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Articles 2521 - 2550 of 2957

Full-Text Articles in Engineering

Cold Modelling Of An Internally Circulating Fluidized Bed Membrane Reactor, Tony Boyd, John R. Grace, C. Jim Lim, A. M. Adris May 2007

Cold Modelling Of An Internally Circulating Fluidized Bed Membrane Reactor, Tony Boyd, John R. Grace, C. Jim Lim, A. M. Adris

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

A novel fluidized bed membrane reactor with internal catalyst circulation is being developed for the production of high-purity H2 from an autothermal reformer. In order to provide guidance to pilot reactor testing, a cold model was built to study the influence of reactor configuration on hydrodynamics and catalyst circulation. It was found that catalyst circulation was reproducible, but that parallel non-communicating flow channels could lead to flow instability. Solids circulation was found to be adequate for design of the autothermal reformer.


Thermal Conversion Of Biomass And Waste, Liban Yassin, Paola Lettieri, Stefaan Simons, Antonino Germanà May 2007

Thermal Conversion Of Biomass And Waste, Liban Yassin, Paola Lettieri, Stefaan Simons, Antonino Germanà

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

This paper investigates the process designs of 2 fluidized bed gasification plants utilizing clean biomass. Energy and mass balances for each process were carried out and ChemCAD was used to evaluate the energy recovery process by simulating the operation of a steam turbine and a combined cycle gas turbine (CCGT).


Numerical Simulation Of Spouted Bed Reactors Using Process Engineering Models: Application To Coal Gasification, Alexandra Mendes, Alain Dollet, Carine Ablitzer, Gilles Flamant, Christophe Perrais May 2007

Numerical Simulation Of Spouted Bed Reactors Using Process Engineering Models: Application To Coal Gasification, Alexandra Mendes, Alain Dollet, Carine Ablitzer, Gilles Flamant, Christophe Perrais

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

A spouted bed reactor operating at high temperature has been modelled using one dimensional models based on process engineering concepts. The process of coal gasification has been selected to demonstrate the models achievements and predictions have been compared to previous spouted bed reactor experimental results.


Bubble Size And Mass Transfer In A Modified Airlift Loop Reactor With Continuous Slurry Phase, Mengxi Liu, Chunxi Lu, Mingxian Shi May 2007

Bubble Size And Mass Transfer In A Modified Airlift Loop Reactor With Continuous Slurry Phase, Mengxi Liu, Chunxi Lu, Mingxian Shi

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

A modified internal airlift loop reactor with continuous slurry phases was explored to investigate the local bubble size and the local mass transfer properties. A mathematical model was derived to simulate the bubble size in every flow region. Also, a new method was developed to measure the dissolved oxygen concentration.


Fluid Mechanical Phenomena Of Liquid-Solid Fluidization In The Centrifugal Field, Jan Margraf , Joachim Werther May 2007

Fluid Mechanical Phenomena Of Liquid-Solid Fluidization In The Centrifugal Field, Jan Margraf , Joachim Werther

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

The flow pattern in a rotating liquid-solid fluidized bed with particles in the micron range was investigated in the bed and in the freeboard. Simulations of the liquid flow in absence of particles with the CFD-Software CFX 5.7 showed a strong influence of the Coriolis force, which results in high tangential velocities. Experiments in a 1 m diameter rotor confirmed the results of the simulation. The fluidized bed is also moving in the tangential direction. The bed expansion is described by a Richardson-Zaki type correlation.


