0000000000108511

AUTHOR

Fedele D'aleo

showing 21 related works from this author

Integrated optic Surface Plasmon Resonance Measurements in Glass substrates

2007

The surface plasmon resonance (SPR) technique is an optical method that can be used to measure the refractive index of organic nano-layers adsorbed on a thin metal film. Although there are many techniques for measuring biomolecular interactions, SPR-based techniques play a central role in many current biosensing experiments, since they are most suited to sensitive and quantitative kinetic measurements. Here we give some results from the analysis and numerical elaboration of SPR data regarding the flow of different solutions with refractive indexes in the range of interest (1-1.4). After a brief discussion of the principles of SPR and of waveguide fabrication technique, we give a description…

FabricationOpticsFiber optic sensorbusiness.industryChemistrySurface plasmonSurface plasmon resonanceThin filmbusinessBiosensorWaveguide (optics)Refractive index
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Electrical Aging Tests on Enameled Wire Exposed to Gamma Irradiation

2011

Electrical agingIndustrial plantsMaterials sciencebusiness.industryStatorsGamma raysTestingGAMMA IRRADIATION ELECTRICAL AGINGElectrical engineeringElectrical treeingWindingThermosetsElectric brazingInsulating materialsPartial dischargesElectromechanical devicesIrradiationElectric brazing; Electromechanical devices; Gamma rays; Industrial plants; Insulating materials; Irradiation; Partial discharges; Stators; Testing; Thermosets; WindingComposite materialbusinessSettore ING-IND/19 - Impianti NucleariGamma irradiation
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Thermal-hydraulic and thermo-mechanical simulations of Water-Heavy Liquid Metal interactions towards the DEMO WCLL breeding blanket design

2019

Abstract The Water-Cooled Lithium Lead breeding blanket concept foresees the eutectic lithium-lead (Pb-15.7Li) alloy being cooled by pressurized sub-cooled water (temperature 295–328 °C; pressure 15.5 MPa) flowing in double wall tubes. Therefore, the interaction between the Pb-15.7Li and water (e.g. tube rupture) represents one of the main safety concerns for the design and safety analysis. Available LIFUS5/Mod2 experimental data are employed to assess the performances of thermal-hydraulic and thermo-mechanic codes. Thermal-hydraulic simulations, by SIMMER-III code, are focused on the prediction of the thermodynamic interaction among the fluids. ABAQUS Finite Element code, used for the desi…

Liquid metalMaterials scienceNuclear engineeringchemistry.chemical_elementBlanket01 natural sciences010305 fluids & plasmasThermal hydraulics0103 physical sciencesGeneral Materials ScienceTube (fluid conveyance)010306 general physicsSettore ING-IND/19 - Impianti NucleariCivil and Structural EngineeringEutectic systemMechanical EngineeringStress–strain curveWater-Liquid metal interactionExperimental dataBreeding blanket; LIFUS5; Water-Liquid metal interactionsWater-Liquid metal interactionsNuclear Energy and EngineeringchemistryLithiumBreeding blanketLIFUS5
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Progress in the design development of EU DEMO helium-cooled pebble bed primary heat transfer system

2019

Abstract In the frame of the activities promoted and encouraged by the EURO-fusion Power Plant Physics and Technology (PPPT) department aimed at developing the EU-DEMO fusion reactor, strong emphasis has been recently posed to the whole Balance of Plant (BoP) which represents the set of systems devoted to convert the plasma generated thermal power into electricity and to deliver it to the grid. Among these systems, a very important role is played by the Breeding Blanket (BB) Primary Heat Transfer System (PHTS) as it is responsible to extract more than 80% of the fusion plasma power. In this framework, University of Palermo, Ansaldo Nucleare and CREATE have focused their work to improve ther…

Balance of plantPower stationbusiness.industryMechanical EngineeringNuclear engineeringHCPBThermal power stationBlanketFusion powerGrid01 natural sciences7. Clean energy010305 fluids & plasmasCoolantNuclear Energy and EngineeringWork (electrical)0103 physical sciencesPHTSGeneral Materials ScienceElectricity010306 general physicsbusinessDEMOSettore ING-IND/19 - Impianti NucleariCivil and Structural Engineering
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On the Improved Current Pulse method for the thermal diffusive characterization of lithiated ceramic pebble beds

2012

Abstract Packed pebble beds are granular systems composed of small particles generally arranged in irregular lattices and surrounded by a gas filling their interstitial spaces. They show non-linear and coupled thermal and mechanical behaviours, which are under theoretical and experimental investigation to set-up a realistic constitutive model to be adopted for design-oriented purposes. At the Department of Nuclear Engineering (DIN) of the University of Palermo a realistic constitutive model of fusion-relevant pebble beds thermo-mechanical behaviour was developed adopting a “continuous” approach, based on the assumption that a pebble bed could be considered as a continuous, homogeneous and i…

