Search results for "Mici"

showing 10 items of 1671 documents

Analysis and simulation of scale-up potentials in reverse electrodialysis

2015

The Reverse Electrodialysis (RED) process has been widely accepted as a viable and promising technology to produce electric energy from salinity difference (salinity gradient power - e.g. using river water/seawater, or seawater and concentrated brines). Recent R&D efforts demonstrated how an appropriate design of the RED unit and a suitable selection of process conditions may crucially enhance the process performance. With this regard, a process simulator was developed and validated with experimental data collected on a lab-scale unit, providing a new modelling tool for process optimisation. In this work, performed within the REAPower project (www.reapower.eu), a process simulator previousl…

EngineeringSettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi Chimici020209 energySettore ING-IND/25 - Impianti Chimicisea waterprocess simulatorOcean Engineering02 engineering and technology010501 environmental sciencesmodel.01 natural sciencesRiver waterElectric energyReversed electrodialysis0202 electrical engineering electronic engineering information engineeringOsmotic powerProcess engineeringSalinity Gradient Power0105 earth and related environmental sciencesWater Science and Technologybusiness.industryEnvironmental engineeringExperimental dataSalinity Gradient Power; RED; sea water; brine; process simulator; model.REDPollution6. Clean waterProcess conditionsbrineSCALE-UPSeawaterbusiness
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Type-2 fuzzy control of a fed-batch fermentation reactor

2010

Abstract The aim of the paper is to present the application of type-2 fuzzy logic controllers (T2FLCs) to the control of a fed-batch fermentation reactor in which the penicillin production is carried out. The performance of the control system using T2FLCs is compared by simulation with that of a control system using type-1 fuzzy logic controllers (T1FLCs). The non linear model used for the simulation study is an unstructured model characterized by the presence of non linearities, parameter uncertainty and measurement noise. Simulation results confirm the robustness of the T2FLC which shows a better performance than its type-1 counterpart particularly when uncertainties are present in the co…

EngineeringSettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciBatch fermentationbusiness.industryNon linear modelControl engineeringFuzzy control systemType (model theory)Fuzzy logicNoiseControl theoryRobustness (computer science)Control systemtype-2 fuzzy logic controller uncertainties non linear system fed batch fermentation reactorbusiness
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Simulation of stability and dynamics of multistage flash desalination

2011

gPROMS software was used to study the dynamics of a multistage flash desalination brine circulation system (MSF-BR) as a function of major operating parameters. Most of the previous studies focused on MSF-BR dynamic model development however; it gave very little information on dynamic response of the system to the most significant process independent parameters. The present model was first validated against available industrial data of different plants. System dynamics were obtained upon increasing/decreasing several of the operating parameters over a range of ± 15%. Results show that increase/decrease of the cooling seawater flow rate have limited effect on the system dynamics. Increasing/…

EngineeringSettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciGeneral Chemical EngineeringDynamicMultistage flashingDesalinationSteady stateControlGeneral Materials ScienceModel developmentChemical Engineering (all)Process engineeringSimulationWater Science and Technologybusiness.industryDesalinationMechanical EngineeringSteam temperatureChemistry (all)ModelingGeneral ChemistryVolumetric flow rateSystem dynamicsBrineDemisterSeawaterMaterials Science (all)business
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On the assessment of power consumption and critical impeller speed in vortexing unbaffled stirred tanks

2017

Abstract Unbaffled stirred tanks are increasingly recognized as a viable alternative to common baffled tanks for a number of processes and bio-processes where the presence of baffles is undesirable. Notwithstanding the increasing industrial interest towards unbaffled tanks, available experimental information on their behaviour is still very poor, even for important parameters such as mechanical power drawn and critical impeller speed (Ncr) at which the transition between non-aerated (sub-critical regime) and aerated (super-critical regime) conditions occurs. In this work the influence of Reynolds and Froude numbers on power consumption characteristics of unbaffled stirred tanks is presented…

EngineeringSettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciGeneral Chemical EngineeringScale-upUnbaffled tankSettore ING-IND/25 - Impianti ChimiciMixing (process engineering)BioreactorMechanical engineeringBaffle02 engineering and technologyPower numberVortexing tanksymbols.namesakeImpeller020401 chemical engineeringMixingFroude numberChemical Engineering (all)0204 chemical engineeringShape factorbusiness.industryPower numberChemistry (all)Rotational speedGeneral ChemistryMechanics021001 nanoscience & nanotechnologySCALE-UPsymbols0210 nano-technologybusiness
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A simulation tool for analysis and design of reverse electrodialysis using concentrated brines

2015

Abstract Reverse electrodialysis (SGP-RE or RED) represents a viable technology for the conversion of the salinity gradient power into electric power. A comprehensive model is proposed for the RED process using sea or brackish water and concentrated brine as feed solutions. The goals were (i) reliably describing the physical phenomena involved in the process and (ii) providing information for optimal equipment design. For such purposes, the model has been developed at two different scales of description: a lower scale for the repeating unit of the system (cell pair), and a higher scale for the entire equipment (stack). The model was implemented in a process simulator, validated against orig…

EngineeringSettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciGeneral Chemical EngineeringSettore ING-IND/25 - Impianti Chimicisea waterprocess simulator7. Clean energyReversed electrodialysisOsmotic powerProcess engineeringSalinity Gradient PowerPower densitygeographygeography.geographical_feature_categoryBrackish waterbusiness.industryEnvironmental engineeringReverse ElectrodialysiGeneral ChemistryInlet6. Clean waterVolumetric flow ratebrineBrineElectric powerbusinessSalinity Gradient Power; Reverse Electrodialysis; sea water; brine; process simulator; multi-scale modelmulti-scale modelChemical Engineering Research and Design
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A neural network-based optimizing control system for a seawater-desalination solar-powered membrane distillation unit

2013

Abstract Several schemes have been proposed so far for coupling desalination processes with the use of renewable energy. One of their main drawbacks, however, is the nature of the energy source that requires a discontinuous and non-stationary operation, with some control and optimization problems. In the present work, a solar powered membrane distillation system has been used for developing an optimizing control strategy. A neural network (NN) model of the system has been trained and tested using experimental data purposely collected. Afterwards, the NN model has been used for the analysis of the process performance under various operating conditions, namely distillate production versus fee…

EngineeringSettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciOptimization problembusiness.industryGeneral Chemical EngineeringProcess (computing)Control engineeringMembrane distillationMembrane distillationDesalinationNeural networkComputer Science ApplicationsRenewable energylaw.inventionSolar energylawControl systemControl OptimizationbusinessEnergy sourceProcess engineeringDistillation
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Prediction of flow fields in a dual-impeller stirred vessel

1999

Numerical simulations were connected for the flow field in a baffled tank stirred by a dual Rushton impeller. For this geometry, LDV measurements show a characteristic dependence of the flow patterns upon the position of the impellers. Two advanced modeling approaches were tested. In the first, the vessel was divided info two concentric blocks, coupled by, a sliding grin technique, and simulations were conducted in time-dependent mode. In the second approach, the vessel was modeled as two partially over-lapping I regions, the inner one rotating with the impeller and rite outer one stationary simulations were run in steady-state mode for each of the two regions, while information was iterati…

EngineeringSettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciSettore ING-IND/24 - Principi Di Ingegneria ChimicaEnvironmental EngineeringBlade (geometry)business.industryTurbulenceGeneral Chemical EngineeringSettore ING-IND/25 - Impianti ChimiciFlow (psychology)Mode (statistics)MechanicsConcentricPhysics::Fluid DynamicsDual impellerImpellerOpticsStirred tankMixingPosition (vector)Boundary value problembusinessCFDSettore ING-IND/19 - Impianti NucleariBiotechnology
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Coupling CFD with a one-dimensional model to predict the performance of reverse electrodialysis stacks