Numerical Modelling Of Sloshing With Vof Method, Hamid Rezaei, Mohammad Javad Ketabdari May 2007

Numerical Modelling Of Sloshing With Vof Method, Hamid Rezaei, Mohammad Javad Ketabdari

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

Sloshing in tanks carrying LNG, LPG and petroleum is an important phenomenon as dynamic pressure arises from sloshing can destroy the containing tanks. So it is vital to consider this phenomenon in design stages of carriers. The governing equations in fluid flow are conservation of mass and momentum. Modeling of free surface flow in tank needs a suitable tool. One of the most powerful tools to model the free surface is VOF method. Employing additional transport equation together with conservation of mass and momentum enable us to follow the free surface changes. A computer code was developed to evaluate sloshing …


Dynamic Simulation Of Gas Hydrate Formation In An Agitated Three-Phase Slurry Reactor, Shahrzad Hashemi, Arturo Macchi , Phillip Servio May 2007

Dynamic Simulation Of Gas Hydrate Formation In An Agitated Three-Phase Slurry Reactor, Shahrzad Hashemi, Arturo Macchi , Phillip Servio

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

Gas hydrate growth was simulated in an agitated three-phase slurry reactor using a dynamic model that incorporates hydrate formation kinetics as well as system hydrodynamics and interphase heat and mass transfer rates. Supersaturation ratios and mole consumption rates were evaluated as a function of time for different gas and liquid superficial velocities. Based on available data and the conditions investigated, the kinetic resistance was found to be more influential than the resistance to gas-liquid mass transfer.


Hydrodynamic And Rtd Of Sectionalized Bubble Column, Nahidh W. Mecaial, Burhan Sadik May 2007

Hydrodynamic And Rtd Of Sectionalized Bubble Column, Nahidh W. Mecaial, Burhan Sadik

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

The sectionalization of conventional bubble columns to tray partitioned bubble column using perforated trays has been used to investigate the effect of tray hole diameter, tray open area, superficial gas velocity, gas sparger design, and liquid phase properties on gas holdup, residence time distribution (RTD), and overall liquid-phase backmixing. The erected column is sectionalized into three stages using two perforated plates of different holes diameter and open free area. Overall gas holdup is measured experimentally by bed expansion technique. Liquid backmixing, mixing time and axial dispersion model (ADM) is determined using tracer response experiments. In general, it seems that the …


Role Of Intrinsic Kinetics And Catalyst Particle Size Distribution In Cfd Simulations Of Polymerization Reactors, Rong Fan, Rodney O. Fox, Michael E. Muhle May 2007

Role Of Intrinsic Kinetics And Catalyst Particle Size Distribution In Cfd Simulations Of Polymerization Reactors, Rong Fan, Rodney O. Fox, Michael E. Muhle

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

Fluidized-bed reactors are widely used in the production of polyethylene. In this work, the quadrature method of moments (QMOM), a chemical reaction engineering (CRE) model, and computational fluid dynamics (CFD) are combined to investigate the role of intrinsic kinetics and the catalyst particle size distribution (PSD) in a gas phase fluidized bed reactor. The catalyst PSD is represented by a few nodes using the QMOM and an intrinsic rate model based on the age of particles is used to solve the evolution of particle temperature, particle size, and catalyst sites with age. Assuming the particle age distribution is well-mixed, the …


Particle Size Distribution In Gas-Phase Polyethylene Reactors, Omid Ashrafi, Navid Mostoufi, Rahmat Sotudeh-Gharebagh May 2007

Particle Size Distribution In Gas-Phase Polyethylene Reactors, Omid Ashrafi, Navid Mostoufi, Rahmat Sotudeh-Gharebagh

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

A population balance model is developed to investigate the particle-size distribution developments in a gas-phase fluidized-bed ethylene polymerization reactor. The model considers the combined effects of particle growth and elutriation for size distributed prepolymer feed. In the proposed model, the bed is divided into several sections consisting of bubble and emulsion phases. The population balance differential equations derived for each section were simultaneously solved to determine the density function of the size distribution of the polymer particles in each section. The model is able to predict the axial profiles of particle size distribution. It was also shown that the mean …


Volume Contraction In Liquid Fluidization Of Binary Solids Mixtures, Norman Epstein , R. Escudié, John R. Grace, Xiaotao T. Bi May 2007

Volume Contraction In Liquid Fluidization Of Binary Solids Mixtures, Norman Epstein , R. Escudié, John R. Grace, Xiaotao T. Bi

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

When liquid-fluidized particles of radically different sizes and densities mix, the serial (additive volume) model fails to predict the fluidized bed voidage due to contraction of the mixed bed relative to the volumetric sum of the corresponding monocomponent beds. Models are proposed to predict contraction reported in the literature for both upflow and downflow fluidization.


