31st international symposium on shock waves

書誌事項

31st international symposium on shock waves

Akihiro Sasoh, Toshiyuki Aoki, Masahide Katayama, editors

Springer, c2019

  • : [1 set]
  • 1: fundamentals. v. 1
  • 1: fundamentals. v. 2
  • : [2 set]
  • 2: applications. v. 1
  • 2: applications. v. 2

大学図書館所蔵 件 / 1

この図書・雑誌をさがす

注記

"ISSW31 was held at Toyoda Auditorium, Nagoya University, Nagoya, Japan, during July 9-14, 2017"--Preface

Includes bibliographical references

内容説明・目次

巻冊次

: [2 set] ISBN 9783319910161

内容説明

This is the second volume of a two volume set which presents the results of the 31st International Symposium on Shock Waves (ISSW31), held in Nagoya, Japan in 2017. It was organized with support from the International Shock Wave Institute (ISWI), Shock Wave Research Society of Japan, School of Engineering of Nagoya University, and other societies, organizations, governments and industry. The ISSW31 focused on the following areas: Blast waves, chemical reacting flows, chemical kinetics, detonation and combustion, ignition, facilities, diagnostics, flow visualization, spectroscopy, numerical methods, shock waves in rarefied flows, shock waves in dense gases, shock waves in liquids, shock waves in solids, impact and compaction, supersonic jet, multiphase flow, plasmas, magnetohyrdrodynamics, propulsion, shock waves in internal flows, pseudo-shock wave and shock train, nozzle flow, re-entry gasdynamics, shock waves in space, Richtmyer-Meshkov instability, shock/boundary layer interaction,shock/vortex interaction, shock wave reflection/interaction, shock wave interaction with dusty media, shock wave interaction with granular media, shock wave interaction with porous media, shock wave interaction with obstacles, supersonic and hypersonic flows, sonic boom, shock wave focusing, safety against shock loading, shock waves for material processing, shock-like phenomena, and shock wave education. These proceedings contain the papers presented at the symposium and serve as a reference for the participants of the ISSW 31 and individuals interested in these fields. Chapter “Effects of Liquid Impurity on Laser-Induced Gas Breakdown in Quiescent Gas: Experimental and Numerical Investigations” is available open access under a Creative Commons Attribution 4.0 International License at link.springer.com.

