Loading...
Search for:
rahiminezhad-soltani--m
0.137 seconds
| # | Type | Title | Author | Publisher | Pub. Year | Subjects | Call Number |
|---|---|---|---|---|---|---|---|
| 1 | مقاله | New insight into reaction mechanisms of TiCl4 for the synthesis of TiO2 nanoparticles in H2O-assisted atmospheric-pressure CVS process | Rahiminezhad Soltani, M. | Elsevier Ltd, | 2021 |
Activation energy.
Atmospheric pressure. Chlorine compounds. Chromium compounds. Crystallinity. Gases. Hydrolysis. Nanoparticles. Oxidation. Oxide minerals. Reaction kinetics. Synthesis (chemical) Thermodynamics. TiO2 nanoparticles. Titanium dioxide. Uranium compounds. Anatase TiO2 nanoparticles. Facile fabrication. Hydrolysis reaction. Kinetics and thermodynamics. Lower temperatures. Oxidation process. Reaction mechanism. Synthesized particles. Nitrogen compounds. |
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
|
| 2 | مقاله | New approaches in lowering the gas-phase synthesis temperature of TiO2 nanoparticles by H2O-assisted atmospheric pressure CVS process | Rahiminezhad Soltani, M. | Elsevier Editora Ltda, | 2019 |
CVS.
Gas phase reaction. Low-temperature synthesis. Nanopowders. Atmospheric chemistry. Atmospheric pressure. Atmospheric temperature. High resolution transmission electron microscopy. Low temperature effects. Nanoparticles. Phase interfaces. Phase structure. Specific heat. Synthesis (chemical) Thermogravimetric analysis. Titanium dioxide. Chemical vapor synthesis. Differential thermals. Gas-phase reactions. Gas-phase synthesis. Low temperatures. Nano powders. Nanoparticles sizes. Synthesis temperatures. TiO2 nanoparticles. |
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
|
| 3 | مقاله | The study of growth and coagulation of titania nanoparticles by chemical vapor synthesis [electronic resource]. | Rahiminezhad-Soltani, M. | 2010 |
Materials science.
Nanoscience and nanotechnology. Nanoparticles. Titanium Dioxide. Chemical Vapor Synthesis. Nanofluids. |
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
|
|
| 4 | مقاله | Experimental investigation of effects of mach number on the flow instability in a supersonic inlet | Soltani, M. R. | 2013 |
Flow Instability.
Mach Number Effect. Supersonic Inlet. Buzz. Flow instabilities. Number effects. Supersonic inlets. Wind-tunnel testing. Intake systems. Mach number. Mass transfer. Wind stress. Aerodynamics. |
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
|
|
| 5 | مقاله | Performance study of an inlet in supersonic flow | Soltani, M. R. | 2013 |
Boundary layer.
Influence of the mass flow rate. Mach number effect. Performance at off-design conditions. Supersonic inlet. Axisymmetric. Characteristic curve. Cowl lip. Free stream mach numbers. Internal Boundary layer. Mass flow. Mass flow rate. Number effects. Off design condition. Operational conditions. Performance characteristics. Performance study. Pressure recovery. Propulsion system. Supersonic inlets. Surface pressures. Boundary layers. Design. Mach number. Mass transfer. Pipe flow. Aerodynamics. |
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
|
|
| 6 | مقاله | Experimental investigation of flow instability in a supersonic inlet | Soltani, M. R. | 2010 |
Flow instability.
Mach number effects. Supersonic inlet. Buzz frequency. Flow instabilities. Mach number effects. Supersonic inlets. Wind tunnel testing. Aerodynamics. Flow rate. Flow visualization. Intake systems. Mach number. Mass transfer. Oscillating flow. Pipe flow. Systems analysis. Wind stress. Wind tunnels. Inlet flow. |
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
|
|
| 7 | مقاله | Measurements of velocity field in the wake of an oscillating wind turbine blade | Soltani, M. R. | 2010 |
Aerofoils.
Chord lengths. Linear momenta. Mean velocity profiles. Oscillation amplitude. Oscillation cycles. Real time. Reduced frequency. Static pressure. Turbine blade. Unsteady wake. Velocity field. Vertically aligned. Wind turbine blades. Airfoils. Turbines. Wakes. Wind power. Turbomachine blades. |
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
|
|
| 8 | مقاله | Experimental investigation of velocity profiles in the wake of an oscillating airfoil | Soltani, M. R. | 2007 |
Oscillating airfoils.
Static pressure. Pressure effects. Real time control. Velocity. Wind turbines. Airfoils. |
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
|
|
| 9 | مقاله | Experimental investigation of unsteady wake behind a section of a wind turbine blade | Soltani, M.R. | 2007 |
Linear momentum.
Static pressure probes. Velocity profiles. Airfoils. Angle measurement. Flow fields. Turbomachine blades. Unsteady flow. Wind turbines. Wakes. |
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
|
|
| 10 | مقاله | Effects of preparation conditions on the morphology and gas permeation properties of polyethylene (PE) and ethylene vinyl acetate (EVA) films | Mousavi, S. A. | 2010 |
Ethylene vinyl acetate.
