The following are the combustion science authors with last
initial 'B'.
- Bachalo, W.D.
- Application
of an Integrated Phase Doppler
Interferometer/Rainbow
Thermometer/Point-Diffraction Interferometer for
Characterizing Burning Droplets
-
- Development
of Advanced Diagnostics For Characterization of
Burning Droplets in Microgravity
- Bae, J.H.
- Combustion
of Sooting Mixture Droplets at Low Gravity
- Bahadori, M.Y.
- An Analytical Model for Gravitational Effects on
Burke-Schumann Flames
-
- An Analytical Solution for Transient,
Cylindrically Symmetric Laminar Diffusion Flames
in the Absence of Buoyancy
-
- Characteristics
of Non-Premixed Turbulent Flames in Microgravity
-
- Characteristics
of Transitional and Turbulent Jet Diffusion
Flames in Microgravity
-
- Characteristics of Turbulent Diffusion Flames in
Microgravity
-
- Combustion of Gaseous Fuels under Reduced-Gravity
Conditions
-
- Effects of Buoyancy on Gas Jet Diffusion Flames
-
- Effects
of Buoyancy on Gas-Jet Diffusion Flames:
Experiment and Theory
-
- Effects of Buoyancy on Laminar, Transitional, and
Turbulent Gas Jet Diffusion Flames
-
- Effects
of Gravity on the Transition to Turbulence of Gas
Jet Diffusion Flames
-
- Effects of Oxidizer Co-Flow on the
Characteristics of Non-Premixed Laminar Flames
-
- Effects of Oxygen Concentration on Radiation From
Microgravity Laminar Propane Diffusion Flames
-
- Effects
of Oxygen Concentration on Radiative Loss from
Normal-Gravity and Microgravity Methane Diffusion
Flames
-
- Effects of Partial Gravity and G-Jitter on
Radiation from Jet Diffusion Flames
-
- Effects
of Pressure on Microgravity Hydrocarbon Diffusion
Flames
-
- Experimental Observations of Turbulent Gas Jet
Diffusion Flames in Microgravity
-
- Gas-Jet
Diffusion Flames under Reduced-Gravity Conditions
-
- Gravitational
Influences on the Behavior of Confined Diffusion
Flames
-
- Ignition and Behavior of Laminar Gas-Jet
Diffusion Flames in Microgravity
-
- Laminar
Diffusion Flames Under Micro-gravity Conditions
-
- Measurement of Temperature in Microgravity
Laminar Diffusion Flames
-
- Numerical and Experimental Investigation of the
Effects of Buoyancy on Laminar Diffusion Flames
-
- Oxygen-Concentrated Effects on Microgravity
Laminar Methane and Propane Diffusion Flames
-
- Preliminary Observations on the Effects of
Buoyancy on Transitional and Turbulent Diffusion
Flames
-
- Radiation
from Gas-Jet Diffusion Flames in Microgravity
Environments
-
- Reduced-Gravity Observations of Near-Transition
Gas Jet Diffusion Flames
-
- Structure of Microgravity Transitional and Pulsed
Jet Diffusion Flames
-
- The
Transition to Turbulence of Microgravity Gas Jet
Diffusion Flames
-
- Vortex/Flame
Interactions in Microgravity Pulsed Jet Diffusion
Flames
- Baker, J.
- An
Analytical Model for Non-Uniform Magnetic Field
Effects on Two-Dimensional Laminar Jet Diffusion
Flames
-
- Holographic
Interferometry and Laminar Jet Diffusion Flames
in the Presence of Non-Uniform Magnetic Fields
- Balashov, E.V.
- Fire
Safety Experiments on "MIR" Orbital
Station
- Balashov, Y.V.
- Main Trends of Investigations Of Material
Combustion in Reduced Gravity for Orbital Station
Fire Assurance
- Bammidipati, S.
- Chemical Vapor Deposition of Carbon on Graphite
by Methane Pyrolysis
- Bar-Ilan, A.
- Smoldering,
Transition and Flaming in Microgravity
- Baum, H.R.
