Force On A Large Sphere Immersed In An Expanded Water-Fluidized Bed Over A Wide Range Of Voidage Values,
2016
University of Calabria; Via P. Bucci, Cubo 45A, Rende (CS) 87036, Italy
Force On A Large Sphere Immersed In An Expanded Water-Fluidized Bed Over A Wide Range Of Voidage Values, Alberto Di Renzo, Nicola Grassano, Francesco P. Di Maio
Fluidization XV
The presence of large objects immersed in a fluidized bed has been long studied in order to verify to what extent can the analogy with a buoyant body in a liquid represent the object-to-suspension interaction (1). One of the most useful information resulting from such study is the effective drag force exerted on the object and how it is related to the suspension properties, particularly with respect to the expansion degree. Implications are found also in the formulation of drag force expressions for homogeneous polydisperse systems.
In the present work an experimental series of tests has been conducted on a …
Applications Of Tribology And Fracture Mechanics To Determine Wear And Impact Attrition Of Particulate Solids In Cfb Systems,
2016
National Energy Technology Laboratory, USA
Applications Of Tribology And Fracture Mechanics To Determine Wear And Impact Attrition Of Particulate Solids In Cfb Systems, Ronald W. Breault, Samuel C. Bayham, Esmail R. Monazam
Fluidization XV
In recent years, much attention has been focused on the development of novel technologies for carbon capture and chemicals production that utilize a circulating fluidized bed configuration; examples include chemical looping combustion and circulation of temperature swing adsorbents in a CFB configuration for CO2 capture. A major uncertainty in determining the economic feasibility of these technologies is the required solids makeup rate, which, among other factors, is due to impact and wear attrition at various locations, including standpipes, cyclones, and the gas jets in fluid beds. While correlations have been developed that estimate the attrition rates at these areas, these …
Experimental Validation Of Cfd Hydrodynamic Models For Catalytic Fast Pyrolysis (Cfp),
2016
KiOR LLC, 13001 Bay Park Road, Pasadena TX 77507
Experimental Validation Of Cfd Hydrodynamic Models For Catalytic Fast Pyrolysis (Cfp), Bruce D Adkins, Travis Dudley, Neeti Kapur, Peter Blaser, James Parker
Fluidization XV
Catalytic Fast Pyrolysis (CFP) is a means of producing renewable fuels and chemicals from lignocellulosic biomass. KiOR, a world leader in this area, has developed a CFP technology along the lines of the FCC process.
In early 2015, KiOR engaged with CPFD Software to develop a new, parallel path for developing and optimizing its CFP technology. Emphasis was placed on hydrodynamics predictions, since that is one key area where KiOR’s CFP differs significantly from FCC. The KiOR-CPFD team reduced the hydrodynamics validation problem to four key milestones. Each milestone needs independent experimental validation, and must build on the previous ones: …
Combustion Of Lignin-Rich Residues With Coal In A Pilot-Scale Bubbling Fluidized Bed Reactor,
2016
Istituto di Ricerche sulla Combustione - Consiglio Nazionale delle Ricerche ,Piazzale V. Tecchio 80, 80125 Napoli, Italy
Combustion Of Lignin-Rich Residues With Coal In A Pilot-Scale Bubbling Fluidized Bed Reactor, Roberto Solimene, Riccardo Chirone, Antonio Cammarota, Nicola Rossi, Paolo Leoni, Piero Salatino
Fluidization XV
The deployment and the exploitation of bioethanol as automotive fuel became more and more relevant to reduce the emissions of greenhouse gases and to limit the dependence on countries supplying fossil fuels. However, the production of second-generation bioethanol, i.e. using lignocellulosic biomass or scraps of agricultural crops as feedstock, generates a waste stream consisting of lignin-rich residues whose fate has to be found (1-2). This work aims at investigating the combustion of lignin-rich residues (in the following simply called lignin), coming from a second-generation bioethanol production plant, with coal in a pilot-scale bubbling fluidized bed combustor (FBC). The pilot-scale 200kW …
Micro/Meso Simulations Of A Fluidized Bed With Heat Transfer,
2016
IFP Energies Nouvelles; Fluid Mechanics Department; Rond-Point de l’échangeur de Solaize, 69360, Solaize, France
Micro/Meso Simulations Of A Fluidized Bed With Heat Transfer, Florian Euzenat, Anthony Wachs, Abdelkader Hammouti, Pascal Fede, Eric Climent
Fluidization XV
Particulate flows encountered in fluidized beds are frequently used in industrial applications (refining, energy, chemicals/petrochemicals, pharmaceutics). The wide range of spatial scales and interactions between the phases in such systems yields a complex flow often coupled with mass and/or heat transfer. These transfer have been widely investigated in the past in an experimental and numerical manners for dilute (1, 2) and dense suspensions (3, 4).