Hydrodynamics Of Gas-Solids Bubbling Fluidized Beds Using Polyethylene Resin, Bangyou Wu, John Shepperson, Loni Van Der Lee, Céline Bellehumeur, Apostolos Kantzas May 2007

Hydrodynamics Of Gas-Solids Bubbling Fluidized Beds Using Polyethylene Resin, Bangyou Wu, John Shepperson, Loni Van Der Lee, Céline Bellehumeur, Apostolos Kantzas

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

Pressure fluctuations were measured in three gas-solids bubbling fluidized beds (10cm, 20cm, and 30cm diameter, 1.0m high) using polyethylene particles of different sizes and particle size distributions. Both bed scale and particle size distribution significantly affect the gas-solids flow behavior. Bubble diameters measured from X-ray fluoroscopy in the 10cm diameter column were compared to various correlations in the literature.


Monitoring Electrostatic Charges In Fluidized Beds, Xiaotao T. Bi, Aihua Chen, John R. Grace May 2007

Monitoring Electrostatic Charges In Fluidized Beds, Xiaotao T. Bi, Aihua Chen, John R. Grace

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

A novel analysis procedure for dynamic collision probes has been developed to monitor the charge density of particles in gas-solids fluidized beds based on the mean and normalized standard deviation of current signals. The contribution from hydrodynamic changes is decoupled from the changes in specific particle charge density based on the principles that the average current is related to charge transfer and/or triboelectrification due to the contact between the probe and particles, whereas the normalized standard deviation of current signals is mainly related to the hydrodynamic changes of the fluidized bed. The correlation between hydrodynamic changes and current signal fluctuations …


The Measurement Of Thermal Performance For A Fluidized Bed, H. R. Goshayshi May 2007

The Measurement Of Thermal Performance For A Fluidized Bed, H. R. Goshayshi

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

Abstract Experiments have been performed to measure the thermal performance, packed density, and velocity of a fluidized bed cooling tower of 280 mm diameter.

Hollow plastic spheres of three different sizes, with diameters of 20, 25 and 37 mm and particle densities ranging from 70 to 325 kg/m3 were investigated as packing materials, and results for static bed heights of 100 mm and 300 mm are reported. Measurements were obtained at an approximately constant inlet hot water temperature of around 42°C and cover a range of water mass flux from 0.3 to 3.6 kg/sm2. Liquid/gas ratios varied between 0.1 and …


Towards Selective Agglomeration Detection In Fluidized Beds Using Advanced Signal Analysis Methods, Malte Bartels, Bart Vermeer, John Nijenhuis, Ruud Van Ommen, Freek Kapteijn May 2007

Towards Selective Agglomeration Detection In Fluidized Beds Using Advanced Signal Analysis Methods, Malte Bartels, Bart Vermeer, John Nijenhuis, Ruud Van Ommen, Freek Kapteijn

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

A new methodology of assessing large amounts of fluidized bed pressure fluctuation data with various signal analysis methods in combination with signal pre-treatment methods is presented. This approach can be used to find certain combinations that are selectively sensitive to certain physical effects in fluidized beds, such as agglomeration.


Investigation Of The Sources Of Variability In The Wurster Coater: Analysis Of Particle Cycle Times Using Pept , Sarah Palmer, Andy Ingram, Xianfeng Fan, Shaun Fitzpatrick, Jonathan Seville May 2007

Investigation Of The Sources Of Variability In The Wurster Coater: Analysis Of Particle Cycle Times Using Pept , Sarah Palmer, Andy Ingram, Xianfeng Fan, Shaun Fitzpatrick, Jonathan Seville

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

Positron Emission Particle Tracking (PEPT) has been used successfully to study pellet motion within the Wurster coater. PEPT experiments were undertaken to understand how the parameters of batch size and partition gap interact with each other; and to determine their effects on the particle cycle time and the components of the particle cycle time: the flight and annulus times and their respective distributions. This enabled the determination of optimum operating conditions for a given set of process conditions.