目次

Chapter1.Strength and Frequency of Underwater Shock Waves Related to Sterilization Effects on a Marine Bacterium.- Chapter2.Effects of Liquid Impurity on Laser-Induced Gas Breakdown in Quiescent Gas: Experimental and Numerical Investigations.- Chapter3.Air Blast from a Structural Reactive Material Solid.- Chapter5.Experimental study on Configuration Effects of Supersonic Projectiles in Transitional Ballistic Regimes.- Chapter6.Non-Ideal Blast Waves from Particle-Laden Explosives.- Chapter7.Attenuation of Blast Wave in a Duct with Expansion Region (Effects of configuration, porous panel, and acoustic material).- Chapter8.Enhancement of Deflagration-to-Detonation Transition Process with Energetic Solid Particle.- Chapter9.Large Scale Computation of Direct Initiation of Cylindrical Detonations.- Chapter10.Numerical Study on a Cycle of Liquid Pulse Detonation Engines.- Chapter11.Experimental investigate on the flame-shock wave interaction and pressure oscillation in a confined combustion chamber.- Chapter12.The Influence of Spatial Heterogeneity in Energetic Material on Non-ideal Detonation Propagation.- Chapter13.Detonation Experiment Research of Gaseous Mixtures with Suspended Metal Particles.- Chapter14.Large Eddy Simulation of Mixing Characteristic in the Cold Rotating-Detonation Chamber.- Chapter15.Research on the Continuous Rotating Detonation Wave in a Hollow Chamber with Laval Nozzle.- Chapter16.Experimental Study on a Long Duration Operation of a Rotating Detonation Engine.- Chapter17.Decaying modes of propagation of spinning detonation and flame front in narrow channel.- Chapter18.Measurement of gaseous fuel concentration in rotating detonation engines.- Chapter19.Investigation of High-Frequency Pulse Detonation Cycle with Fuel Phase Transition.- Chapter20.Simulations of Hydrogen Detonation in Vibrational Non-equilibrium .- Chapter21.Aerodynamic Force Measurement in a Large-Scale Shock Tunnel.- Chapter22.Trial Implementation of TiN Surface Coating for a Main Piston Towards Reducing the Opening Time for a Diaphragmless Driver Section.- Chapter23.Aerodynamic Force Measurement Techniques in JF12 Shock Tunnel .- Chapter24.Optimising the X3R Reflected Shock Tunnel Free-Piston Driver for Long Duration Test Times.- Chapter25.Development and Analysis of an Apollo Earth Re-entry Condition with Representative Post-shock Reynolds Number in the X2 Expansion Tunnel.- Chapter26.Liquid-Coupled Dual Piston Driver for Small-Scale Shock Tubes.- Chapter27.Initial testing of a 2m Mach-10 free piston Shock tunnel at CAAA.- Chapter28.CFD Evaluation and Experiment test of  the Running time of the Hypersonic Ludwieg Tube Quiet Wind Tunnel.- Chapter29.Development and Performance Study of Shock Tube with Extended Test-times for Materials Research.- Chapter30.Measurement of Temperature Field around Spiked Bodies at Hypersonic Mach Numbers.- Chapter31.Three-dimensional Laser Interferometric CT density measurement of unsteady flow field around a cylinder induced by discharged shock wave from a cylindrical nozzle.- Chapter32.Curved shock wave propagation in environmental stratosphere by laser ablation.- Chapter33.Hypervelocity tests with a detonation driven expansion tube.- Chapter34.Experiments in HEG related to sonic line and shock stand-off distance on capsule shapes.- Chapter35.Catalytic Recombination Characteristics of Atomic Oxygen on Material Surfaces by Optical Emission Spectroscopy.- Chapter36.Influence of Dual Ignition on Test Conditions of a High Enthalpy Shock Tunnel.- Chapter37.Ablation Measurements in A Low Density Heat Shield Using Ablation Sensor Unit.- Chapter38.The Development of High Enthalpy Reentry Conditions in the X3 Expansion Tube.- Chapter39.Prediction of Intensity Profiles behind a Shock Wave Travelling in Air at Speeds Exceeding 12 km/s.- Chapter40.Revisiting temperature measurements at the focus of spherically converging shocks in argon.- Chapter41.Influence of Matrix Resin on Impact Resistance of CFRP by a SmallSphere.- Chapter42.Improvement of Impact Resistance of Ceramics by using Resin-based Materials.- Chapter43.Measurement of Plasma Formed by High-speed Impact to Estimate Temperature at Impact Point.- Chapter44.Application of Riemann Solver for Compressible and Non-Expanding Fluid to Impact on Regolith.- Chapter45.Mathematical modeling of the impact of high-speed metallic plates.- Chapter46.Study of Shock Impact Pressure Amplification and Attenuation of Acoustic Waves in E-Glass Material.- Chapter47.Reconstruction of Recoilless Weapon Blast Environments Using High-fidelity Simulations.