driven cavity[J]. Physics of Fluids, 2010, 22(5):1-7.
|
[18] |
CUDAK M, KARCZ J. Local momentum transfer process in a wall region of an agitated vessel equipped with an eccentric impeller[J]. Ind. Eng. Chem. Res., 2011, 50(7):4140-4149.
|
[19] |
栾德玉, 周慎杰, 陈诵英. 错位六弯叶搅拌槽内假塑性流体的混合特性[J]. 高校化学工程学报, 2012, 26(5):787-792. LUAN D Y, ZHOU S J, CHEN S Y, et a1. Mixing characteristics of pseudoplastic fluid in a stirred tank with the stirrer composed of perturbed six-bent-bladed turbine[J]. Journal of Chemical Engineering of Chinese Universities,2012, 26(5):787-792.
|
[20] |
栾德玉, 周慎杰, 陈诵英, 等. 错位六弯叶在假塑性流体中的混沌搅拌特性[J]. 化学工程, 2011, 39(9):41-46. LUAN D Y, ZHOU S J, CHEN S Y, et al. Chaotic agitation characteristics of shifted 6-bent-blade impeller in pseudoplastic fluid[J]. Chemical Engineering(China),2011, 39(9):41-46.
|
[21] |
栾德玉, 张盛峰, 郑深晓, 等. 基于流固耦合的错位桨搅拌假塑性流体动力学特性[J]. 化工学报, 2017, 68(6):2328-2335. LUAN D Y, ZHANG S F, ZHENG S X, et al. Dynamic characteristics of impeller of perturbed six-bent-bladed turbine in pseudoplastic fluid based on fluid-structure interaction[J]. CIESC Journal,2017, 68(6):2328-2335.
|
[22] |
LUAN D Y, CHEN Q, ZHOU S J. Numerical simulation and analysis of power consumption and Metzner-Otto constant for impeller of 6PBT[J]. Chin. J. Mech. Eng., 2014, 27(3):635-640.
|
[23] |
METZNER A B, OTTO R E. Agitation of non-Newtonian fluids[J]. AIChE J., 1957, 3(1):3-11.
|
[24] |
HOUARI A. Effect of some parameters on the performance of anchor impellers for stirring shear-thinning fluids in a cylindrical vessel[J]. Journal of Hydrodynamics, 2016, 28(4):669-675.
|
[25] |
JAYARAJU, BROUNS S T. Large eddy and detached eddy simulations of fluid flow and particle deposition in a human mouth-throat[J]. Journal of Aerosol Science, 2008, 39(10):862-875.
|
[26] |
杨锋苓. 偏心搅拌槽内宏观不稳定性的分离涡模拟及实验研究[D]. 济南:山东大学, 2010. YANG F L. Detached eddy simulation and PIV study of the macroinstability in eccentrically stirred tanks[D]. Jinan:Shandong University,2010.
|
[27] |
黄思, 杨富翔, 郭京, 等. 运用三维动网格技术模拟计算离心泵非定常流动[J]. 科技导报, 2013, 31(24):33-36. HUANG S, YANG F X, GUO J, et al. Numerical simulation of 3D unsteady flow in centrifugal pump by dynamic mesh technique[J]. Science&Technology Review, 2013, 31(24):33-36.
|
[28] |
LI M Z, GRAEME W, DEREK W, et a1. Scale up study of retreat curve impeller stirred tanks using LDA measurements and CFD simulation[J]. Chemical Engineering Journa1, 2005, 108(1):81-90.
|
[29] |
樊建华, 饶麒, 王运东. 搅拌槽内流场脉动的频谱分析研究[J]. 高校化学工程学报, 2004, 18(3):287-292. FAN J H, RAO Q, WANG Y D. Spectral analysis of the velocity fluctuations in a mechanically stirred tank[J]. Journal of Chemical Engineering of Chinese Universities, 2004, 18(3):287-292.
|
[30] |
GALLETTI C, PAGLIANTI A, LEE K C, et al. Reynolds number and impeller diameter effects on instabilities in stirred vessels[J]. AIChE J., 2004, 50(9):2050-2063.
|