Search results for "pressure drop"

showing 10 items of 57 documents

Transition to turbulence in serpentine pipes

2017

Abstract The geometry considered in the present work (serpentine pipe) is a sequence of U-bends of alternate curvature. It is characterized by pipe diameter, d = 2a and bend diameter, D = 2c. The repeated curvature inversion forces the secondary flow pattern, typical of all flows in curved ducts, to switch between two mirror-like configurations. This causes (i) pressure drop and heat or mass transfer characteristics much different from those occurring either in a straight pipe or in a constant-curvature pipe, and (ii) an early loss of stability of the base steady-state flow. In the present work, four values of the curvature δ = a/c (0.2, 0.3, 0.4 and 0.5) were considered. For each value of …

020209 energyPrandtl number02 engineering and technologySerpentine pipeCondensed Matter PhysicCurvature01 natural sciences010305 fluids & plasmasPhysics::Fluid Dynamicssymbols.namesakeEngineering (all)Computational fluid dynamic0103 physical sciences0202 electrical engineering electronic engineering information engineeringSecondary flowSettore ING-IND/19 - Impianti NucleariPhysicsPressure dropTurbulenceGeneral EngineeringReynolds numberMechanicsCondensed Matter PhysicsSecondary flowTransition to turbulenceClassical mechanicsHeat fluxFlow conditioningsymbolsBifurcation
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An experimental investigation on two different methods for swirl induction in a multivalve engine

2005

This paper describes an experimental investigation aimed at comparing the swirl effect induced by unbalancing the mass flow through the two intake ports of a multivalve engine head using two different methods: the first one reduced the curtain area of one of the intake valves [different lifts (DL) method]; the second one adopted a sluice-gate-shaped valve, installed upstream of the intake valves [swirl control valve (SCV) method] in order to cause a pressure drop. A steady-flow test rig (equipped with instrumentation for the discharge coefficient and swirl intensity measurement) was realized in order to compare and evaluate the results of both methods and determine their respective validit…

Control valvesPressure dropMechanical EngineeringMass flowTest rigAnalytical chemistryAerospace EngineeringOcean EngineeringMechanicsDischarge coefficientLift (force)Settore ING-IND/08 - Macchine A FluidoCylinder headAutomotive Engineeringswirl induction multivalve engine DL method SCV methodExperimental methodsMathematics
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Eulerian-Eulerian modelling and computational fluid dynamics simulation of wire mesh demisters in MSF plants

2014

Purpose – The purpose of this study is to focus on simulation of wire mesh demisters in multistage flash desalination (MSF) plants. The simulation is made by the use of computational fluid dynamics (CFD) software. Design/methodology/approach – A steady state and two-dimensional (2D) model was developed to simulate the demister. The model employs an Eulerian-Eulerian approach to simulate the flow of water vapor and brine droplets in the demister. The computational domain included three zones, which are the vapor space above and below the demister and the demister. The demister zone was modeled as a tube bank arrange or as a porous media. Findings – Sensitivity analysis of the model showed t…

DemisterComputer scienceMechanical engineeringMultistage flashingComputational fluid dynamicsEulerian modelingDesalinationsymbols.namesakeEngineering (all)Pressure dropbusiness.industryDesalinationGeneral EngineeringEulerian pathComputer Science Applications1707 Computer Vision and Pattern RecognitionMechanicsComputer Science ApplicationsDemisterComputational Theory and MathematicsHeat transfersymbolsbusinessPorous mediumCFDWater vaporSoftware
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Eulerian–Lagrangian modeling and computational fluid dynamics simulation of wire mesh demisters in MSF plants

2016

Abstract This study focuses on computational fluid dynamics model (CFD) for simulation of demisters in multistage flash desalination (MSF). The Eulerian–Lagrangian model (steady-state and two-dimensional) was developed to simulate the demister. The model was used to simulate the flow of water vapor and brine droplets in the demister. The computational domain includes the following three zones: the vapor space above the demister, the vapor space below the demister, and the demister. The demister zone was modeled as tube banks. A sensitivity analysis of the model revealed that vapor velocity is the main parameter that affects demister performance. Additionally, the analysis indicated that vap…