- Effects of Ignition and Wind on the Transition to
Flame Spread in a Microgravity Environment
-
- Heat
and Mass Transport from Thermally Degrading Thin
Cellulosic Materials in a Microgravity
Environment
-
- Ignition and Subsequent Flame Spread Over a Thin
Cellulosic Material
-
- Ignition
and Subsequent Transition to Flame Spread in a
Microgravity Environment
-
- Ignition and Wind Effects on the Transition to
Flame Spread in a Microgravity Environment
-
- Ignition, Transition, Flame Spread in
Multidimentsional Configurations in Microgravity
-
- Observations
of Methane and Ethylene Diffusion Flames
Stabilized Around a Blowing Porous Sphere under
Microgravity Conditions
-
- Multidimensional
Effects on Ignition, Transition, and Flame Spread
in Microgravity
-
- Radiant
Extinction of Gaseous Diffusion Flames
-
- Radiative
Pyrolysis of Thin Fuels in Microgravity
Environment
-
- Simulation
of Combustion Systems with Realistic g-Jitter
- Baumstein, A.
-
Strain-Rate-Free Diffusion Flames: Initiation, Properties, and
Quenching
- Bayliss, A.
- Dynamics
in Layers Models of Solid Flame Propagation
-
- Traveling Waves in Natural Counterflow Filtration
Combustion and Their Stability
- Bdzil, J.B.
- Weakly Nonlinear Dymanics of Near-CJ Detonation
Waves
- Bechtold, J.K.
- On the Response of Spherical Premixed Flames
Under Rotation
- Beck, S.M.
- An Overview of the Microgravity Environment and
Its Effects on Science
- Bedat, B.
- Characterization
of Acoustic Effects on Flame Structures by Beam
Deflection Technique
-
- Coupling
of Wrinkled Laminar Flames With Gravity
-
- Effects of Buoyancy on Laminar and Turbulent
Premixed V-Flames
-
-
Effects of Buoyancy on Lean Premixed V-Flames Part I: Laminar and
Turbulent Flame Structures
- Bedir, H.
-
A Computational Study of Flame Radiation in PMMA Diffusion Flames
Including Fuel Vapor Participation
-
-
On Flammability Limits of Dry CO2/O2 Opposed-Jet Diffusion Flames
-
- Solid
Inflammability Boundary at Low Speed (SIBAL)
- Beeson, H.
- An
Earth-Based Euivalent Low Stretch Apparatus to
Assess Material Flammability for Microgravity
& Extraterrestrial Fire-Safety Applications
- Beitelmal, A.
- Theory
of the Effects of Small Gravitational Levels on
Droplet Gasification
- Belayev, A.Y.
- Fire
Safety Experiments on "MIR" Orbital
Station
- Bellan, J.
- High
Pressure, Transport Properties of Fluids: Theory
And Data From Levitated Fluid-Drops at
Combustion-Relevant Temperatures
- Belyaev, A.Y.
- Main Trends of Investigations Of Material
Combustion in Reduced Gravity for Orbital Station
Fire Assurance
- Bennett, R.
- A
Parallel Implementation of a Time-Dependent,
Two-Dimensional Flame Model with Detailed
Chemistry
- Benz, F.
- Metals Combustion in Normal Gravity and
Microgravity
-
- Response to Comment by I. Glassman on "The
Combustion Phase of Burning Metals"
-
- The Burning of Metals and Alloys in Microgravity
-
- The Combustion of Iron in High-Pressure Oxygen
-
- The Combustion Phase of Burning Metals
- Berhan, S.
- Unsteady
Spherical Diffusion Flames in Microgravity
- Berlad, A.L.
- Autoignition
of Fuel - Oxidizer Mixture in Microgravity
-
- Feasibility
of Reduced Gravity Experiments Involving
Quiescent, Uniform Particle Cloud Combustion
-
- Particle
Cloud Combustion in Reduced Gravity
-
- Particle
Cloud Flames in Acoustic Fields
-
- Particle
Cloud Mixing in Microgravity
- Bhattacharjee, S.