Multi-scale modeling is a numerical approach developed to understand these phenomena from the particle scale (microscale) to process unit (macroscale). An intermediate scale (mesoscale) ranging from 104 to 108 particles is also introduced. …
Cfd-Dem Simulation Of Nanoparticle Agglomerates Fluidization With A Micro- Jet,
2016
Key Laboratory of Energy Thermal Conversion and Control of Ministry of Education, School of Energy and Environment, Southeast University, China ; Department of Chemical Engineering, Faculty of Applied Sciences, Delft University of Technology, The Netherlands
Cfd-Dem Simulation Of Nanoparticle Agglomerates Fluidization With A Micro- Jet, Daoyin Liu, Berend G. M. Van Wachem, J. Ruud Van Ommen, Robert F. Mudde, Xiaoping Chen
Fluidization XV
Nanoparticles can be fluidized as agglomerates, but for some materials this is cumbersome due to the cohesive nature. Micro-jets are shown to be effective for improving the fluidization in such cases (1). In this study, the mechanisms of micro-jet assistance are investigated by using an adhesive CFD-DEM (Computational Fluid Dynamics – Discrete Element Modelling) model. In previous studies, the complex agglomerates found in a fluidized bed are treated as the discrete elements (2). Here we use the simple agglomerates as the discrete elements, which are the building blocks of the larger complex agglomerates. The collision of the simple agglomerates are …
Segregation Of Equal-Sized Particles Of Different Densities In A Vertically Vibrated Fluidized Bed,
2016
Carlos III University of Madrid; Department of Thermal and Fluid Engineering, Av. de la Universidad 30, Leganés, Madrid, Spain
Segregation Of Equal-Sized Particles Of Different Densities In A Vertically Vibrated Fluidized Bed, E. Cano-Pleite, A. Acosta-Iborra, F. Hernández-Jiménez, T. Tsuji, C. R. Müller
Fluidization XV
Many operations in the chemical and energy-conversion industries rely on the fluidization of heterogeneous materials. During fluidization, particles of different densities can segregate, even if they are of the same size. Segregation is typically an undesired phenomenon, especially in fluidized bed reactors (1). Thus, an understanding of segregation on a fundamental level is paramount to identify effective measures to control it. One approach to control segregation could be the vibration of the bed vessel. However, there is very little literature available concerning the effect of vibration on density-induced segregation dynamics (2).
Thus, this work studies the influence of vibration on …
Reversal Of Gulf Stream Circulation In A Vertically Vibrated Triangular Fluidized Bed,
2016
Carlos III University of Madrid; Department of Thermal and Fluid Engineering ,Av. de la Universidad 30, Leganés, Madrid, Spain
Reversal Of Gulf Stream Circulation In A Vertically Vibrated Triangular Fluidized Bed, E. Cano-Pleite, A. Acosta-Iborra, F. Hernández-Jiménez, C. R. Müller
Fluidization XV
Vibrated fluidized beds are a process intensification technique consisting in introducing vibratory kinetic energy in a fluidized bed (1). In this work we assess experimentally the effect of vibration on the gulf-stream circulation pattern of particles in a fluidized bed that is of triangular shape. The bed has 0.206 m span and 0.01 m thickness. The base of the bed is composed of two inclined walls, each one forming an angle of 45º with the horizontal. Air was injected through the inclined bed walls to fluidize the bed (see Figure 1a). This gas injection, together with vibration, can make the …
Experimental Study Of Solid Mixing Mechanism In A 2d Fluidized Bed,
2016
Universidad Carlos III de Madrid, Thermal and Fluid Engineering Department, Avda. de la Universidad, Spain.
Experimental Study Of Solid Mixing Mechanism In A 2d Fluidized Bed, J. Sánchez-Prieto, A. Soria-Verdugo, L.M. García-Gutiérrez, F. Hernández-Jiménez, F. Suárez-Gómez
Fluidization XV
The main mechanism of solids mixing in bubbling fluidized beds is well understood. When a bubble rises through the bed, it carries a wake of particles to the bed surface. A downflow of solids exists in the region surrounding the rising bubbles, resulting on an overall convective circulation of particles in the axial direction (1).
In this work, a new method to characterize solids mixing in a 2D fluidized bed is developed. This mixing index is able to macroscopically characterize the rate of mixing in a fluidized bed by means of DIA. The mixing index is analogous to the Lacey’s …
Microscopic Modelling Of Capillary Liquid Bridge Force And Volume Repartition For Dem Simulations Of Polydisperse Systems,
2016
University of Calabria; Via P. Bucci, Cubo 45A, Rende (CS) 87036, Italy
Microscopic Modelling Of Capillary Liquid Bridge Force And Volume Repartition For Dem Simulations Of Polydisperse Systems, Alberto Di Renzo, Andrea Lorenti, Francesco P. Di Maio
Fluidization XV
Many fluidization processes like granulation, agglomeration, encapsulation or coating exhibit conditions where liquid bridges form between particles (1), resulting in strong particle-particle interactions at the microscopic scale. DEM and DEM-CFD simulations are able to show how the particle-scale phenomena determine the overall behavior of a wet particulate material in industrial systems.