DemisterEngineeringGeneral Chemical EngineeringMultistage flashingMechanical engineering02 engineering and technologyComputational fluid dynamicsDesalinationEulerian lagrangian020401 chemical engineeringChemical Engineering (all)General Materials Science0204 chemical engineeringWater Science and TechnologyPressure dropDesalinationEulerian/Lagrangian modelingWire meshbusiness.industryMechanical EngineeringChemistry (all)General Chemistry021001 nanoscience & nanotechnologyFlashingDemisterMaterials Science (all)CFD0210 nano-technologybusinessWater vaporMarine engineeringDesalination
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ASSESMENT OF TEMPERATURE POLARIZATION IN MEMBRANE DISTILLATION CHANNELS BY LIQUID CRYSTAL THERMOGRAPHY

2014

AbstractThe measurement of local temperature distributions within a membrane distillation (MD) channel is a crucial step for the optimization of the channel and spacer geometry. This information allows the estimation of temperature polarization phenomena, which can dramatically influence the thermal efficiency of the process and the optimal choice of the geometric configuration (net spacer features, channel size, etc.). In the present work, a recently presented experimental technique, based on the use of thermochromic liquid crystals and digital image analysis, has been employed in order to assess the temperature polarization phenomena. The local heat transfer coefficient distribution on th…

Digital Image AnalysisThermal efficiencySettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciMaterials scienceSettore ING-IND/25 - Impianti ChimiciAnalytical chemistryOcean EngineeringHeat transfer coefficientengineering.materialMembrane distillationLiquid crystalMembrane DistillationSettore ING-IND/19 - Impianti NucleariWater Science and TechnologyPressure dropThermochromic Liquid CrystalDiamondMechanicsHeat TransferPolarization (waves)PollutionMembrane Distillation; Thermochromic Liquid Crystals; Heat Transfer; Temperature Polarization; Digital Image AnalysisTemperature PolarizationHeat transferengineering
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New Computational Fluid Dynamic Procedure to Estimate Friction and Local Losses in Coextruded Drip Laterals

2007

The design of trickle irrigation systems is crucial to optimize profitability and to warrant high values for the emission uniformity (EU) coefficient. EU depends on variation of the pressure head due to head losses along the lines and elevation changes, as well as the water temperature, and other parameters related to the emitters (manufacturer's coefficient of variation, number of emitters per plants, emitter spacing). Trickle irrigation plants are usually designed using small diameter plastic pipes (polyethylene or polyvinyl chloride). The design problem, therefore, needs to consider head losses along the lines as well as emitter discharge variations due to the manufacturer's variability.…

EngineeringDrip irrigationFLOWSDIAMETER PLASTIC PIPES; PRESSURE LOSSES; IRRIGATION LINES; WALL TURBULENCE; EPSILON-MODEL; FLOWSHydraulic headsymbols.namesakeEPSILON-MODELGeotechnical engineeringWater Science and TechnologyCivil and Structural EngineeringCommon emitterPressure dropbusiness.industryTurbulenceReynolds numberDIAMETER PLASTIC PIPESMechanicsAgricultural and Biological Sciences (miscellaneous)PRESSURE LOSSESPressure headWALL TURBULENCEIRRIGATION LINESsymbolsPhysics::Accelerator PhysicsHead (vessel)businessJournal of Irrigation and Drainage Engineering
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Investigation of flow and heat transfer in corrugated passages—I. Experimental results

1996

Abstract An experimental and numerical study of flow and heat transfer was conducted for a crossed-corrugated geometry, representative of compact heat exchangers including air preheaters for fossil-fuelled power plant. In this paper, we describe the method of applying thermochromic liquid crystals and true-colour image processing to give local Nusselt number distribution over the surface, and average Nu, both of quantitative reliability; a careful uncertainty analysis is also presented. Typical experimental results for heat transfer and pressure drop are presented and discussed for various geometries and Reynolds numbers, and are compared with literature data. Numerical predictions are disc…

Fluid Flow and Transfer ProcessesPressure dropDynamic scraped surface heat exchangerMaterials scienceMechanical EngineeringReynolds numberThermodynamicsHeat transfer coefficientMechanicsCondensed Matter PhysicsNusselt numberPhysics::Fluid Dynamicssymbols.namesakeHeat exchangerHeat transfersymbolsUncertainty analysisInternational Journal of Heat and Mass Transfer
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Enhancement of heat exchanger thermal hydraulic performance using aluminum foam