- A
Comparison of Theoretical and Experimental
Results in Flame Spread Over Thin Condensed Fuels
in a Quiescent, Microgravity Environment
-
- Determination of the Spread Rate in Opposed-Flow
Flame Spread Over Thick Solid Fuels in the
Thermal Regime
-
- Diffusive and Radiative Transport in Fires
Experiment: DARTFire
-
- Flame
Spread in a Microgravity Environment - Role of
Fuel Thickness
-
- Heat
Transfer to a Thin Solid Combustible in Flame
Spreading at Microgravity
-
- Implications
of Spread Rate and Temperature Measurements in
Flame Spread Over a Thin Fuel in a Quiescent,
Microgravity, Space-Based Environment
-
- Low
Velocity Opposed-Flow Flame Spread in a
Transport-Controlled Environment: DARTFire
-
- Opposed Flow Flame Spread in Normal, Enhanced and
Reduced Gravity
-
- Opposed-Flow
Flame Spreading in Reduced Gravity
-
- Quiescent Flame Spread Over Thick Fuels in
Microgravity
-
- Radiation-Controlled,
Opposed-Flow Flame Spread in a Microgravity
Environment
-
- Reflight of the Solid Surface Combustion
Experiment: Opposed Flow Flame Spread over
Cylindrical Fuels
-
- Solid Surface Combsution Experiment: Thick Fuel
Results
-
- Solid
Surface Combustion Experiment Flame Spread in a
Quiescent, Microgravity Environment: Implications
of Spread Rate and Flame Structure
-
- The Effect of Ambient Pressure on Flame Spread
Over Thin Cellulosic Fuel in a Quiescent,
Microgravity Environment
-
- Unsteady
Flame Spread Over Solid Fuels in Microgravity
- Blanchard, R.C.
- An Overview of the Microgravity Environment and
Its Effects on Science
- Blanquet, E.
- Tractable Chemical Models for CVD of silicon and
carbon
- Blevins, L.G.
- COSMIC:
Carbon Monoxide and Soot in Microgravity Inverse
Combustion
- Bloshenko, V.N.
- Ignition
and Combustion of A Single Hydrocarbon Fuel
Droplet in Microgravity
- Bonne, U.
- Radiative
Extinguishment of Diffusion Flames at Zero
Gravity
- Bonneau, L.
- Numerical
Simulation of Ethane-Air Diffusion Flames
Stabilized Over A Flat Plate Burner: Comparison
With Normal and Microgravity Experiments
-
- The
Effect of Gravity on a Laminar Diffusion Flame
Established over a Horizontal Flat Plate
- Boratav, O.
- Effects of Gravity on Sheared and Nonsheared
Turbulent Nonpremixed Flames
- Borlik, J.
- Diffusion Flame Extinction in a Low Strain Flow
- Borowski, B.A.
- N-Decane-Droplet Combustion in the NASA Lewis 5
Second Zero-Gravity Facility: Results in Test Gas
Environment Other then Air
- Borowski, R.
- Observations of the Burning Behavior of
Hydrocarbon Droplets in Reduced Pressures
Environments
- Bousman, W.S.
- Ground
Based Studies of Gas-Liquid Flows in Microgravity
Using Learjet Trajectories
-
- Studies of Gas-Liquid Flow in Microgravity: Void
Fraction, Pressure Drop and Flow Patterns
-
- Studies of Two-Phase Gas-Liquid Flow in
Microgravity
- Boxx, I.G.
- Large-Scale
Flow Structure in Turbulent NonPremixed Flames
under Normal- and Low-Gravity Conditions
- Brace, M.H.
- Droplet Combustion Experiment Drop Tower Tests
Using Models of the Space Flight Apparatus
-
- Further
Observations on Microgravity Droplet Combustion
in the NASA-Lewis Drop Tower Facilities: A
Digital Processing Technique for Droplet Burning
Data
-
- N-Decane-Air
Droplet Combustion Experiments in the NASA-Lewis
5 Second Zero-Gravity Facility
- Bradley, E.
- Splitting of Forced Elliptic Jets and Flames
- Brahmi, L.
- Experimental Study on the Stability of a
Diffusion Flame Established in a Laminar Boundary
Layer
- Branch, M.C.
- A Study of Heterogeneous and Homogeneous
Combustion of Bulk Metals in a Reduced-Gravity
Environment
-
- A Study of Ignition Phenomena of Bulk Metals by
Radiant Heating
-
- Buoyancy
and Pressure Effects on Bulk Metal-Oxygen
Reactions
-
- Combustion
of Metals in Carbon Dioxide and Reduced-Gravity
Environments
-
- Ignition
and Combustion of Bulk Metals Under Elevated,
Normal, and Reduced Gravity Conditions
-
- Ignition and Combustion of Bulk Titanium and
Magnesium at Normal and Reduced Gravit
-
- Laser Induced Fluorescence of MgO in a Flame
-
- The Effect of Gravity on the Combustion of Bulk
Metals
- Broach, T.M.