Description of the capillary interaction between spherical particles in the pendular regime (i.e. with liquid bridges forming on a one-to-one basis) has been long studied and characterized, particularly in the case of spheres of the same size. When polydisperse systems are considered, the formation, interaction force and rupture of …
Recirculating Fluidized Bed Reactor For Chemical-Looping,
2016
Department of Chemical Engineering, Birla Institute of Technology and Science Pilani, Rajasthan, India.
Recirculating Fluidized Bed Reactor For Chemical-Looping, Raman Sharma, Mines Paristech, Arnaud Delebarre, Babu Alappat
Fluidization XV
Chemical-Looping Combustion (CLC) is an oxy-combustion CO2 capture technique. CLC involves metal oxides to split the combustion in oxidation and reduction cycles. A wide variety of reactors, single as well as interconnected, have been tested for CLC. These reactor configurations have some operational and process difficulties associated with them. A single Recirculating Fluidized Beds (RCFB) reactor configuration is proposed here for CLC with a feeling that it can overcome some of these problems. RCFB is a spouted fluidized bed with a central riser tube and the outer tube is known as downcomer. A cold model of RCFB reactor was …
Comparison Of Optical Probes And X-Ray Tomography For Bubble Characterization In Fluidized Bed Methanation Reactors,
2016
Paul Scherrer Institut, 5232 Villigen PSI, Switzerland
Comparison Of Optical Probes And X-Ray Tomography For Bubble Characterization In Fluidized Bed Methanation Reactors, F. Schillinger, S. Maurer, T.J. Schildhauer, S.M.A. Biollaz, E. C. Wagner, R.F. Mudde, J.R. Van Ommen
Fluidization XV
The performance of many fluidized bed reactors strongly depends on the bubble behavior since they influence the mass transfer to the dense phase where the catalyst is present. An example is the methanation in a fluidized bed that allows for conversion of unsaturated hydrocarbons in the gasification gas without catalyst deactivation [1]. The BFB reactor is a very challenging step in the process chain to produce SNG out of biomass as feedstock since next to the bubble behavior a lot of other parameters like temperature, pressure, particle size, attrition of the catalyst, internals, bed height and reactor diameter etc. affect …
Attrition Of Methanol To Olefins Catalyst In A Jet Cup,
2016
National Engineering Laboratory for MTO, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, China
Attrition Of Methanol To Olefins Catalyst In A Jet Cup, Mao Ye, Zhongmin Liu, Yinfeng Zhao, Jingai Haoa
Fluidization XV
No abstract provided.
Simulation Of Fuel Particles Motion In A 2d Fluidized Bed Using A Hybrid-Model Considering Wall Friction,
2016
University Carlos III of Madrid; Department of Thermal and Fluid Engineering Av. de la Universidad, 30, 28911 Leganés, Madrid, Spain
Simulation Of Fuel Particles Motion In A 2d Fluidized Bed Using A Hybrid-Model Considering Wall Friction, L.M. Garcia-Gutierrez, F. Hernández-Jiménez, A. Soria-Verdugo, A. Acosta-Iborra
Fluidization XV
The mixing of fuel particles is a key issue on the performance of fluidized bed reactors. In this work, the motion of a non-reactive fuel particle in a 2D bubbling fluidized bed at ambient conditions is simulated employing a hybrid-model. The hybrid-model, implemented in the code MFIX, simulates the dense and gas phases using a Two-Fluid Model (TFM) while the fuel particles are modeled using a Discrete Element Method (DEM). The importance of the present hybrid-model is that the interaction of the continuum phases with the fuel particles behavior is fully coupled.
In a previous study, Hernández-Jiménez et al. (1) …
Solids Maldistribution In Parallel Cyclones,
2016
Particulate Solid Research, Inc
Solids Maldistribution In Parallel Cyclones, T. M. Knowlton, John Findlay, Larry P. Hackman, Craig A. Mcknight
Fluidization XV
The amount of solids maldistribution in parallel cyclones was investigated to determine what parameters affected the maldistribution. In many fluidized bed processes with parallel cyclones (as many as 20 in parallel in some cases), it has been noted that unequal erosion (wear) can occur in the cyclones. This results in very short run lengths in order to repair the cyclones with the most wear. This unequal wear has been attributed to unequal solids distribution to the cyclones. In addition to the increased wear, cyclone efficiencies are affected as well.