Laser Diagnostics Of Hydrodynamics And Gas-Mixing In The Splash Zone Of Gas-Fluidized Beds, Roberto Solimene, Antonio Marzocchella, Raffaele Ragucci, Piero Salatino May 2007

Laser Diagnostics Of Hydrodynamics And Gas-Mixing In The Splash Zone Of Gas-Fluidized Beds, Roberto Solimene, Antonio Marzocchella, Raffaele Ragucci, Piero Salatino

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

The hydrodynamic patterns of gas flow associated with bubbles bursting at the surface of gas-fluidized beds have been investigated by means of planar laser induced fluorescence using acetone as diffusive gas tracer. The flow structures generated by the eruption of an isolated bubble have been characterized as a function of bed material size and of bubble injection level.


Particle Size Estimation And Monitoring In A Bubbling Fluidized Bed Using Pressure Fluctuation Measurements, Clive Davies, Donal Krouse, Alison Carroll May 2007

Particle Size Estimation And Monitoring In A Bubbling Fluidized Bed Using Pressure Fluctuation Measurements, Clive Davies, Donal Krouse, Alison Carroll

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

Pressure time data for binary mixtures of silica sand have been examined with particular reference to correlation between mean particle size, standard deviation and parameters obtained through attractor reconstruction techniques. The ratio of total variance to high speed variance is a particularly useful parameter for regime identification.


Development Of Electrical Capacitance Volume Tomography (Ecvt) And Electrostatic Tomography (Est) For 3d Density Imaging Of Fluidized Bed System, B. Du, Q. Marashdeh, W. Warsito, A.-H. A. Park, L S Fan May 2007

Development Of Electrical Capacitance Volume Tomography (Ecvt) And Electrostatic Tomography (Est) For 3d Density Imaging Of Fluidized Bed System, B. Du, Q. Marashdeh, W. Warsito, A.-H. A. Park, L S Fan

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

In this paper, Electrical Capacitance Volume Tomography (ECVT) is used to study a gas-solid fluidized bed system of .1 m ID. The interior flow structures (including the dynamic bed expansion, bubble/void breakage and particle movement) and the charge distribution in a gas-solid fluidized bed are illustrated based on the 3D images obtained from the ECVT.


X-Ray Fluoroscopy Measurements And Cfd Simulation Of Hydrodynamics In A Two Dimensional Gas-Solids Fluidized Bed, Zhengxing He, Bangyou Wu, Blake Chandrasekaran, Celine Bellehumeur, Apostolos Kantzas May 2007

X-Ray Fluoroscopy Measurements And Cfd Simulation Of Hydrodynamics In A Two Dimensional Gas-Solids Fluidized Bed, Zhengxing He, Bangyou Wu, Blake Chandrasekaran, Celine Bellehumeur, Apostolos Kantzas

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

X-ray fluoroscopy measurements and CFD simulation were used to characterize the hydrodynamics in a pseudo 2-D gas-solids bubbling fluidized bed using polyethylene resin and glass beads. Bubble properties, such as bubble frequency, bubble size, bubble number distribution and bubble diameter distribution, were estimated from X-ray images and compared to those from CFD simulation.


Microfluidic Velocity Measurements Using Three-Dimensional Confocal Micro Particle Tracking Velocimetry (Cm-Ptv), Orin Hemminger, Zhao Yu, Chunhe Zhang, L. James Lee, L .S. Fan May 2007

Microfluidic Velocity Measurements Using Three-Dimensional Confocal Micro Particle Tracking Velocimetry (Cm-Ptv), Orin Hemminger, Zhao Yu, Chunhe Zhang, L. James Lee, L .S. Fan

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

In the past, confocal microscopy was limited by its slow temporal resolution and was not a practical tool for imaging dynamic systems. Recent improvements in spinning disk confocal microscopy and high-speed camera technology have made it a viable technique for imaging of microfluidic systems. Here, a confocal micro particle tracking velocimetry (CM-PTV) system is demonstrated with the ability to obtain 3D velocity profiles at high flow rates.


