All Stories

  1. Development of two-temperature model in unified solver
  2. Coupled Simulation of Material Response using Equilibrium and Finite-Rate Ablation Models
  3. Simulation of porous carbon preform ablation in a chemically reacting environment
  4. Analysis of arc-jet sample spallation products
  5. Utilizing a retrospective cost adaptation control (RCAC) algorithm to achieve data-driven, adaptive, real-time (DART) precision meteorological forecasts
  6. Modeling spallation of carbon materials in hypersonic flows
  7. Fully Coupled Material Response and Internal Radiative Heat Transfer for Three-Dimensional Heat Shield Modeling
  8. Numerical Investigation of Film Coefficient Approximation for Chemically Reacting Boundary-Layer Flows
  9. Novel Engineering Methodology for Decoupled Aerothermal Analysis of Hypersonic Atmospheric Entry Flows
  10. Simulation of Graphite Ablation using an Overset Near Body Solver on an Adaptive Block-Structured Cartesian Off-Body Grid
  11. Study of a Two-Dimensional Shape Change of Blunt-Body Geometries at Hypersonic Conditions Using Fully Coupled Simulation
  12. Modeling of spalled particles for arc-jet test planning
  13. Radiative conductivity estimation using direct approach for fibrous materials
  14. A Kinetic Monte Carlo based analysis of graphite oxidation with realistic defect distributions
  15. Semi-Empirical 1D Material Response Modeling Using Inverse Methods
  16. Kentucky Re-Entry Universal Payload System (KRUPS): Overview of flight test via high-altitude balloon
  17. A Data-Driven Approach For Real-Time Estimation of Material Uncertainty
  18. Stochastic mechanical modeling of MMOD impact-inspired cylindrical cavities in Duocel foam
  19. Radiative Transmission and Absorption Within the Thermal Protection System of Atmospheric Entry Spacecraft
  20. Geometric Effects on Charring Ablator: Modeling the Full-Scale Stardust Heat Shield
  21. Stochastic Modeling of Elastic Behavior of Fibrous Ablators
  22. Development of Stochastic Model for Fibrous Ablators
  23. Fluid Behavior in Stochastic Porous Structures
  24. Surface Oxidation of Carbon/Carbon Composites in Hypersonic Environments
  25. Numerical reconstruction of spalled particle trajectories in an arc-jet environment
  26. Crack Modeling in Charring Ablation Materials
  27. An Immersed Boundary Method for Hypersonic Viscous Flows
  28. Permeability Calculation of a Fibrous Thermal Insulator Using the Lattice Boltzmann Method
  29. Spallation particle size analysis resulting from arc-jet experiments
  30. Micro-Scale Thermal-Structural Modeling for Carbon Fibers
  31. Radiative transmission and absorption within the ablative heat shield of hypersonic vehicles
  32. Numerical Simulation of an Arc Jet Test Section
  33. Thermal Expansion for Charring Ablative Materials
  34. Numerical Investigation of Nonlinear Structural Responses in Ablation Problem
  35. Modeling thin layers of materials in the Kentucky Aerodynamic Thermal Solver (KATS)
  36. Semi-Empirical Method for Measuring Thermal Conductivity of Fibrous Insulation Materials
  37. Sensitivity Analysis in Material Response for Ablation Problem
  38. Modeling FiberForm Oxidation in a Flow Tube using a Universal Solver
  39. Numerical analysis of time accuracy of a primitive variable-based formulation of the conservative form of the governing equations for compressible flows
  40. Calibration and Uncertainty Quantification of VISTA Ablator Material Database Using Bayesian Inference
  41. Experimental analysis of spallation particle trajectories in an arc-jet environment
  42. Retrospective cost adaptive Reynolds-averaged Navier–Stokes k – ω model for data-driven unsteady turbulent simulations
  43. An introduction to the derivation of surface balance equations without the excruciating pain
  44. Thermomechanical Coupling for Charring Ablators
  45. Modeling Gasification of Carbon Fiber Preform in Oxygen Rich Environments
  46. Development Of An Open-Source Avcoat Material Database, VISTA
  47. Development of a Universal Solver and Its Application to Ablation Problems
  48. A data-driven adaptive Reynolds-averaged Navier-Stokes k − ω model for turbulent flow
  49. Thermodynamic properties of carbon-phenolic gas mixtures
  50. Development of a three-dimensional, unstructured material response design tool
  51. Two-way strongly coupled thermo-mechanical solver for ablation problems
  52. Experimental measurements of the permeability of fibrous carbon at high-temperature
  53. A not-so-harmless experiment in predatory open access publishing
  54. Application of A New Thermal-Mechanical Coupling Solver for Ablation