- Chapter48.Contribution of Cavitation Generation to Shock Wave Sterilization Effects in a Narrow Water Chamber.- Chapter49.Shockwaves confer immunity against infections in mice.- Chapter50.On the relation between the shock wave thickness in bio-materials and the threshold for blast induced neuro-trauma.- Chapter51.Development of a miniaturized focused shock wave generator for medical application.- Chapter52.Intracellular Ca2+ Increase Evoked by Single Acoustic Pulses.- Chapter53.A new device for crossing chronic total occlusions.- Chapter54.Medical application of shock waves: Developing the treatment application and understanding of injury.- Chapter55.Towards non-invasive insulin injection via control of the electrical breakdown in liquid.- Chapter56.Current Trend in Cell Membrane Manipulation by Ultrasound and Underwater Shock Wave.- Chapter57.Analysis of Deformation Process of a Bubble in an Elastic Capsule by Shock Waves and Their Medical and Biological Applications.- Chapter58.Shockwaves can cure biofilm infections in-vivo in combination with antibiotics.- Chapter60.Simulation of shock-bubbles interaction using a four-equation homogeneous model.- Chapter61.A Study of Dispersion, Vaporization, and Combustion of Burnable Liquids Surrounding Charges.- Chapter62.Multi-scale simulation of the interaction of a shock wave and a cloud of particles.- Chapter63.Surface Jetting Induced by Explosion in Liquid below an Immersed Bubble.- Chapter64.Generation Frequency of Rebound Shock Waves from Bubble Collapses in Cavitation Jet.- Chapter65.Experimental Study on the Influence of Underwater Explosion Depth on the Disintegration of Thin Resin Plate Attached Microbubbles.- Chapter66.Numerical Study of the Flow Separation in a Rocket Nozzle.- Chapter67.Hybrid RANS/LES simulation of shock-induced separated flow in truncated ideal contour nozzle.- Chapter68.Experimental Study of TICTOP Nozzles.- Chapter69.Three-Dimensional Instability of Shock-Wave/Boundary- Layer Interaction for Rocket Engine Nozzle Applications.- Chapter70.Shock interactions in Thrust Optimized Parabolic (TOP) Nozzles during Start-Up and Shut Down.- Chapter71.Shock System Deformation in High Mach Number Rocket Nozzles.- Chapter72.Interaction of Droplets with Incident Shock Waves.- Chapter73.A compact finite volume method for computing shock waves on hybrid grids.- Chapter74.Numerical Modelling of the Effects ofSurface Roughness on Blunt Body Heat Transfer..- Chapter75.Numerical study of shock propagation in liquid/gas media.- Chapter76.CFD models of shocks and flow fields associated with decelerating spheres in terms of flow history and inertial effects.- Chapter77.Conjugate Heat Transfer Analysis in a Hypersonic Flow.- Chapter78.Laser-induced shock waves in micro tubes.- Chapter79.Study of MHD Effects in the High-Enthalpy Shock Tunnel G?ttingen (HEG) using a 30T Pulsed Magnet System .- Chapter80.An Electrodynamic Aerobraking Experiment in a Rarefied Arc-Heated Flow.- Chapter81.Blast Wave Propagation Affected by Ground Characteristics.- Chapter82.Multiple reflected shock wave in closed volume with granular screen.- Chapter83.Some aspects of the numerical modeling of shock wave ? dense particles bed interaction using two-fluid approach.- Chapter84.To the complex approach to the numerical investigation of the shock wave - dense particles bed interaction.- Chapter85.Numerical Study on Shock Wave Reflection over a Double Wedge in Dusty Gas.- Chapter86.Shock and Blast Wave Interaction With Hard Sand Pan.- Chapter87.Long time history of unsteady drag on shock accelerated micro-particles.- Chapter88.Shock Focusing Effect upon Interaction of a Shock with Low-Density Dust Cloud.- Chapter89.Shock-induced motion of a spherical particle floating in air.- Chapter90.Exploring the capability of a new shock tube facility to investigate shock interaction with inert particle columns.- Chapter91.MITIGATION OF BLAST IN A WATER MIST.- Chapter92.Shock wave propagation through a series of perforated plates.- Chapter93.Experimental Investigation of Strong Shock Heated Gases Interacting with Materials in Powder form.- Chapter94.Selective shock-refraction properties in non-ideal fluids.- Chapter95.A Numerical Investigation of Oblique Shock Waves in Non-Ideal Compressible-Fluid Flows.- Chapter96.Assessment of real gas effects on SCO2 flows with shock waves.- Chapter97.Structure of shock waves in noble gases under high density conditions..- Chapter98.Mach 4 Shock Train Structures in Rectangular Ducts.- Chapter99.Control of Shock Trains within Supersonic Intakes through the addition of Cavities.- Chapter100.Experiments in Supersonic Gaseous Ejector using 2D PIV Technique.