Scale-Up Effect On Heat Transfer In A Fluidized Bed Near The Onset Of Turbulent Fluidization, A. Stefanova, John R. Grace, C. Jim Lim, Xiaotao T. Bi, K.S. Lim, J. Sanderson May 2007

Scale-Up Effect On Heat Transfer In A Fluidized Bed Near The Onset Of Turbulent Fluidization, A. Stefanova, John R. Grace, C. Jim Lim, Xiaotao T. Bi, K.S. Lim, J. Sanderson

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

Heat transfer coefficients were measured in 0.29 m ID and 1.56 m ID fluidization columns with the same heater tube, identical alumina particles and geometrically scaled distributors. The maximum coefficients occurred in the turbulent fluidization flow regime. The Froude number based on superficial velocity and column diameter captures the scale-up effect well, so long as the heater is located in a region of similar flow structure.


Hydrodynamic Aspects And Correlations For The Design Of Draft-Tube Conical Spouted Beds, H. Altzibar, S. Alvarez, M.J. San José, R. Aguado, J. Bilbao, Martin Olazar May 2007

Hydrodynamic Aspects And Correlations For The Design Of Draft-Tube Conical Spouted Beds, H. Altzibar, S. Alvarez, M.J. San José, R. Aguado, J. Bilbao, Martin Olazar

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

A study has been carried out on the hydrodynamics of conical spouted beds with draft tube. Correlations have been proposed for calculating minimum spouting velocity, operating pressure drop and peak pressure drop as functions of dimensionless module that take into account geometric factors, particle characteristics and operating conditions.


Portable Positron Emission Particle Tracking (Pept) For Industrial Use, A. Ingram, M. Hausard, X. Fan, D. J. Parker, J.P.K. Seville, N. Finn , M. Evans May 2007

Portable Positron Emission Particle Tracking (Pept) For Industrial Use, A. Ingram, M. Hausard, X. Fan, D. J. Parker, J.P.K. Seville, N. Finn , M. Evans

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

Positron Emission Particle Tracking (PEPT) has over the last decade become an established technique for studying the motion of particles in granular and fluid systems. Until recently, this technique was confined to use with medically-derived cameras that have fixed limits in terms of the size and position of the field of view. This provides some constraints on the geometry and scale of process equipment that can be viewed. Increasing demand for greater flexibility in the use of the PEPT technique - in larger process equipment and, more importantly, in industrial equipment in situ - has led to the development of …


Discrete Particle Simulation Of The Gas-Solid Flow In A Circulating Fluidized Bed, K. W. Chu, B. Wang, Aibing Yu May 2007

Discrete Particle Simulation Of The Gas-Solid Flow In A Circulating Fluidized Bed, K. W. Chu, B. Wang, Aibing Yu

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

This paper presents a numerical study of the gas-solid flow in a three-dimensional Circulating Fluidized Bed (CFB) by means of Combined Continuum and Discrete Method (CCDM) in which the motion of discrete particles is described by Discrete Particle Method (DPM) on the basis of Newton’s laws of motion applied to individual particles and the flow of continuum fluid by the traditional Computational Fluid Dynamics (CFD) based on the local averaged Navier-Stokes equations. The simulation is achieved by incorporating DPM codes into the commercial CFD software package Fluent. It is shown that the discrete particle simulation can capture the key flow …


Simulation Of A Silicon Cvd Spouted Fluidized Bed Reactor: Semi-Batch Operations, Juliana Piña, Verónica Bucalá, Susana N. Schbib, Paul Ege, Hugo Ignacio De Lasa May 2007

Simulation Of A Silicon Cvd Spouted Fluidized Bed Reactor: Semi-Batch Operations, Juliana Piña, Verónica Bucalá, Susana N. Schbib, Paul Ege, Hugo Ignacio De Lasa

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

A comprehensive multiphase gas-solid mathematical model that successfully describes the batch growth of silicon particles in a chemical vapor deposition (CVD) submerged spouted bed reactor is extended to simulate semi-batch operations with periodic seeds additions and product extractions. This model takes into account the fluidized bed reactor as well as a population balance equation representing particle growth and agglomeration. Experimental data obtained from semi-batch operation in a pilot scale reactor at REC Silicon Inc. are used to evaluate the proposed mathematical model.