Materials sciencePebble bed Lithiated ceramics Thermal diffusive propertiesIsotropyConstitutive equationEnergy Engineering and Power Technologychemistry.chemical_elementMechanicsPebble beds Current pulse method Thermal diffusive propertiesIndustrial and Manufacturing EngineeringCharacterization (materials science)chemistry.chemical_compoundchemistryvisual_artThermalvisual_art.visual_art_mediumGeotechnical engineeringLithiumCeramicOrthosilicatePebbleSettore ING-IND/19 - Impianti Nucleari
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On the improved current pulse method for the dynamic assessment of thermal diffusive properties

2009

Thermal condutctivity pebble bedSettore ING-IND/19 - Impianti Nucleari
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Surface Plasmon Resonance Optical Biosensors for Mannoproteins Detection

2007

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Studio del comportamento termico di letti di sfere tramite il metodo dell’impulso di corrente

2003

LETTI DI SFERE METODO DELL'IMPULSO DI CORRENTE
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On the use of an improved current pulse method for the experimental determination of the thermal diffusive properties of packed pebble beds

2005

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Concentrazioni di gas radon in ambienti lavorativi di diverse regioni italiane

2008

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Nanotecnologie in Niobato di Litio per la conversione di frequenza in ottica integrata nel campo UV.

2007

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Education and Research in Nuclear Engineering and Radiological Protection at Nuclear Engineering Department of Palermo University

2010

Education Research Nuclear Engineering Radiological Protection Palermo UniversitySettore ING-IND/19 - Impianti Nucleari
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A Training Experience of Operators with the AGN-201 “Costanza” Research Reactor of Palermo University

2011

The nuclear reactor AGN-201 named “Costanza”, installed at the Nuclear Engineering Section of the Department of Energy of the University of Palermo, is a “zero power” research reactor designed to be mainly used for education purposes as well as for research applications, such as activation analysis and irradiation tests, and last, but not the least, for radionuclide production to be used in nuclear medical applications. Due to its intrinsic safety and low margin of reactivity (less than 350 p.c.m.) so as to the absence of start-up and shut-down time limits, it represents a useful training tool for operators, too. This paper reports some of the activities carried out within the framework of …

Settore ING-IND/20 - Misure E Strumentazione NucleariTraining AGN-201 nuclear research reactorSettore ING-IND/19 - Impianti Nucleari
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Progettazione e realizzazione di biosensori a risonanza plasmonica superficiale in ottica integrata.

2007

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On the investigation of Lithium Methatitanate pebble bed thermal diffusive properties by the Improved Current Pulse method

2012

NUCLEAR FUSION PEBBLE BED LITHIUM METHATITANATESettore ING-IND/19 - Impianti Nucleari
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Misura della concentrazione di Radon in diverse sedi lavorative distribuite sul territorio nazionale

2007

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Experimental investigations on the thermal conductivity of packed pebble beds by the current pulse method

2003

PEBBLE BEDS THERMAL CONDUCTIVITY CURRENT PULSE METHOD
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On the assessment of lithium orthosilicate pebble bed thermal diffusive properties by the improved current pulse method

2008

NUCLEAR FUSION PEBBLE BED THERMAL-DIFFUSIVE PROPERTIES CURRENT PULSE METHOD
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Studies on the AGN - 201 "COSTANZA" Research Reactor

2007

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PROVE ED ESPERIMENTI DI VERIFICA DELLA SICUREZZA DEL REATTORE NUCLEARE DI RICERCA AGN-201 “COSTANZA”

2011

The “Zero Power” Nuclear Reactor AGN-201 “Costanza” available at Nuclear Engineering Department of Palermo University is a valuable tool for educational purpose and research. Besides being a useful tool for training of operators, without the time period limits on start-up and shut-down of the larger reactors, it allows the study of some phenomena regarding nuclear reactor physics, applied neutronics, neutron dosimetry, nuclear measurements as well as testing of nuclear instrumentation and methods. The experience of work and the obtained results highlight the simplicity of AGN-201 reactor control, its intrinsic safety and its overall versatility in various fields of Nuclear Engineering.

reattore AGN-201 COSTANZASettore ING-IND/20 - Misure E Strumentazione NucleariSicurezza nucleareSettore ING-IND/19 - Impianti Nucleari
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Maintenance Operation on AGN-201 “COSTANZA” Nuclear Research Reactor of Palermo University

2015

During operations with AGN-201 “COSTANZA” nuclear research reactor of Palermo University a failure of a compensated boron-lined ionization chamber provided with a measurement channel was highlighted. A maintenance program aimed to verify the operative conditions of all measurement systems was then started. It was easy to identify as cause of the malfunction a seepage of water inside the container of a Westinghouse WL 6377 ion chamber due to a lack of watertight closure. This can be attributed to corrosion of the container due to parasitic currents circulating between the container, the chamber and the reactor tank that acts as electrical ground of the system. In this work we refer over main…

Ageing ion chamber neutron flux measurement AGN-201.Settore ING-IND/20 - Misure E Strumentazione NucleariSettore ING-IND/19 - Impianti Nucleari
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