[1] |
Huang S M, Plaskowski A, Xie C G, Beck M S. Tomographic imaging of two component flow using capacitance sensors [J]. J. Phys. E: Sci. Instrum., 1989, 22: 173-177
|
[2] |
Du B, Fan L S, Wei F, Warsito W. Gas and solids mixing in a turbulent fluidized bed [J]. AIChE Journal, 2002, 48: 1896-1909
|
[3] |
Yang W Q. Hardware design of electrical capacitance tomography systems [J]. Meas. Sci. Technol., 1996, 7: 225-232
|
[4] |
Yang W Q. Design of electrical capacitance tomography sensors [J]. Meas. Sci. Technol., 2010, 21: 1-13
|
[5] |
Yang W Q, Peng L H. Image reconstruction algorithms for electrical capacitance tomography [J].Meas. Sci. Technol., 2003, 14: R1-R13
|
[6] |
Dyakowski T, Edwards R B, Xie C G, Williams R A. Application of capacitance tomography to gas-solid flows [J]. Chemical Engineering Science, 1997, 52: 2099-2110
|
[7] |
Dyakowski T, Jeanmeure L F C,Jaworski A J. Applications of electrical tomography for gas-solids and liquid-solids flows—a review [J]. Powder Technology, 2000, 112: 174-192
|
[8] |
Zhang W B, Wang C, Yang W Q, Wang C H. Application of electrical capacitance tomography in particulate process measurement—a review [J]. Advanced Powder Technology (in press)
|
[9] |
Liu S, Yan R S, Wang H G, Jiang F, Dong X Y. Applications of electrical capacitance tomography in two-phase flow visualization [J]. Journal of Thermal Science, 2004, 13: 179-186
|
[10] |
Liu S, Chen Q, Wang H G, Jiang F, Ismail I, Yang W Q. Electrical capacitance tomography for gas-solids flow measurement for circulating fluidized beds [J]. Flow Measurement and Instrumentation, 2005, 16: 135-144
|
[11] |
Hadi B. Characterization of multi-phase flow in circulating fluidized beds using electrical capacitance tomography (ECT) [D]. Canada: The University of Western Ontario, 2009
|
[12] |
Malcus S, Chaplin G, Pugsley T. The hydrodynamics of the high-density bottom zone in a CFB riser analyzed by means of electrical capacitance tomography [J]. Chemical Engineering Science, 2000, 55: 4129-4138
|
[13] |
Du B, Warsito W, Fan L S. Behavior of the dense-phase transportation regime in a circulating fluidized bed [J]. Ind. Eng. Chem. Res., 2006, 45: 3741-3751
|
[14] |
Sidorenko I, Rhodes M J. Influence of pressure on fluidization properties [J]. Powder Technology, 2004, 141: 137 -154
|
[15] |
Cao J T, Cheng Z H, Fang Y T, Jing H M, Huang J J, Wang Y. Simulation and experimental studies on fluidization properties in a pressurized jetting fluidized bed [J]. Powder Technology, 2008, 183:127-132
|
[16] |
Wang F, Yu Z, Marashdeh Q, Fan L S. Horizontal gas and gas/solid jet penetration in a gas-solid fluidized bed [J]. Chemical Engineering Science, 2010, 65: 3394-3408
|
[17] |
Chen Qi (陈琪), Li Jingtao (李惊涛), Liu Shi (刘石).The ECT measurement of thin cayer matter distribution in the two-phase flow [J]. Industrial Heating (工业加热), 2006, 35: 24-26
|
[18] |
Chen Qi (陈琪), Liu Shi (刘石), Yan Runsheng (阎润生). Measurement investigation on solids distribution in down-flow fluidized bed using ECT [J]. Journal of Thermal Science and Technology (热科学与技术), 2007, 6: 162-166
|
[19] |
Wang F. Gas-solid fluidization: ECVT imaging and mini-/micro-channel [D]. USA: The Ohio State University, 2010
|
[20] |
Du B, Fan L S. Characteristics of choking behavior in circulating fluidized beds for group B particles [J]. Ind. Eng. Chem. Res., 2004, 43: 5507-5520
|
[21] |
Du B, Warsito W, Fan L S. ECT studies of the choking phenomenon in a gas-solid circulating fluidized bed [J]. AIChE Journal, 2004, 50: 1386-1405
|
[22] |
Du B, Warsito W, Fan L S. Imaging the choking transition in gas-solid risers using electrical capacitance tomography [J]. Ind. Eng. Chem. Res., 2006, 45: 5384-5395
|
[23] |
White R B. Using electrical capacitance tomography to monitor gas voids in a packed bed of solids [J]. Meas. Sci. Technol., 2002, 13: 1842-1847
|
[24] |
White R B. Using electrical capacitance tomography to investigate gas solid contacting [J]. The Canadian Journal of Chemical Engineering, 2005, 83: 64-67
|
[25] |
Rautenbach C, Melaaen M C, Halvorsen B M. Statistical diagnosis of a gas-solid fluidized bed using electrical capacitance tomography [J]. International Journal of Multiphase Flow, 2013, 49: 70-77
|
[26] |
Wang C P, Lü Z A, Li D K. Experimental study on gas-solids flows in a circulating fluidised bed using electrical capacitance tomography [J]. Powder Technology, 2008, 185: 144-151
|
[27] |
