Loading...
Search for: zobdeh--p
0.149 seconds
Total 2314 records
 List View    Gallery View
# Type Title Author Publisher Pub. Year Subjects Call Number
1 مقاله Observation of quasi mono-energetic electron bunches in the new ellipsoid cavity model Sadighi Bonabi, R. 2009 Plasma accelerator.
Bubble regime.
Intense laser.
Laser wakefield.
Quasi mono-energetic electron bunches.
Wave breaking.
Electron beams.
Electron scattering.
Electrons.
Helium.
Laser pulses.
Lasers.
Magnetohydrodynamics.
Oceanography.
Particle beam bunching.
Photolithography.
Plasma accelerators.
Plasma jets.
Plasmas.
Pulsed laser applications.
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
2 مقاله Electron trajectory evaluation in laser-plasma interaction for effective output beam Zobdeh, P. 2010 Bubble regime.
Effective gain.
Electron bunch.
Electron motion.
Electron trajectories.
Electrostatic potentials.
Ellipsoidal cavity.
Energy spectra.
Energy width.
Initial conditions.
Intense laser.
Laser plasma.
Laser wake field.
Laser-plasma interactions.
Monoenergetic electrons.
Output beam.
Plasma channel.
Spheroidal cavities.
Wavebreaking.
Beam plasma interactions.
Electromagnetic wave propagation in plasma.
Electron beams.
Electrons.
Laser beams.
Laser fusion.
Laser produced plasmas.
Magnetohydrodynamics.
Oceanography.
Plasma accelerators.
Plasma jets.
Plasma waves.
Spectroscopy.
Trajectories.
Wakes.
Plasma diagnostics.
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
3 مقاله Cavity generation and quasi-monoenergetic electron generation in laser-plasma interaction Zobdeh, P. 2009
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
4 مقاله An analytical model of plasma cavity for producing of quasi-monoenergetic electron in intense laser-plasma interaction Zobdeh, P. 2007 Cold plasmas.
Laser-plasma interactions.
Monoenergetic.
PIC simulation.
Plasma cavities.
Plasma channel.
Quasi-monoenergetic.
Relativistic electron.
Beam plasma interactions.
Electrons.
Laser pulses.
Particle beam dynamics.
Plasma waves.
Relativity.
Plasmas.
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
5 مقاله New ellipsoid cavity model for high-intensity laser-plasma interaction Zobdeh, P. 2008 Atoms.
Beam plasma interactions.
Electron beams.
Laser beams.
Lasers.
Magnetic field effects.
Magnetohydrodynamics.
Particle beams.
Plasma interactions.
Plasma waves.
Plasmas.
Pulsed laser applications.
Pulsed laser deposition.
Theorem proving.
Waves.
Beam properties.
Cavity formation.
Cavity models.
Electron energy spectrum.
Electron trajectories.
High intensity laser plasma interactions.
Monoenergetic.
Monoenergetic electrons.
Optimum conditions.
Output beam.
Pulse duration (PD)
Relativistic electrons.
Spot sizes.
Wave method.
Electrons.
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
6 مقاله Energy evaluation of mono-energetic electron beam produced by ellipsoid cavity model in the bubble regime Sadighi Bonabi, R. 2009 Bubble regime.
Ellipsoid model.
Intense laser.
Laser wake field.
Plasma accelerator.
Quasi mono-energetic electron bunches.
Wave breaking.
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
7 مقاله Using the steepened plasma profile and wave breaking threshold in laser-plasma interaction Zobdeh, P. 2008 Bubble regime.
Electron.
High intense.
Laser wake field.
Plasma accelerator.
Wave break.
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
8 مقاله Secrecy capacity scaling in large cooperative wireless networks Mirmohseni, M. Institute of Electrical and Electronics Engineers Inc, 2017 Cooperative strategies.
Informationtheoretic security.
Large wireless networks.
Relaying.
Scaling laws.
Aggregates.
Cooperative communication.
Relay control systems.
Secure communication.
Wireless networks.
Colluding eavesdroppers.
Cooperative strategy.
Information-theoretic security.
Secrecy capacity.
Network security.
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
9 مقاله Fast estimation of connectivity in fractured reservoirs using percolation theory Masihi, M. Society of Petroleum Engineers (SPE), 2007 Anisotropy.
Computer simulation.
Flow control.
Fracturing fluids.
Geometry.
Mathematical models.
Mechanical permeability.
Percolation (fluids)
Petroleum geology.
Reservoir management.
Constant-length isotropic systems.
Fracture-length distribution.
Fractured reservoir.
Petroleum reservoir evaluation.
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
10 مقاله A new decoding scheme for errorless codes for overloaded CDMA with active user detection Mousavi, A. 2011 Activation/deactivation.
CDMA system.
Decoding scheme.
Maximum likelihood decoders.
Orders of magnitude.
User detection.
Algorithms.
Bit error rate.
Decoding.
Information technology.
Maximum likelihood.
Poisson distribution.
Telecommunication.
Code division multiple access.
