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Particulate Science and Technology, ISSN 0272-6351, 01/2015, Volume 33, Issue 1, p. 1
Journal Article
Powder Technology, ISSN 0032-5910, 01/2013, Volume 233, pp. 234 - 244
This paper results from an ongoing investigation into modelling the thermal conductivity for alumina–water nanofluids. Seven existing theoretical and empirical... 
Thermal conductivity | Theoretical models | Dimensionless analysis | Brinkman number | Nanofluids | ENGINEERING, CHEMICAL | SUSPENSION | SINGLE-PHASE | HEAT-TRANSFER | ENHANCEMENT | PARTICLE-SIZE | VISCOSITY | Turbulence | Models | Analysis | Nanotechnology | Investigations | Turbulent flow | Nanocomposites | Fluid flow | Nanomaterials | Nanostructure | Modelling | Heat transfer
Journal Article
Powder Technology, ISSN 0032-5910, 06/2018, Volume 332, pp. 41 - 55
Pneumatic transport of fine powders in fluidized dense-phase pneumatic conveying of powders has become popular in several industries because it offers various... 
Fine powders | Pneumatic conveying | Solids friction | Pneumatic conveying characteristics | Dense-phase | Scale-up validation | Powders | Models | Equipment and supplies | Analysis | Materials handling
Journal Article
Powder Technology, ISSN 0032-5910, 01/2015, Volume 270, pp. 39 - 45
This paper presents the results of an ongoing investigation into modelling important design criteria, such as minimum transport condition, straight-pipe... 
Volumetric loading ratio | Solid friction factor | Fluidized dense-phase | Conveying characteristics | Minimum transport boundary | ENGINEERING, CHEMICAL
Journal Article
Powder Technology, ISSN 0032-5910, 11/2019, Volume 356, pp. 273 - 283
This paper presents results of an ongoing investigation into the modelling of pressure drop in bends due to the pneumatic conveying of fine powders. Two grades... 
Fine powders | Pneumatic conveying | Bend loss | Bend diameter | Rb/D ratio | ENGINEERING, CHEMICAL | PIPE | R-b/D ratio | Conveying | Bends | Impact tests | Pneumatic conveyors | Diameters | Pressure | Physical properties | Fly ash | Radius of curvature | Gas flow | Pressure drop | Predictions | Fluidizing | Cements | Modelling | Bend radius | Pipes | Bend properties | Pneumatics
Journal Article
Powder Technology, ISSN 0032-5910, 06/2016, Volume 294, pp. 80 - 92
Fluidized dense-phase pneumatic conveying of powders is becoming increasingly popular in various industries, such as power, chemical, cement, refinery,... 
Pneumatic conveying | Solids friction factor | Two-layer model | Fluidized dense-phase | Scale-up validation | ENGINEERING, CHEMICAL | CONVEYING SYSTEMS | Energy consumption | Occupational health and safety | Powders | Equipment and supplies | Analysis | Materials handling
Journal Article
International Journal of Electrical Power and Energy Systems, ISSN 0142-0615, 11/2013, Volume 52, Issue 1, pp. 254 - 265
Journal Article
中国颗粒学报:英文版, ISSN 1674-2001, 2014, Volume 16, Issue 5, pp. 187 - 195
This paper presents the results of an ongoing investigation into the fluctuations of pressure signals due to solids-gas flows for dense-phase pneumatic... 
流态化 | 平均粒径 | 密相气力输送 | 颗粒直径 | 流动模式 | 压力波动 | 细粉 | 压力信号 | Fine powders | Shannon entropy | Pneumatic conveying | Flow transition | Particle turbulence | Fluidized dense-phase | BED | MATERIALS SCIENCE, MULTIDISCIPLINARY | PELLETS | ENGINEERING, CHEMICAL | SHANNON ENTROPY ANALYSIS | DYNAMIC-BEHAVIOR | SYSTEMS
Journal Article
中国颗粒学报:英文版, ISSN 1674-2001, 2015, Volume 21, Issue 4, pp. 65 - 73
An accurate estimation of the total pressure drop of a pipeline is important to the reliable design of a pneumatic conveying system. The present paper presents... 