Liu S, Yang W Q, Wang H G, Jiang F, Su Y. Investigation of square fluidized beds using capacitance tomography: preliminary results [J]. Meas. Sci. Technol., 2001, 12: 1120-1125
|
[28] |
Liu S, Yang W Q, Wang H G, Yan G, Pan Z. Flow pattern identification of fluidized beds using ECT [J]. Journal of Thermal Science, 2001, 2: 176-181
|
[29] |
Makkawi Y T, Wright P C. Fluidization regimes in a conventional fluidized bed characterized by means of electrical capacitance tomography [J]. Chemical Engineering Science, 2002, 57: 2411-2437
|
[30] |
Wang H G, Yang W Q, Dyakowski T, Liu S. Study of bubbling and slugging fluidized beds by simulation and ECT [J]. AIChE Journal, 2006, 52: 3078-3085
|
[31] |
Du B, Warsito W, Fan L S. ECT studies of gas-solid fluidized beds of different diameters [J]. Ind. Eng .Chem. Res., 2005, 44: 5020-5030
|
[32] |
Yang W Q, Liu S. Role of tomography in gas/solids flow measurement [J]. Flow Measurement and Instrumentation, 2000, 11: 237-244
|
[33] |
Wang H G, Liu S, Jiang F, Yang W Q. Dual-plane electrical capacitance system and usage in experience[J]. Instrument Technique and Sensor, 2002, 2: 3-6
|
[34] |
Sun Meng (孙猛), Liu Shi (刘石), Lei Jing (雷兢), Liu Jing (刘靖). Concentration and angular velocity measurement in the dipleg of a cyclone separator using ECT [J]. Journal of Basic Science and Engineering (应用基础与工程科学学报), 2008, 16: 757-761
|
[35] |
Makkawi Y, Ocone R. Integration of ECT measurements with hydrodynamic modeling of conventional gas-solid bubbling bed [J]. Chemical Engineering Science, 2007, 62: 4304-4315
|
[36] |
Wang H G, Yang W Q. Measurement of fluidised bed dryer by different frequency and different normalization methods with electrical capacitance tomography [J]. Powder Technology, 2010, 199: 60-69
|
[37] |
Chaplin G, Pugsley T. Application of electrical capacitance tomography to the fluidized bed drying of pharmaceutical granule [J]. Chemical Engineering Science, 2005, 60: 7022-7033
|
[38] |
Diks C, van Zwet W R, Takens F, De Goede J. Detecting differences between delay vector distributions [J]. Physical Review E, 1996, 53: 2169-2176
|
[39] |
van Ommen J R, Coppens M C, van Den Bleek C M. Early warning of agglomeration in fluidized beds by attractor comparison [J]. AIChE Journal, 2000, 46: 2183-2197
|
[40] |
van Ommen J R. Monitoring fluidized bed hydrodynamics [D]. Netherlands: Delft University of Technology, 2001
|
[41] |
Makkawi Y, Ocone R. Mass transfer coefficient for drying of moist particulate in a bubbling fluidized bed [J]. Chem. Eng. Technol., 2009, 32 (1): 64-72
|
[42] |
Chaplin G. Monitoring fluidized bed dryer hydrodynamics using pressure fluctuations and electrical capacitance tomography [D]. Canada: University of Brunswick, 2001
|
[43] |
Tanfara H, Pugsley T, Winters C. Effect of particle size distribution on local voidage in a bench-scale conical fluidized bed dryer [J]. Drying Technology, 2002, 20: 1273-1289
|
[44] |
Rimpiläinen V, Heikkinen L M, Vauhkonen M. Moisture distribution and hydrodynamics of wet granules during fluidized-bed drying characterized with volumetric electrical capacitance tomography [J]. Chemical Engineering Science, 2012, 75: 220-234
|
[45] |
Wang H G, Yang W Q, Senior P, Raghavan R S, Duncan S R. Investigation of batch fluidized-bed drying by mathematical modeling, CFD simulation and ECT measurement [J]. AIChE Journal, 2008, 54: 427-443
|
[46] |
Wang H G, Senior P R, Mann R, Yang W Q. Online measurement and control of solids moisture in fluidised bed dryers [J]. Chemical Engineering Science, 2009, 64: 2893-2902
|
[47] |
Pugsley T, Tanfara H, Malcus S, Cuib H, Chaouki J, Winters C. Verification of fluidized bed electrical capacitance tomography measurements with a fibre optic probe [J]. Chemical Engineering Science, 2003, 58: 3923-3934
|
[48] |
Chandrasekera T C, Wang A, Holland D J, Marashdeh Q, Pore M, Wang F, Sederman A J, Fan L S, Gladden L F, Dennis J S. A comparison of magnetic resonance imaging and electrical capacitance tomography: an air jet through a bed of particles [J]. Powder Technology, 2012, 227: 86-95
|
[49] |
Marashdeh Q, Warsito W, Fan L S, Teixeira F. Dual imaging modality of granular flow based on ECT sensors [J]. Granular Matter, 2008, 10: 75-80
|
[50] |
Zhang W B, Cheng Y P, Wang C, Yang W Q, Wang C H. Investigation on hydrodynamics of triple-bed combined circulating fluidized bed using electrostatic sensor and electrical capacitance tomography [J]. Ind. Eng. Chem. Res., 2013, 52: 11198-11207
|