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ATA ENGINEERING, INC.
UEI: PNZEUK9JC187
# of Employees: 191
HUBZone Owned: No
Socially and Economically Disadvantaged: No
Woman Owned: No
Award Charts
Award Listing
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Data-Driven Hypersonic Turbulence Modeling Toolset
Amount: $997,409.00Development of hypersonic aircraft and weapon systems has become a critical focus for the Department of Defense to maintain global strike and projection of force capabilities. Despite decades of resea ...
STTRPhase II2024Department of Defense Navy -
Anisotropic Metric-Based Mesh Adaption for Hypersonic Flow
Amount: $149,169.00Design of reentry vehicles is driven by aeroheating concerns at elevated flow enthalpies. As such, accurate simulation of hypersonic flow phenomena such as detached bow shocks is of critical importanc ...
STTRPhase I2023National Aeronautics and Space Administration -
Reactive Jet Interactions with Multifidelity Turbulence and Tailored Finite-Rate Combustion Modeling
Amount: $147,800.00To advance simulation techniques, such as high-fidelity computational fluid dynamics (CFD), to accelerate maturation of DACS design through design-time trade studies, there is a need for new, test-val ...
STTRPhase I2023Department of Defense Missile Defense Agency -
A Framework for Gas-Surface Interaction Mechanism Correlation
Amount: $139,877.00ATA Engineering, Inc., (ATA) proposes to develop and demonstrate a framework for correlating finite-rate gas-surface interaction (GSI) mechanisms derived from low-cost experiments to flight conditions ...
STTRPhase I2023Department of Defense Navy -
A Multiphysics Framework for Variable-Fidelity Signature Analysis of Hypersonic Systems
Amount: $1,499,801.90ATA Engineering, Inc., (ATA) proposes a project to mature and validate a multiphysics framework for electro-optical (EO), infrared (IR), and radio frequency (RF) signature analysis of ablating hyperso ...
SBIRPhase II2023Department of Defense Defense Advanced Research Projects Agency -
Continuous Wave Cushion: E-2 Flight Demonstration
Amount: $249,852.00ATA Engineering, Inc., (ATA) proposes a Phase II.5 SBIR project to continue development and prepare for flight demonstration of an active seat cushion technology for improving flight crew seated habit ...
SBIRPhase II2023Department of Defense Navy -
RANS Turbulence Closure Augmented with Physics-Informed Machine Learning for Hypersonic Flows
Amount: $239,573.00Development of hypersonic aircraft and weapon systems has become a critical focus for the Department of Defense to maintain global strike and projection of force capabilities. Despite decades of resea ...
STTRPhase I2022Department of Defense Navy -
Shock-Tube-Validated, Versatile Kinetic Mechanism Reduction Framework for Mixed Hydrocarbon-Based Rocket Fuels
Amount: $749,984.00Accurate characterization of liquid rocket engines (LREs) requires chemical modeling capable of predicting key quantities such as heat release rate, pressure rise, flow-combustion coupling, and pollut ...
SBIRPhase II2022Department of Defense Air Force -
Automated Parametric Analysis of Defect Effects on Flight Dynamics
Amount: $149,440.77A process to evaluate the overall performance impact of externally generated defects in the outer mold line or control surfaces of aircraft and missiles is proposed. A state-space model will be used t ...
SBIRPhase I2022Department of Defense Air Force -
Profile and Composition Disruption Effects for Reentry Vehicles: Further Enhancement and Validation of a Fluid-Structure-Material Interaction (FSMI) Modeling and Simulation Toolset
Amount: $1,499,742.00Atmospheric vehicle reentry presents numerous challenges that must be carefully addressed to ensure mission success. As these vehicles enter the atmosphere, they are subjected to extreme hypersonic en ...
SBIRPhase II2022Department of Defense Air Force