- GLOVEBOX:
An Excellent Environment for Microgravity
Experiments
- Brooker, J.E.
- Structure and Stability of Burke-Schumann
Diffusion Flames
-
- The Influence of Buoyant Convection on the
Stability of Enclosed Laminar Flames
- Brown, A.L.
- Laser Induced Fluorescence of MgO in a Flame
- Brown, R.C.
- A Comprehensive Physical and Numerical Model of
Boron Particle Ignition
- Brown, T.M.
- Finite-Rate Chemistry Effects in Subsonic and
Supersonic Combustion
- Brun, T.A.
- FLIC
-- A Detailed, Two-Dimensional Flame Model
- Buchele, D.R.
- Compact
Color Schlieren Optical System
-
- Quantitative
Rainbow Schlieren Deflectometry
- Bucher, P.
- Flame Structure Measurement of Single, Isolated
Aluminum Particles Burning in Air
- Buckley, S.G.
-
Experimental
Simulation of Premixed Turbulent Combustion using
Aqueous Autocatalytic Reactions
- Buckmaster, J.D.
- A
Theory of Shallow Smoulder Waves
-
- Absolute
Flammability Limits and Flame-Balls
-
- Acoustic
Instabilities Driven by Slip Between a Condensed
Phase and the Gas Phase in Combustion Systems
-
- An
Acoustic-Instability Theory for Particle-Cloud
Flames
-
- An
Elementary Discussion of Forward Smouldering
-
- Edge-Flame-Holding
-
- Edge-Flames
-
- Edge-Flames in Homogeneous Mixtures
-
- Flame
Balls Stabilized by Suspension in Fluid with a
Steady Linear Ambient Velocity Distribution
-
- Flame-Balls
- Past, Present and Future
-
- Influence
of Boundary-induced Losses On the Structure and
Dynamics of Flame-Balls
-
- Intrinsic and Acoustic Instabilities in Flames
Fueled by Multiphase Mixtures
-
- Large
Lewis No. Edge-Flame Instabilities
-
- Modeling
of Microgravity Combustion Experiments
-
- Quenching
of Reverse Smoulder
-
- Role
of Slip in the Generation of Acoustic
Instabilities in Gas Turbines
-
- Some Topics in Reverse Smoulder
-
- The
Effects of Confinement and Heat Loss on Outwardly
Propagating Spherical Flames
-
- The Effects of Radiation on Stretched Flames
-
- The Effects of Radiation on the Thermal-Diffusive
Stability Boundaries of Premixed Flames
-
- The
Role of Mathematical Modeling in Combustion
-
- The
Structure and Stability of Laminar Flames
-
- The
Structure and Stability of Nonadiabatic Flame
Balls
-
- The
Structure and Stability of Nonadiabatic Flame
Balls: II. Effects of Far-Field Losses
-
- The
Three-Dimensional Dynamics of Flame-Balls
-
-
Two-Dimensional Failure Waves and Ignition Fronts in Premixed
Combustion
-
- Unsteady
Spherical Flames in Dusty Gases
-
- Vapor
Diffusion Flames, Their Stability, and Annular
Pool Fires
- Buermann, D.H.
- Application
of an Integrated Phase Doppler
Interferometer/Rainbow
Thermometer/Point-Diffraction Interferometer for
Characterizing Burning Droplets
-
- Development
of Advanced Diagnostics For Characterization of
Burning Droplets in Microgravity
- Bullard, D.B.
- Unsteady
Flame Spread Over Solid Fuels in Microgravity
- Bundy, M.
- Reflight of the Solid Surface Combustion
Experiment: Opposed Flow Flame Spread over
Cylindrical Fuels
-
- Solid
Surface Combustion Experiment Flame Spread in a
Quiescent, Microgravity Environment: Implications
of Spread Rate and Flame Structure
-
- Suppression
of Low Strain Rate Nonpremixed Flames by an Agent
- Burnham, E.A.
- Recent Advances in Ram Accelerator Technology
- Burns, R.J.
- Mixing
Fuel Particles for Space Combustion Research
Using Acoustics
- Bush, M.T.
- Effect
of CF3H and CF3Br on Laminar Diffusion Flames in
Normal and Microgravity
- Bushnell, D.M.
- Mixing and Combustion Issues in Hypersonic
Air-Breathing Propulsion
- Butler, K.M.
- Numerical Modeling for Combustion of
Thermoplastic Materials in Microgravity