2018

Abstract This paper deals with an experimental study of a turbulent forced convection in a rectangular channel partly fitted with aluminum metallic foam blocks. Experiments were carried out on samples having a constant porosity of 93.8%, different grades of 5, 20 and 40 PPI, and three different height ratios of 0.6, 0.8 and 1. The blocks were arranged in a baffle like configuration. A constant heat flux of 2 W/cm2 was applied on the bottom wall of the test section, while air velocity was varied from 1 to 5 m·s−1. Temperatures of the wall along the flow direction as well as those of the inlet and outlet sections have been measured. Additionally, pressure drop measurements across the aluminum…

Fluid Flow and Transfer ProcessesPressure dropMaterials science020209 energyMechanical EngineeringGeneral Chemical EngineeringPlate heat exchangerAerospace EngineeringBaffle02 engineering and technology021001 nanoscience & nanotechnologyForced convectionNuclear Energy and EngineeringHeat fluxHeat transfer0202 electrical engineering electronic engineering information engineeringPlate fin heat exchangerComposite material0210 nano-technologyShell and tube heat exchangerExperimental Thermal and Fluid Science
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Computational fluid dynamics in the assessment of patients' postoperative status after glottis-widening surgery

2017

Background. Computational fluid dynamics (CFD), a rapidly developing instrument with a number of practical applications, allows calculation and visualization of the changing parameters of airflow in the upper respiratory tract. Objectives. The aim of this study was to demonstrate the advantages of CFD as an instrument for noninvasive tests of the larynx in patients who had undergone surgical treatment due to bilateral vocal fold paralysis. Material and Methods. Surface measurements of the glottic space were made during maximum adduction of the vocal folds. Additionally, the following spirometric parameters were determined: forced vital capacity (FVC), forced expiratory volume in the first s…

MalePatient-Specific ModelingLarynxVital capacityVital CapacityVideo RecordingMedicine (miscellaneous)Peak Expiratory Flow RateVocal Cords02 engineering and technologyForced Expiratory VolumePharmacology (medical)LungGenetics (clinical)Aged 80 and overPressure dropair flowMiddle Agedrespiratory system021001 nanoscience & nanotechnologyBiomechanical PhenomenaTreatment Outcomemedicine.anatomical_structureVocal foldsBreathingFemaleRadiologyCFD0210 nano-technologyVocal Cord ParalysisGlottismedicine.medical_specialtyGlottis0206 medical engineeringAirflowGeneral Biochemistry Genetics and Molecular BiologyFEV1/FVC ratioPhonationImage Interpretation Computer-AssistedInternal MedicinemedicineHumansAgedbilateral vocal fold paralysisLaryngoscopybusiness.industry020601 biomedical engineeringSpirometryCase-Control StudiesReviews and References (medical)HydrodynamicsbusinessSoftwareAdvances in Clinical and Experimental Medicine
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Thermal-hydraulic optimisation of the DEMO divertor cassette body cooling circuit equipped with a liner

2019

Abstract Within the framework of the Work Package DIV 1 - “Divertor Cassette Design and Integration” of the EUROfusion action, a research campaign has been jointly carried out by University of Palermo and ENEA to investigate the thermal-hydraulic performances of the DEMO divertor cassette cooling system. The research activity has been focused onto the most recent design of the Cassette Body (CB) cooling circuit equipped with a Liner, whose main function is to protect the underlying vacuum pump hole from the radiation arising from the plasma. The research campaign has been carried out following a theoretical-computational approach based on the Finite Volume Method and adopting the commercial…

Materials scienceNuclear engineeringThermofluid-dynamic7. Clean energy01 natural sciences010305 fluids & plasmaslaw.inventionThermal hydraulicsDivertorlaw0103 physical sciencesMass flow rateWater coolingGeneral Materials ScienceCFD analysi010306 general physicsDEMOSettore ING-IND/19 - Impianti NucleariCivil and Structural EngineeringPressure dropThermofluid-dynamicsCassette bodyMechanical EngineeringDivertorCoolantNuclear Energy and EngineeringFlow velocityVacuum pumpFusion Engineering and Design
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