- Chapter101.Numerical analysis of surface heat flux in a forward facing cavity.- Chapter102.Large Eddy Simulation of Expansion Wave Diffraction.- Chapter103.In-pipe aerodynamic characteristics of a projectile in comparison with free-flight for transonic Mach numbers between 0.5 and 1.5.- Chapter104.Experimental Investigation of Shock Wave Characteristics in Small Scale Circular Channel.- Chapter105.Shock Oscillation Studies with Varying Stagnation Pressure in a Supersonic Diffuser.- Chapter106.Measurement of shock wave attenuation in microchannels.- Chapter107.Surface jets produced from an underwater shock wave.- Chapter108.Pressure sensors for hostile environments .- Chapter109.Visualization of inception, propagation and collapse process of underwater positive streamer.- Chapter110.Optimisation and design of a fully instrumented Mach 12 nozzle for the X3 expansion tube.- Chapter111.Heat-Flux Measurement of Flat Delta-Plate using Phosphor Thermography Technique in Gun Tunnel.- Chapter112.Hypersonic Boundary Layer Tripping to Turbulence on a Conical Body.- Chapter113.Hypersonic Flow Simulations by Applying an Equivalent Gas Model.- Chapter114.DNS of Hypersonic Corner Flow on a Supercomputer.- Chapter115.The role of three-dimensional shock wave interaction in the complex hypersonic heating.- Chapter116.Numerical Simulation of Effect of Angle-of-Attack on a Supersonic Parachute System.- Chapter117.Experimental Study of High-Altitude Simulation for Space Launch Vehicles.- Chapter118.Characteristics of Self-Sustained-Shock Pulsation around a Forward-Facing Concave with Spike.- Chapter119.Free Flight Experiment Investigation of AOA Effect on Cone Boundary Layer Transition at Mach 6.- Chapter120.Review on Film Cooling in Supersonic Flow.- Chapter121.Measurement and Calculation of Shock Stand-off Distances over Hypersonic Spheres in CO2.- Chapter122.Prediction of Stagnation-Point Radiative Heating for FIRE II.- Chapter123.Characterisation of Curved Axisymmetric Internal Shock Waves.- Chapter124.Comparative Heat Flux Measurement of a Sharp Cone between Three Hypersonic Test Facilities at LHD.- Chapter125.Near-Field Pressure Signature over Mach 1.7 Free-Flight Bodies.- Chapter126.Experimental Study of Radiation behind Reflected Air Shock Waves.- Chapter127.Flow-field for an Accelerating Axisymmetric Body.- Chapter128.Modeling of 1-DOF Launch dynamics in transonic and supersonic regime using Navier Stokes Equation.- Chapter129.Skin friction measurement based on SSLCCs in hypersonic wind tunnel.- Chapter130.Thermo-structural Design of Sharp Leading Edges for hypersonic vehicles using Finite element modelling.- Chapter131.Computational Study on Rigid Disk-Gap-Band Supersonic Parachute Aerodynamics.- Chapter132.Numerical Estimation of Laser-Ablation Propulsion Performance in Supersonic Flight for Donut-Mode Laser Guided Spherical Capsule Launch System.- Chapter133.Investigation of the Heat transfer over Spike Blunt Bodies in Hypersonic.- Chapter134.Numerical Investigation on the Effects of Air Dissociation upon Hypersonic Projectile in Standard Atmospheric Air.- Chapter135.Shockwave Oscillation under Critical Starting Mach Number in Hypersonic inlet.- Chapter136.Numerical analysis of transonic buffet on a three-dimensional wing.- Chapter137.Critical Condition of Bow-Shock Instability around Edged Blunt Body.- Chapter138.Experimental study on hypersonic pitch-up anomaly in shock tunnel.- Chapter139.Pressure Measurements around an Electric Discharge Produced on a Wedge in a Supersonic Flow.- Chapter140.Thermal Spike Conception for Wave Drag Reduction of Blunt Bodies at Different Supersonic Speeds.- Chapter141.Experimental investigations of a diffuser start/unstart characteristics for two stream supersonic wind tunnels..- Chapter142.Experimental investigation of film cooling technique over a blunt body in hypersonic flow.- Chapter143.Wavefront Aberration in a Laser Beam Induced by Supersonic Flow Field Around a Wedge.- Chapter144.Boundary layer transition measurements on sharp and blunt cones in the T4 Stalker Tube.- Chapter145.Estimation of the Particle Drag Coefficients for Compressible and Rarefied Flows Using PIV and MTV Data.- Chapter146.RANS simulation of over-and under-expanded beveled nozzle jets using OpenFOAM.- Chapter147.Exploration of under-expanded free and impinging supersonic jet flows.- Chapter148.PIV studies on the effect of number of lobes in a supersonic ESTS lobed nozzle.- Chapter149.Numerical Study of Heat Transfer on Confined Under-expanded Impinging Jet from Slot into A Plenum.  
巻冊次