2017

Abstract Different computer-based simulation models, able to predict the performance of Reverse ElectroDialysis (RED) systems, are currently used to investigate the potentials of alternative designs, to orient experimental activities and to design/optimize prototypes. The simulation approach described here combines a one-dimensional modelling of a RED stack with a fully three-dimensional finite volume modelling of the electrolyte channels, either planar or equipped with different spacers or profiled membranes. An advanced three-dimensional code was used to provide correlations for the friction coefficient (based on 3-D solutions of the continuity and Navier-Stokes equations) and the Sherwoo…

EngineeringSettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciSettore ING-IND/25 - Impianti ChimiciReverse electrodialysis; Saline Gradient Energy; Ion Exchange Membrane; Computational Fluid Dynamics; Mass transferFiltration and Separation02 engineering and technologyComputational Fluid DynamicComputational fluid dynamicsBiochemistry020401 chemical engineeringStack (abstract data type)Reversed electrodialysisReverse electrodialysiPerformance predictionMass transferGeneral Materials Science0204 chemical engineeringPhysical and Theoretical ChemistrySettore ING-IND/19 - Impianti NucleariSimulationIon Exchange MembraneLaplace's equationSettore ING-IND/24 - Principi Di Ingegneria ChimicaSaline Gradient EnergyFinite volume methodbusiness.industryScalar (physics)Mechanics021001 nanoscience & nanotechnologySettore ING-IND/06 - Fluidodinamica0210 nano-technologyConvection–diffusion equationbusinessJournal of Membrane Science
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Membrane distillation: Solar and waste heat driven demonstration plants for desalination

2013

Abstract The development of small to medium size, autonomous and robust desalination units is needed to establish an independent water supply in remote areas. This is the motivation for research on alternative desalination processes. Membrane distillation (MD) seems to meet the specific requirements very well. This work is focused on experimental studies on full scale demonstration systems, utilizing a parallel multi MD-module setup. Three different plant concepts are introduced, one of them is waste heat driven and two of them are powered by solar thermal collectors. Design parameters and system design are presented. After the analysis of plant operation a comparison among the plants as we…

EngineeringSettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciSolarthermieGeneral Chemical EngineeringFull scaleGeothermal desalinationMembrane distillationheat thermal energy storageDesalinationsteam generationSolarthermische KraftwerkeWaste heatGeneral Materials Scienceheat exchangerWater Science and TechnologyWaste managementbusiness.industryMechanical EngineeringHochtemperaturspeicherGeneral ChemistrySolar energyMembrane distillation system design solar energy desalination GORSpeichertechnologienSystems designbusinessSolarthermie und OptikThermal energy
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CFD simulations of dense solid–liquid suspensions in baffled stirred tanks: Prediction of solid particle distribution

2013

Abstract Industrial tanks devoted to the mixing of solid particles into liquids are often operated at an impeller speed N less than Njs (defined as the lowest speed allowing the suspension of all particles): under such conditions the distribution of solid-particles is very far from being homogeneous and very significant concentration gradients exist. The present work is devoted to assessing the capability of Computational Fluid Dynamics (CFD) in predicting the particle distribution throughout the tank. The CFD model proposed by Tamburini et al. [58] and successfully applied to the prediction of the sediment amount and shape was adopted here to simulate the particle distribution under partia…

EngineeringSettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciSteady statebusiness.industryGeneral Chemical EngineeringSettore ING-IND/25 - Impianti ChimiciMixing (process engineering)Mechanical engineeringGeneral ChemistryMechanicsComputational fluid dynamicsIndustrial and Manufacturing EngineeringRushton turbineImpellerSettore ING-IND/06 - FluidodinamicaEnvironmental ChemistryParticleMulti Fluid Model (MFM) Computational Fluid Dynamics (CFD) turbulence closure solid-liquid suspension partial suspension drag force stirred tank particle distribution Unsuspended Solid Criterion (USC)Suspension (vehicle)businessReynolds-averaged Navier–Stokes equations
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