In Situ Measurement Of Dynamic Mixing In Gas-Solid Fluidized Beds Using Magnetic Resonance, D. J. Holland, P. S. Fennell, C. R. Müller, J. S. Dennis, L. F. Gladden, A. J. Sederman May 2007

In Situ Measurement Of Dynamic Mixing In Gas-Solid Fluidized Beds Using Magnetic Resonance, D. J. Holland, P. S. Fennell, C. R. Müller, J. S. Dennis, L. F. Gladden, A. J. Sederman

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

Three magnetic resonance techniques were implemented to study solids mixing in a fluidized bed. Ultra-fast FLASH imaging was utilised to measure the dispersion of a tracer particle in real time. A novel MR sequence for measurement of the time-averaged mixing of solids in a fluidized bed was developed. Finally images of the velocity of solids were obtained to measure directly the pattern of solids flow.


Experimental Validation Of Macro- And Micro-Level Scaling Laws In Small- And Medium-Scale Top-Spray Fluidised Bed Coaters, Peter Dybdahl Hede, Poul Bach, Anker D. Jensen May 2007

Experimental Validation Of Macro- And Micro-Level Scaling Laws In Small- And Medium-Scale Top-Spray Fluidised Bed Coaters, Peter Dybdahl Hede, Poul Bach, Anker D. Jensen

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

Top-spray fluid bed coating experiments of 500 g sodium sulphate cores (180 – 300 μm) have been conducted in a small-scale single-spray nozzle GEA Strea-1 fluid bed. The process has been scaled-up to a bed load of 4 kilos in a single-spray nozzle Niro MP-1 fluid bed testing different scaling laws for comparison. Results indicate clearly that up-scaling using a drying force parameter (combining bed temperature with bed relative humidity) as well as a droplet related relative parameter is a promising alternative to common fluid bed scaling principles.


Time Scale Analysis Of A Fluidized-Bed Catalytic Reactor Based On A Generalized Dynamic Model, Andres Mahecha-Botero, John R. Grace, Said S.E.H. Elnashaie, C. Jim Lim May 2007

Time Scale Analysis Of A Fluidized-Bed Catalytic Reactor Based On A Generalized Dynamic Model, Andres Mahecha-Botero, John R. Grace, Said S.E.H. Elnashaie, C. Jim Lim

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

A fluidized-bed reactor model is implemented to simulate a Maleic Anhydride (MA) reactor with special emphasis on its dynamic behaviour. The dynamic model is general enough that it can treat a wide range of catalytic systems, subject to mass and energy balances within the phases. The model represents multiple phases and regions (low-density phase, high-density phase, freeboard region) and can account for heat and mass axial and radial anisotropic dispersion, change in molar/volumetric flow due to reaction, temperature and pressure profiles, hydrodynamic regime variation, catalyst deactivation, energy options, and multiple membranes of various geometries for introduction/extraction of any compound. The …


Radial Distribution Of Particle Clusters In Down Flow Reactors, Samuel R. Nova, Stefan Krol, Hugo Ignacio De Lasa May 2007

Radial Distribution Of Particle Clusters In Down Flow Reactors, Samuel R. Nova, Stefan Krol, Hugo Ignacio De Lasa

The 12th International Conference on Fluidization - New Horizons in Fluidization Engineering

Particle clustering is of major importance in down flow reactors having a profound influence on some fundamental properties of the flowing suspension such as particle slip velocity. The goal of this study is to provide further evidence to support the formation of clusters using the novel CREC-GS-Optiprobes. This sensor is equipped with GRIN lenses and introduces minimum intrusion effects. Results reported include radial distributions of particle cluster size and velocity under various gas flow superficial velocities and suspension densities. Micro-scale and macro-scale flow structures are advanced on the basis of the reported data.