: [1 set] ISBN 9783319910192

内容説明

This is the first volume of a two volume set which presents the results of the 31st International Symposium on Shock Waves (ISSW31), held in Nagoya, Japan in 2017. It was organized with support from the International Shock Wave Institute (ISWI), Shock Wave Research Society of Japan, School of Engineering of Nagoya University, and other societies, organizations, governments and industry. The ISSW31 focused on the following areas: Blast waves, chemical reacting flows, chemical kinetics, detonation and combustion, ignition, facilities, diagnostics, flow visualization, spectroscopy, numerical methods, shock waves in rarefied flows, shock waves in dense gases, shock waves in liquids, shock waves in solids, impact and compaction, supersonic jet, multiphase flow, plasmas, magnetohyrdrodynamics, propulsion, shock waves in internal flows, pseudo-shock wave and shock train, nozzle flow, re-entry gasdynamics, shock waves in space, Richtmyer-Meshkov instability, shock/boundary layer interaction, shock/vortex interaction, shock wave reflection/interaction, shock wave interaction with dusty media, shock wave interaction with granular media, shock wave interaction with porous media, shock wave interaction with obstacles, supersonic and hypersonic flows, sonic boom, shock wave focusing, safety against shock loading, shock waves for material processing, shock-like phenomena, and shock wave education. These proceedings contain the papers presented at the symposium and serve as a reference for the participants of the ISSW 31 and individuals interested in these fields.