In the specific concern that generated this study, it was found …
Improved Gas-Solid Mixing And Mass Transfer In A Pulsed Fluidized Bed Of Biomass With Tapered Bottom,
2016
Department of Chemical and Biological Engineering, the University of British Columbia, Canada
Improved Gas-Solid Mixing And Mass Transfer In A Pulsed Fluidized Bed Of Biomass With Tapered Bottom, Dening Jia, C. Jim Lim, Xiaotao Bi, Shahab Sokhansanj, Atsushi Tsutsumi
Fluidization XV
To improve fluidization quality and mass transfer rate of biomass fluidized beds with pulsed gas flow, an existing fluidized bed with rectangular cross-section area was modified with the insertion of a tapered bottom section such that dead zones observed in the original design could be eliminated. Batch drying tests were performed as an indirect indicator of gas-solid contact efficiency and mass transfer performance. Compared to the original design, biomass particles could be fluidized at a wider range of gas pulsation frequencies with significantly reduced channeling and gas bypassing in the new tapered design. Faster drying and thus improved mass transfer …
Clc, A Promising Concept With Challenging Development Issues,
2016
IFP Energies nouvelles, France
Clc, A Promising Concept With Challenging Development Issues, Thierry Gauthier, M. Yazdanpanah, A. Forret, B. Amblard, A. Lambert, S. Bertholin
Fluidization XV
Chemical Looping Combustion (CLC) is a promising technique to achieve fuel combustion in a nitrogen free atmosphere, therefore giving the possibility to separate and store or use CO2. Several potential applications are considered in the field of power generation with gas, liquid and solid fuels. In the Carbon Capture, Storage and Utilization (CCSU) context, energy penalty is reduced compared to other routes. In addition, other applications of Chemical Looping are considered in the field of H2 production or gasification for instance.
In the past years, a huge effort has been conducted worldwide to investigate CLC materials and process issues. In …
Modelling Of A Chemical Looping Combustion System Equipped With A Two- Stage Fuel Reactor,
2016
Istituto di Ricerche sulla Combustione, Consiglio Nazionale delle Ricerche, Italy.
Modelling Of A Chemical Looping Combustion System Equipped With A Two- Stage Fuel Reactor, Roberto Solimene, Antonio Coppola, Piero Bareschino, Piero Salatino
Fluidization XV
The proper selection of the oxygen carrier and the correct design of the fuel reactor represent the main criticalities for the success of the chemical looping combustion (CLC) process for solid fuels. In a previous work (1) a two-stage fuel reactor (t-FR), consisting of two bubbling beds in series (bottom bed and top bed) (Fig. 1), has been proposed in order to overcome the limitations of a single-stage fuel reactor (poor char conversion, slip of unburnt volatiles, extensive elutriation of char fines). A mathematical model has been developed with the aim of assessing the performances of the two-stage fuel reactor …
Modeling And Process Features Of Plug Flow Reactor With Internal Recirculation For Biomass Pyrolysis,
2016
Hatch Ltd , Canada
Modeling And Process Features Of Plug Flow Reactor With Internal Recirculation For Biomass Pyrolysis, Kamal Adham
Fluidization XV
A new fluidized bed design is applied to the pyrolysis of biomass, in a plug-flow with internal-recirculation (PFIR) arrangement, where the movement of solids from feed zone to product zone and the circulation within a closed loop are achieved, by the use of directional high-speed tuyeres that induce both the suspension and horizontal movement of the charge. Separation between feed and product zones is provided through one or more underflow weirs. Wet and hard-to-fluidize biomass is targeted, where fluidization and pyrolysis of the feed is achieved by the internal hot sand recirculation. Plug flow allows for both stages (pyrolysis and …
Cold Flow Modelling Of Char Concentration In The Recirculated Bed Material Stream Of A Dual Fluidized Bed Steam Gasification System,
2016
Bioenergy 2020+ GmbH, Wiener Straße 49, A-7540 Güssing, Austria
Cold Flow Modelling Of Char Concentration In The Recirculated Bed Material Stream Of A Dual Fluidized Bed Steam Gasification System, Stephan Kraft, Friedrich Kirnbauer, Hermann Hofbauer
Fluidization XV
The dual fluidized bed (DFB) steam gasification technology of biomass was developed at Vienna University of Technology and is well-established for transforming biomass into a product gas which can be used for further applications. The DFB steam gasification reactor consists of a gasification chamber (bubbling bed, fluidized with steam) and a combustion chamber (turbulent bed, fluidized with air). Biomass is fed into the gasification chamber and gets in contact with the bed material, typically Olivine, at about 840°C. The released volatiles leave the gasification reactor as product gas. A part of the solid residue, called char, flows with the bed …