  55. Characterization of Ablation Product Radiation Signatures of PICA and FiberForm
  56. Numerical and experimental analysis of spallation phenomena
  57. Effects of Water Phase Change on the Material Response of Low-Density Carbon-Phenolic Ablators
  58. Evaluation of the anisotropic radiative conductivity of a low-density carbon fiber material from realistic microscale imaging
  59. Effect of spalled particles thermal degradation on a hypersonic flow field environment
  60. Turbulence Simulation Using Direct Gradient Adaptive k-ω Model
  61. Characterization of Candidate Materials for Remote Recession Measurements of Ablative Heat Shield Materials
  62. Kentucky Re-entry Universal Payload System
  63. Numerical Study of Spallation Phenomenon in an Arc-Jet Environment
  64. Modeling the oxidation of low-density carbon fiber material based on micro-tomography
  65. Modeling of Heat Transfer Attenuation by Ablative Gases During the Stardust Reentry
  66. Numerical Investigation of Thermal Response Using Orthotropic Charring Ablative Material
  67. Effects of Water Presence on Low Temperature Phenomenon in Porous TPS Materials
  68. Comparisons of PICA In-depth Material Performance and Ablator Response Modeling from MEDLI Arc Jet Tests
  69. Kinetic Rates for Gas-Phase Chemistry of Phenolic-Based Carbon Ablator in Atmospheric Air
  70. Three dimensional radiative heat transfer model for the evaluation of the anisotropic effective conductivity of fibrous materials
  71. Numerical Investigation of Geometric Effects of Stardust Return Capsule Heat Shield
  72. Strongly Coupled Computation of Material Response and Nonequilibrium Flow for Hypersonic Ablation
  73. Numerical study of iso-Q sample geometric effects on charring ablative materials
  74. Comparison of Transport Properties Models for Flowfield Simulations of Ablative Heat Shields
  75. Multidimensional Modeling of Pyrolysis Gas Transport Inside Charring Ablative Materials
  76. Numerical Investigation of Pyrolysis Gas Blowing Pattern and Thermal Response using Orthotropic Charring Ablative Material
  77. Numerical study of spallation phenomenon in an arc-jet environment
  78. Flow-Tube Oxidation Experiments on the Carbon Preform of a Phenolic-Impregnated Carbon Ablator
  79. Investigation of the scaling of roughness and blowing effects on turbulent channel flow
  80. Numerical and experimental study of carbon fiber oxidation
  81. Simulation of Flow-tube Oxidation on the Carbon Preform of PICA
  82. Numerical Prediction of Hypersonic Flowfields Including Effects of Electron Translational Nonequilibrium
  83. Volume averaged modeling of the oxidation of porous carbon fiber material
  84. Multi-dimensional modeling of charring ablators
  85. Flow-tube Oxidation Experiments on the Carbon Preform of PICA
  86. Modeling of chemical nonequilibrium effects in a charring ablator
  87. Investigation of Turbulent Structure Modification by Momentum Injection Into Turbulent Flow Over a Rough Surface
  88. Comparison of Models for Mixture Transport Properties for Numerical Simulations of Ablative Heat-Shields
  89. Hypersonic Flow and Radiation Analysis of the Automated Transfer Vehicle Jules Verne
  90. Multi-Dimensional Modeling of Charring Ablator
  91. High performance modeling of atmospheric re-entry vehicles
  92. Modeling of heat transfer attenuation by ablative gases during the Stardust re-entry
  93. Modeling Ablation of Charring Heat Shield Materials for Non-continuum Hypersonic Flow
  94. Effect of Applied Magnetic Field on Shock Boundary Layer Interaction
  95. Numerical modeling of the CN spectral emission of the Stardust re-entry vehicle
  96. Investigation of the Effects of Electron Translational Nonequilibrium on Numerical Predictions of Hypersonic Flow Fields
  97. CFD Implementation of a novel carbon-phenolic-in-air chemistry model for atmospheric re-entry
  98. Mesh Tailoring for Strongly Coupled Computation of Ablative Material in Nonequilibrium Hypersonic Flow
  99. Assessment of Carbon-Phenolic-in-Air Chemistry Models for Atmospheric Reentry
  100. Variant of the Thomas Algorithm for opposite-bordered tridiagonal systems of equations
  101. Non-Darcian Behavior of Pyrolysis Gas in a Thermal Protection System
  102. Simulation of Pyrolysis Gas Within a Thermal Protection System
  103. Numerical solution of axisymmetric multi-species compressible gas flow: towards improved circuit breaker simulation
  104. Transient Ablation Regime in Circuit Breakers
  105. Simulation of arc-electrode interaction using sheath modelling in SF6 circuit-breakers
  106. Simulation of Inviscid Multi-Species Plasma Flow