粉煤灰 | 能量损失 | 输灰管道 | 模型预测 | 弯曲模型 | 气力输送系统 | 澳大利亚 | 气力输送过程 | Pneumatic conveying | Bend model | Pressure drop | Fluidised dense phase | Bend | ENGINEERING, CHEMICAL | MATERIALS SCIENCE, MULTIDISCIPLINARY | PRESSURE LOSSES
Journal Article
by Adamczyk, L and Adams, J.R and Adkins, J.K and Agakishiev, G and Aggarwal, M.M and Ahammed, Z and Ajitanand, N.N and Alekseev, I and Anderson, D.M and Aoyama, R and Aparin, A and Arkhipkin, D and Aschenauer, E.C and Ashraf, M.U and Attri, A and Averichev, G.S and Bai, X and Bairathi, V and Barish, K and Behera, A and Bellwied, R and Bhasin, A and Bhati, A.K and Bhattarai, P and Bielcik, J and Bielcikova, J and Bland, L.C and Bordyuzhin, I.G and Bouchet, J and Brandenburg, J.D and Brandin, A.V and Brown, D and Bunzarov, I and Butterworth, J and Caines, H and Calderón de la Barca Sánchez, M and Campbell, J.M and Cebra, D and Chakaberia, I and Chaloupka, P and Chang, Z and Chankova-Bunzarova, N and Chatterjee, A and Chattopadhyay, S and Chen, J.H and Chen, X and Chen, X and Cheng, J and Cherney, M and Christie, W and Contin, G and Crawford, H.J and Das, S and De Silva, L.C and Debbe, R.R and Dedovich, T.G and Deng, J and Derevschikov, A.A and Didenko, L and Dilks, C and Dong, X and Drachenberg, J.L and Draper, J.E and Dunkelberger, L.E and Dunlop, J.C and Efimov, L.G and Elsey, N and Engelage, J and Eppley, G and Esha, R and Esumi, S and Evdokimov, O and Ewigleben, J and Eyser, O and Fatemi, R and Fazio, S and Federic, P and Federicova, P and Fedorisin, J and Feng, Z and Filip, P and Finch, E and Fisyak, Y and Flores, C.E and Fujita, J and Fulek, L and Gagliardi, C.A and Garand, D and Geurts, F and Gibson, A and Girard, M and Grosnick, D and Gunarathne, D.S and Guo, Y and Gupta, S and Gupta, A and Guryn, W and Hamad, A.I and Hamed, A and Harlenderova, A and ... and STAR Collaboration and Brookhaven National Lab. (BNL), Upton, NY (United States) and Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States)
Physics Letters B, ISSN 0370-2693, 10/2018, Volume 785, pp. 551 - 560
Journal Article
中国颗粒学报:英文版, ISSN 1674-2001, 2016, Volume 29, Issue 6, pp. 143 - 153
This paper presents the results of an ongoing investigation into transient pressure pulses using Shan- non entropy. Pressure fluctuations (produced by... 
压力脉冲 | Shannon熵 | 瞬态 | 微细 | 实验 | 粉体气力输送 | Shannon entropy | Transient pressure fluctuations | Flow pattern | Superficial air velocity | Solid loading ratio | Fluidized dense phase | BEHAVIOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | FLOW | ENGINEERING, CHEMICAL | MINIMUM | TRANSPORT | FLUCTUATIONS | BENDS | SYSTEMS
Journal Article
中国颗粒学报:英文版, ISSN 1674-2001, 2017, Volume 30, Issue 1, pp. 83 - 91
Results are presented of an ongoing investigation into modeling friction in fiuidized dense-phase pneumatic transport of bulk solids. Many popular modeling... 
Dimensionless velocity | Volumetric loading ratio | Solids friction factor | Pneumatic transport | Fluidized dense-phase | Scale-up | ENGINEERING, CHEMICAL | MATERIALS SCIENCE, MULTIDISCIPLINARY | SYSTEMS
Journal Article
中国颗粒学报:英文版, ISSN 1674-2001, 2017, Volume 35, Issue 6, pp. 42 - 50
Accurate prediction of the solids friction factor through horizontal straight pipes is important for the reliable design of a pneumatic conveying system, but... 
ENGINEERING, CHEMICAL | Pneumatic conveying | VELOCITY | Numerical analysis | PARTICLES | Pressure drop | MATERIALS SCIENCE, MULTIDISCIPLINARY | SYSTEMS | FLOW | Dense-phase | Scale-up validation
Journal Article
Powder Technology, ISSN 0032-5910, 05/2018, Volume 330, pp. 164 - 173
In this paper, physical properties and flow properties of fly ash collected from seven fields of Electro-Static precipitator (ESP) hoppers of a coal fired... 
Wall friction | Critical particle size | Fly ash | Hoppers | Powder flow properties | FRICTION | BEHAVIOR | PROPERTY | HIGH-TEMPERATURE | HOPPER DESIGN | ENGINEERING, CHEMICAL | PULVERIZED COAL | METHODOLOGY | FOOD POWDERS | BULK FLOW PROPERTIES | FORCES | Powders | Electric power-plants | Mechanical engineering | Analysis | Power plants
Journal Article
The Journal of Minimally Invasive Gynecology, ISSN 1553-4650, 11/2018, Volume 25, Issue 7, pp. S59 - S60
Journal Article
The Journal of Minimally Invasive Gynecology, ISSN 1553-4650, 11/2018, Volume 25, Issue 7, pp. S90 - S90
Journal Article
Journal of Minimally Invasive Gynecology, ISSN 1553-4650, 11/2018, Volume 25, Issue 7, pp. S59 - S60
Journal Article
Journal of Minimally Invasive Gynecology, ISSN 1553-4650, 11/2018, Volume 25, Issue 7, p. S90
Journal Article
Powder Technology, ISSN 0032-5910, 06/2015, Volume 277, pp. 163 - 170
This paper presents results of an ongoing investigation into the flow mechanism for the pneumatic conveying of fine powders conveyed from fluidized dense phase... 
Shannon entropy | Pneumatic conveying | Hurst exponent | Pressure fluctuations | Fluidized dense-phase | Phase space diagram | BED | BUBBLE-COLUMN | PARTICLES | RESCALED RANGE ANALYSIS | BEHAVIOR | ENGINEERING, CHEMICAL | SOLID FLOW | Powders | Analysis | Investigations | Turbulence | Mechanical engineering
Journal Article
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