目次

Chapter1.Aerodynamic Testing at Duplicated Hypersonic Flight Conditions with Hyper-Dragon.- Chapter2.Shock wave research: Remembrance of Professor I. I. Glass.- Chapter3.Legacy at T5.- Chapter4.Experimental studies of shock wave phenomena at the Ben Gurion University ? A Review.- Chapter5.Shock Compression Spectroscopy Under a Microscope.- Chapter6.Research on Shock-induced Aerothermodynamics for Future Planetary Explorations.- Chapter7.Kinetic shock Tubes: Recent developments for The study of homogeneous and heterogeneous chemical processs.- Chapter8.Structure and Unsteadiness of 3D Shock Wave / Turbulent Boundary Layer Interactions..- Chapter9.Propagation Behavior and Mitigation of Shock Wave along Water inside a Rectangular Tube.- Chapter10.Dust Lofting behind shock waves what is the dominate Lofting Mechanism.- Chapter11.Development of a fast running method for blast wave propagation.- Chapter12.On the Energy Exchange Mechanisms Controlling Blast and Fragment Evolution in a Responding Stone Pipe .- Chapter13.Interaction of a Blast Wave with a Material Interface.- Chapter14.Laboratory simulation of explosions using conical shock tubes.- Chapter15.Shock Tube Study of the Effect of Nitric Oxide Addition on Ignition Delay Times of n-Dodecane/Air Mixtures.- Chapter16.Ignition Delay Times of Methane and Hydrogen Highly Diluted in Carbon Dioxide.- Chapter17.A Study of the Chemiluminescence of *, *, 2* and 2* during the Oxidation of C2H2 behind Reflected Shock Waves .- Chapter18.A Study on Soot Formation Characteristics of a Gasoline Surrogate Fuel Using a Shock Tube.- Chapter19.Effect of Dimethyl Methylphosphonate (DMMP) Addition on H2, CH4, and C2H4 ignition Behind Reflected Shock Waves.- Chapter20.CO and H2O Time-histories in a Shock-heated H2S/CH4 Blend near Atmospheric Pressure.- Chapter21.Thermochemical nonequilibrium modeling of O2.- Chapter22.State-Resolved Transport Properties of Electronically Excited High-Temperature Flows behind Strong Shock Waves.- Chapter23.Oxygen Catalytic Recombination on Titanium Surface.- Chapter24.Computations of a Shock Layer Flow with a Vibrational-Specific Kinetics Model.- Chapter25.A One-dimensional Modeling of Seed-electron Generation and Electron Avalanche in Laser-supported Detonation.- Chapter26.PLIF-based concentration measurement of OH behind the blast wave emanating from an oxy-hydrogen detonation-driven shock tube.- Chapter27.Flame Propagation over the Heat Absorbing Substrate.- Chapter28.Propagation Mechanism of Detonations in Rough Walled Tube.- Chapter29.Effect of hydrodynamic instabilities on the development of hydrogen-air flame.- Chapter30.Characteristics of Crumpling Behavior of Graphene Oxide and Its Effects on Deflagration-to-Detonation Transition.- Chapter31.Detonation decay and flame propagation through a channel with porous walls.- Chapter32.Gas Flow with Stabilized Detonation in a Plane Channel.- Chapter33.Numerical Investigation on Vibrational Nonequilibrium Effect on ZND detonation model.- Chapter34.Stabilities of Rotating Detonation.- Chapter35.The influence of shock reflections on detonation re-initiation.- Chapter36.Experimental studies around shock tube for dynamic calibrations of high-frequency pressure transducers.- Chapter37.Effect of Imaging Blurring on 3D Computed Tomography of Chemiluminescence.- Chapter38.Time-Resolved Optical Flow of Supersonic Beveled Nozzles.- Chapter39.The Effect of Adaptive Sampling on Fluorescence Velocimetry Measurements in High-Speed Flows.- Chapter40.High-resolution background oriented schlieren technique for a laser-induced underwater shock wave.- Chapter41.Evaluation of the effect of an air plasma on the degradation of metallic coatings based on an analysis of the emission from the air behind the front of strong shock waves in the spectral range of 120-400 nm .- Chapter42.Application of NO Laser Induced Fluorescence in JF-10 Detonation-Driven Shock Tunnel.- Chapter43.Molecular Tagging Velocimetry of NH Fluorescence in a High-enthalpy Rarefied Gas Flow.- Chapter44.Measurements of Jet A-1 Vapor Concentration Using Quantum Cascade Laser.- Chapter45.Temperature Measurement in a Shock Tunnel Using Tunable Diode Laser Absorption Spectroscopy.- Chapter46.Measurement and Formulation of Velocity, Attitude and Trajectory of Moving Object Using Magnet-Coil Method for High-Speed Penetration Experiment.- Chapter47.Investigations of density field on a flat plate shock-boundary layer interaction at Hypersonic speeds using BOS.- Chapter48.Schlieren Tomography to Visualise Three Dimensional Supersonic Flows.- Chapter49.Interaction of a planar shock wave with a water surface.- Chapter50.Basic Experiment on Focusing Schieren PIV Method with LED Light Source.