Film thickness. Polyethylene. Dense layer. Diffusivities. Ethylene vinyl acetates. EVA copolymers. Film blowing. Film structure. Gas permeation. Gas permeation properties. Glass substrates. PE films. Phase-inversion method. Preparation conditions. Pure oxygen. Rate of increase. Room temperature. SEM. Vinyl acetates. Capillary flow. Carbon dioxide. Ethylene. Film preparation. Gases. Morphology. Organic solvents. Oxygen. Polyethylenes. Polyvinyl acetates. Scanning electron microscopy. Substrates. Thermoplastics. Gas permeable membranes. |
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
|
|
| 11 | مقاله | The comparison of form drag and profile drag of a wind turbine blade section in pitching oscillation | Soltani, M. R. | 2009 |
Form drag.
Pitching motion. Profile drag. Wind turbine. 2-D model. Before and after. Chord lengths. Form drag. Linear momenta. Oscillating amplitudes. Oscillating cycle. Oscillation amplitude. Pitching motion. Pitching oscillation. Profile drag. Reduced frequency. Surface pressures. Trailing edges. Wake dynamics. Wake velocity. Wind tunnel tests. Wind turbine blades. Aerodynamics. Airfoils. Engines. Transducers. Turbomachine blades. Two dimensional. Unsteady flow. Wakes. Wind power. Wind tunnels. Wind turbines. Drag. |
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
|
|
| 12 | مقاله | Prediction of transition point on an oscillating airfoil using Neural network | Soltani, M. R. | 2007 |
Dynamic Neural networks.
Oscillatory wing. Wind turbine blade. Data acquisition. Reynolds number. Transition flow. Two dimensional. Wind turbines. Neural networks. |
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
|
|
| 13 | مقاله | Effects of reduced frequency on the performance of a wind turbine blade in the low and high turbulent unsteady flow | Soltani, M. R. | American Institute of Aeronautics and Astronautics Inc, | 2007 |
Angle measurement.
Pressure distribution. Turbomachine blades. Turbulent flow. Unsteady flow. Lift coefficients. Lift curve slopes. Wind turbine blades. Wind turbines. |
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
|
| 14 | مقاله | Effect of an end plate on surface pressure distributions of two swept wings | Soltani, M. R. | 2017 |
Flow field.
Swept wing. Wind tunnel. Angle of attack. Flow fields. Laminar flow. Pressure distribution. Reynolds number. Sensitivity analysis. Wind tunnels. Angle of attacks (AOA) Chordwise. Laminar separation bubble. Spanwise flow. Static pressure distributions. Surface pressure distribution. Upper surface. Wind tunnel tests. Swept wings. |
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
|
|
| 15 | مقاله | Experimental investigation of leading-edge roughness effects on stationary crossflow instability of a swept wing | Soltani, M. R. | 2013 |
Pressure distribution.
Roughness effects. Zero frequency instability. Cross-flow instabilities. Experimental investigations. Laminar flow airfoils. Surface pressure distribution. Surface static pressure. Wind tunnel experiment. Zero frequency. Amplification. Spectrum analysis. Stability. Swept wings. Surface roughness. Amplitude. Experimental study. Laminar flow. Roughness. Spectral analysis. |
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
|
|
| 16 | مقاله | Investigation of the pressure distribution and transition point over a swept wing | Soltani, M. R. | 2011 |
Spectral analysis.
Swept wing. Angles of attack. Instability mode. Laminar flow airfoils. Pressure data. Static pressure distributions. Total pressure. Transition. Transition point. Transition regions. Upper surface. Wind tunnel tests. Wing surface. Airfoils. Laminar flow. Power spectral density. Pressure distribution. Spectral density. Spectrum analysis. Transition flow. Two dimensional. Aircraft. Boundary layer. Flow field. Instability. Numerical method. Parameterization. Pressure gradient. Two-dimensional modeling. Vehicle component. Wind tunnel. |
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
|
|
| 17 | مقاله | Flow analysis over and behind a wing with different winglet shapes | Soltani, M. R. | 2004 |
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
|
||
| 18 | مقاله | Increase in the β-sheet character of an amyloidogenic peptide upon adsorption onto gold and silver surfaces | Soltani, N. | Wiley-VCH Verlag, | 2017 |
Amyloid beta-peptide.
Molecular dynamics. Protein folding. Surface chemistry. Toxicology. |
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
|
| 19 | مقاله | Effect of amplitude and mean angle-of-attack on the boundary layer of an oscillating aerofoil | Soltani, M. R. | Royal Aeronautical Society, | 2008 |
Aerodynamics.
Boundary layers. Transition flow. Turbomachine blades. Wind tunnels. Wind turbines. Dynamic transitions. Free-stream velocity. Oscillation frequency. Spatial temporals. Surface pressure distribution. Unsteady boundary layer. Wind tunnel tests. Wind turbine blades. Angle of attack. |
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
|
| 20 | مقاله | An experimental study of buzz instability in an axisymmetric supersonic inlet | Soltani, M. R. | 2011 |
Buzz frequency.
Oscillation amplitude. Shadowgraph. Supersonic inlet. Angles of attack. Axisymmetric. Different mass. Experimental studies. External shocks. Free stream mach numbers. High frequency. Low mass. Mass flow rate. Off design condition. Pressure data. Shock oscillations. Shock wave motion. Supersonic inlets. Aerodynamics. Flow rate. Flow visualization. Intake systems. Mach number. Mass transfer. Oscillating flow. Pipe flow. Inlet flow. Compression. Experimental study. Sensor. Visualization. |
$stringUtil.getCallnumberViewFormat($resource.getCallNumber())
|