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
11 مقاله Estimation of the Effective Permeability of Heterogeneous Porous Media by Using Percolation Concepts Masihi, M. Springer Netherlands, 2016 Heterogeneity.
High permeability pathway.
Percolation theory.
Reservoirs.
Density functional theory.
Mechanical permeability.
Percolation (solid state)
Petroleum reservoir evaluation.
Petroleum reservoirs.
Porous materials.
Solvents.
Characteristic shapes.
Effective permeability.
Heterogeneous porous media.
High permeability.
Permeability distribution.
Standard algorithms.
Petroleum reservoir engineering.
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
12 مقاله Percolation-based effective permeability estimation in real heterogeneous porous media Masihi, M. European Association of Geoscientists and Engineers 2016 Oil well flooding.
Porous materials.
Solvents.
Conductivity measurements.
Effective permeability.
Heterogeneous media.
Heterogeneous porous media.
Order of accuracy.
Percolating clusters.
Permeability contrasts.
Power law relation.
Estimation.
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
13 مقاله A novel WaveNet-GRU deep learning model for PEM fuel cells degradation prediction based on transfer learning Izadi, M. J. 2024 Data-driven method.
Degradation prediction.
PEMFC.
Cost reduction.
Energy efficiency.
Forecasting.
Learning systems.
Mean square error.
Proton exchange membrane fuel cells (PEMFC)
Data-driven methods.
Degradation predictions.
GRU.
Percentage error.
Proton-exchange membranes fuel cells.
Remaining useful lives.
Root mean square errors.
Transfer learning.
Voltage prediction.
Wavenet.
Degradation.
Instrumentation.
Membrane.
Performance assessment.
Deep neural networks.
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
14 مقاله Optimization of sputtering parameters for the deposition of low resistivity indium tin oxide thin films Yasrebi, N. 2014 Sheet resistance.
Sputtering.
Substrates.
Surface morphology.
Thin films.
Tin.
Transparency.
Deposition experiments.
Different pressures.
Indium tin oxide.
Indium tin oxide thin films.
Parameters optimization.
Process parameters.
Sputtering parameters.
Substrate temperature.
Deposition.
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
15 مقاله Comparative assessment of gasification based coal power plants with various CO2 capture technologies producing electricity and hydrogen Mukherjee, S. 2014
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
16 مقاله Synthesis of nanosize single-crystal hydroxyapatite via mechanochemical method Nasiri Tabrizi, B. 2009 Hydroxyapatite.
Mechanochemical.
Nanogranules.
Nanorods.
Single crystal.
Experiments.
Hydroxyapatite.
Nanorods.
Powders.
Single crystals.
Synthesis (chemical)
Transmission electron microscopy.
X ray analysis.
Average sizes.
Experimental procedures.
High qualities.
Hydroxyapatite powders.
Mechanochemical.
Mechanochemical methods.
Mechanochemical processes.
Milling medias.
Nanogranules.
Synthesis strategies.
X-ray diffractions.
Apatite.
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
17 مقاله Migrating to Cloud-Native architectures using microservices: An experience report Balalaie, A. Springer Verlag, 2016 Cloud-native architectures.
Software modernization.
Cloud computing.
Scalability.
Application architecture.
Architectural style.
Cloud environments.
Cloud migrations.
Experience report.
Non-trivial tasks.
Computer architecture.
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
18 مقاله Study the effect of connectivity between two wells on secondary recovery efficiency using percolation approach Sadeghnejad, S. European Association of Geoscientists and Engineers, EAGE, 2016 Deflected boreholes.
Efficiency.
Estimation.
Horizontal wells.
Hydrocarbons.
Intelligent systems.
Monte Carlo methods.
Oil field development.
Oil well flooding.
Petroleum prospecting.
Solvents.
Continuum percolation.
Development plans.
Field characterization.
Hydrocarbon production.
Performance prediction.
Physically based.
Recovery efficiency.
Secondary oil recoveries.
Secondary recovery.
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
19 مقاله Modeling of CO2-brine interfacial tension: Application to enhanced oil recovery Madani, M. 2017 Artificial neural network.
Brine.
Correlation.
Interfacial tension.
Brines.
Correlation methods.
Enhanced recovery.
Neural networks.
Oil well flooding.
Surface tension.
Artificial neural network topology.
Current modeling.
Empirical correlations.
Enhanced oil recovery.
Experimental apparatus.
Experimental values.
Feed-forward artificial neural networks.
Trial-and-error method.
Carbon dioxide.
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
20 مقاله Improved advection algorithm of computational modeling of free surface flow using structured grids Babaei, R. 2006 Boundary conditions.
Computational fluid dynamics.
Computational geometry.
Computer simulation.
Finite difference method.
Flow of fluids.
Heat convection.
Metal castings.
Surface tension.
Advection algorithms.
Free surface.
Mass conservation equation.
Mold filling.
Simple line interface calculation (SLIC)
Structured grid.
Computational methods.
Advection.
Algorithm.
Fluid flow.
Free surface flow.
Heat transfer.
Molding.
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())