- Chapter51.Boundary-Layer Transition Detection at High Enthalpy Flow Conditions using Temperature-Sensitive Paint .- Chapter52.Development of Sprayable Ultrafast-PSP for Unsteady Flow.- Chapter53.Three-Dimensional Measurement of the Lateral Jet / Cross Flow Interaction Field by Colored-Grid Background Oriented Schlieren (CGBOS) Technique.- Chapter54.Numerical Investigation of Dust Lifting Induced by Vertical Shock Wave.- Chapter55.Gas Surface Interaction of Carbon Ablator in a Shock Tube.- Chapter56.Numerical Simulations of Shock Wave Interaction with a Water Droplet by Sharp Interface Methods.- Chapter57.High Order Hybrid Compact-WENO-Z Finite Difference Scheme for Hyperbolic Conservation Laws.- Chapter58.A fast mathematical modelling method for aerodynamic-heating predictions.- Chapter59.A Multi-Space Interrelation Theory for Correlating Aerodynamic Data from Hypersonic Ground Testing.- Chapter60.Reynolds Stress Models for Shock ? Turbulence Interaction.- Chapter61.On the analysis of full-spectrum k-distributions databases for thermal radiation in shock waves within CO2 rich atmospheres.- Chapter62.Measurement of Electron Density by Heterodyne Interferometer for Atmospheric Pressure Plasmas.- Chapter63.Parametrical Quasiresonant Amplification of Alfven Waves in Heat-Releasing Isentropic Unstable Medium .- Chapter64.Two-Dimensional MHD Structures in Heat-Releasing Plasma.- Chapter65.Mode transition from fast gas-ionization wave to laser-supported detonation wave.- Chapter66.Gas-Dynamic Flow behind Shock Wave Initiated by a Sliding Surface Discharge Channel.- Chapter67.Jet Formation of SF6 Bubble Induced by Incident and Reflected Shock Waves.- Chapter68.Interaction of Cylindrical Converging Shock Wave with SF6 Gas Bubble.- Chapter69.Numerical Study on Converging Richtmyer-Meshkov Instability.- Chapter70.Light/heavy converging Richtmyer-Meshkov instability in a conventional shock tube.- Chapter71.The Imploding Cylindrical Richtmyer-Meshkov Instability with a Two-Fluid Plasma Model.- Chapter72.Experimental Study on a Single-mode Interface Impacted by a Converging Shock.- Chapter73.The Richtmyer-Meshkov instability of a flat interface initiated by a perturbed shock.- Chapter74.A study of variable density mixing with reshock.- Chapter75.Wave Patterns in the Interaction of an Incident Shock with a Heavy Elliptic Gas Cylinder.- Chapter76.Reshocked Richtmyer-Meshkov instability: Numerical study on interface stretch and vortex cores characterization .- Chapter77.Self-generated magnetic fields in the plasma Richtmyer-Meshkov instability.- Chapter78.The Evolution of a Square SF6 Gas Cylinder Impacted by a Converging Shock Wave.- Chapter79.Electron shock dynamics in the two-fluid plasma Richtmyer-Meshkov instability.- Chapter80.The Evolution of Concentration and Velocity-Fluctuations in the Richtmyer-Meshkov Instability.- Chapter81.Numerical Investigation of High-Temperature Effects in a Shock-Bubble Interaction..- Chapter82.Transmitted wave of shock wave through various materials.- Chapter83.Numerical investigation of the interaction between a planar shock wave with a square bubble containing different gases.- Chapter84.Underwater Shock Wave by Explosion in a Closed Space.- Chapter85.Collision of underwater explosion with compressible porous wall.- Chapter86.Disturbance Waves behind the Shock Propagating through Non-uniform Gas.- Chapter87.Study on Mach stem shape of the asymmetric Mach reflection.- Chapter88.Experimental and numerical investigations of a shock wave propagation through a bifurcation.- Chapter89.The Reflection of Cylindrical Shock-Waves on Cylindrical Walls.- Chapter90.On InMR-TRR Transition on a Concave Cylindrical Reflector.- Chapter91.Reflection of a Planar Shock Wave over a Concave Double Wedge.- Chapter92.Shock Wave Reflections from a Plane of Symmetry.- Chapter93.The influence of short acting pressure driver pulses on the behavior of shock waves in micro shock tubes .- Chapter94.Investigation of an Expansion Fan/Shock Wave Interaction between High Aspect Ratio Wedges.- Chapter95.Interaction of multiple cylindrical expanding shock waves.- Chapter96.Shock Interaction on a V-shaped Blunt Leading Edge.- Chapter97.Delayed Ventilation of Partially Confined Detonation Products by Shock Reflection from a Convergent Nozzle Opening.- Chapter98.Geometrical perception of convex surface reflections.- Chapter99.Numerical Simulation of Supersonic/Hypersonic Flow for TSTO's Staging Separation.- Chapter100.Experimental Study of Normal Shock Wave-Isotropic Turbulence Interaction Using Counter-Driver Shock Tube.- Chapter101.Numerical Studies on Form of Weak Shock Reflection over Wedges.- Chapter102.Shock Wave Generation Method using High-Speed Jet.- Chapter103.Analytical Prediction of Mach Stem Height for Asymmetric Wedge Reflection in 2-D Steady Flows.- Chapter104.Upstream Pressure Induced MR-RR Shock Transitions.- Chapter105.Revisiting Shock Propagation in a Temperature Gradient.- Chapter106.On Hysteresis at Axisymmetric Curved Shock Reflection from an Axial Cylinder.- Chapter107.Singularity formation in the geometry of perturbed shocks.- Chapter108.A Generalized Form of the Simplified Bernoulli Trial Collision Scheme Applied to Shock Waves.- Chapter109.On a Problem of Shock Wave Structure.- Chapter110.Ab Initio Simulation of Shock Waves propagating through gaseous mixtures.- Chapter111.Comparison of DSMC Chemistry Models for Shock Tube Simulations in the Nitrogen at Rarefied and Continuum Regime.- Chapter112.Experimental and Numerical Studies on Plume Structures of Micro-Nozzles Operating at High Vacuum Conditions.- Chapter113.DSMC Study on Hypersonic Flow past a Rectangular Cylinder.- Chapter114.INFLUENCE OF PHASE TRANSITIONS COMPONENTS OF MIXTURES ON THERMODYNAMIC PARAMETERS OF SHOCK-WAVE LOADING.- Chapter115.Experimental study of the ejection of particles from the shock-loaded metals.- Chapter116.PHASE TRANSITIONS OF TITANIUM UNDER DYNAMIC LOADING.- Chapter117.RESULTS OF INVESTIGATIONS OF PHASE TRANSITIONS OF SHOCK COMPRESSED METALS.- Chapter118.Shock wave propagation through heterogeneous cementitious composites.- Chapter119.Equation of state and phase transformations of zirconium in shock waves.- Chapter120.Reynolds number effects on Shock-wave boundary layer interaction in a hypersonic flow.- Chapter121.Numerical Study for Interactions between Separation on Supersonic Flow and Laser-Induced Blast Wave.- Chapter122.Schlieren-based Characterization of Separation Shock Unsteadiness in Shock Wave/Turbulent Boundary Layer Interactions with Separation.- Chapter123.Experimental study of hypersonic shock wave / transitional boundary layer interaction.- Chapter124.Micro-Vortex Generator Controlled Shock-Boundary Layer Interactions in Supersonic Intake.- Chapter125.MVG Control on Supersonic Compression Ramp Flow.- Chapter126.Improvement of pressure recovery in a duct by repetitive laser energy depositions.- Chapter127.Unsteadiness of Cowl Shock/Convex Corner Interaction in an Inlet.- Chapter128.Incident shock/turbulent boundary layer interactions on concave walls.- Chapter129.Experimental Study of Unsteadiness in Axisymmetric Step-induced Shock Wave/Turbulent Boundary Layer Interactions .- Chapter130.Numerical study of shock wave-boundary layer interaction in cylinder-flare configuration.- Chapter131.A Study on Turbulent Transition of Unsteady Boundary Layer Induced by Weak-Compression Wave.- Chapter132.Passive Control of Hypersonic Separated Flow around Spiked Bodies .- Chapter133.Surface Heat Transfer of Tertiary Gas Mixtures with Roughness Controlled..- Chapter134.Effect of Dielectric Barrier Discharge Plasma Actuators (DBD-PA) on Boundary Layer Separation Control in Hypersonic Flows.- Chapter135.Numerical simulations of transverse jet in supersonic crossflow toward an understanding of interaction mechanism.- Chapter136.Shock Induced Corner Separation in Supersonic Duct Flows.- Chapter137.Forced Boundary Layer Transition Experiments on a Multi-wedge in a Gun Tunnel.- Chapter138.Aft-body effects on lip shock-wave laminar free-interaction.- Chapter139.Temperature Distribution Measurement for the Comprehension of the Interaction Phenomena between the Shock Wave and the DC Discharged Field.- Chapter140.An interaction between shock wave and vortex induced by small volume high pressure shock tube .- Chapter141.Experimental Study on Grid Turbulence Interacting with a Spherical Shock wave.- Chapter142.Numerical Study of Variable Density Turbulence Interaction with Shock Waves.- Chapter143.Measurement of Velocity Fluctuations and Overpressure of Spherical Shock Wave in Grid Turbulence.- Chapter144.The influence of the high-pressure part length on shock waves exiting from an open tube.- Chapter145.Robust and low-dissipation explicit formulation of improved adaptive WCNS scheme.- Chapter146.Direct Numerical Simulations of Interaction Between Planar Shock Wave and Homogeneous Isotropic Turbulence at Low Turbulent Mach Number.- Chapter147.Numerical Analysis of Shockwave Diffraction .- Chapter148.Investigations on Compressible Mixing Layers by Using Hot-wire Velocimetry.- Chapter149.Spectral Radiant Intensity Calculation of Air in Shock tube.

「Nielsen BookData」 より

詳細情報

  • NII書誌ID(NCID)
    BB2861613X
  • ISBN
    • 9783319910192
    • 9783319910161
  • 出版国コード
    sz
  • タイトル言語コード
    eng
  • 本文言語コード
    eng
  • 出版地
    Cham
  • ページ数/冊数
    4 v.
  • 大きさ
    25 cm
  • 分類
  • 件名
ページトップへ