Grant For Research 80NSSC19K0218
Award Date 1/14/19
Potential Completion Date 9/11/23
Potential Value $499K
Federal Agency
Ultimate Awardee
Not listed NAICS Category
Not listed Federal Contract Vehicle
- Not listed
Set-Aside Type
No Set-Aside Used
Extent Competed
Full and Open Competition
Major Defense Program
Not listed Pricing Type
Other
Place of Performance
Urbana, IL 61801, USA
Solicitation Procedures
Basic Research
Number Of Offers Received
Not listed
Legislative Mandate
Not listed National Interest Action
Not listed Research Type
Not listed Primary Consortia Member
Not listed Similar Awards
- This is a $484,067.00 grant awarded by the National Aeronautics and Space Administration (NASA) to the University of Illinois. The grant is for research to improve the accuracy of computational models used to predict heat loads on re-entry vehicles. The work involves enhancing the US3D flow code and NEQAIR/HARA radiative codes to better capture non-equilibrium effects and radiation processes. This will enable more accurate predictions of re-entry heating, which is critical for ensuring the...
- This is a federal grant awarded by the National Aeronautics and Space Administration (NASA) to the University of Illinois for research related to predictive modeling of non-equilibrium thermochemical processes. The purpose is to advance the development, design, and optimization of high-speed atmospheric entry vehicles by improving computational methods for simulating the complex flow structures around these vehicles. The $800,000.00 grant supports the development of hybrid techniques that...
- This $170,579.00 grant was awarded by the National Aeronautics and Space Administration (NASA) to the University of Illinois to develop computationally efficient and accurate models for describing non-equilibrium aerothermal environments encountered in flight and ground test facilities. The goal is to improve the accuracy of models that include chemical reactions and radiation, without the simplifications afforded by equilibrium Boltzmann statistics and quasi steady-state assumptions. The...
- This federal contract award to the University of Illinois, valued at $143,087.80, supports the development of a multi-scale model for simulating chemically reacting gas flows around hypersonic vehicles during atmospheric re-entry. The research aims to advance predictive modeling capabilities in this domain, which is critical for the design and optimization of future hypersonic systems. The contract is part of a broader research program focused on hybrid approaches that model gas flows...
- This is a grant award from the National Aeronautics and Space Administration (NASA) to the University of Illinois for research related to "Reduced Order Modeling for Non-Equilibrium Radiation Hydrodynamics of Base Flow and Wakes: Enabling". The grant, valued at $748,894.44, has an ultimate completion date of December 1, 2020 and was awarded on October 2, 2015. The research objectives include identifying key non-equilibrium processes, constructing a high-fidelity kinetics and...
- This is a $499,970.03 research grant awarded by the National Aeronautics and Space Administration (NASA) to the University of Illinois, a land-grant public research university located in Urbana, Illinois. The objective of the grant is to develop theory, algorithms, and demonstrations that 1) formalize safety specifications for intelligent physical systems (IPS) in space, 2) increase the efficiency of IPS learning by exploiting prior and side information, and 3) ensure IPS resilience to system...
- This federal contract award is to the University of Illinois for the development of improved thermal response models of the Avcoat thermal protection system (TPS) used on the Orion spacecraft. The objective is to create a high-fidelity, multi-scale model that can accurately simulate the complex physics and chemistry involved in the ablation of the porous Avcoat material during atmospheric reentry. The work will leverage large-scale molecular dynamics simulations and direct simulation Monte Carlo...
- This is a $342,356.00 grant awarded by the National Aeronautics and Space Administration (NASA) to the University of Illinois for research related to cloud radiative feedbacks and the "pattern effect" in climate change predictions. The grant is part of NASA's ongoing efforts to improve climate modeling and understanding of key factors driving climate change. As a public land-grant research university, the University of Illinois has extensive experience conducting scientific research...
- NASA awarded a $91,000 grant to the University of Illinois (Board of Trustees of the University of Illinois) on December 31, 2025, with a completion date of July 1, 2026. The award funds research under NASA's Innovative Advanced Concepts (NIAC) program, which supports early-stage feasibility studies of visionary aerospace concepts that address national government and commercial aerospace goals. NIAC seeks radically different or disruptive innovations that could significantly enhance or enable...
- This is a grant award from the National Aeronautics and Space Administration (NASA) to the University of Illinois for a research project to develop a quantitative and qualitative methodology to identify space development architectures that are beneficial and commercially friendly, and analyze their synergistic effects with other government incentives. The $100,000.00 grant is intended to guide NASA in creating an environment that attracts effective contributions from commercial players and...
This is a $499,212.78 grant awarded by the National Aeronautics and Space Administration (NASA) to the University of Illinois to conduct research on modeling the aerothermal environment and heating loads on spacecraft during atmospheric entry. The project will focus on developing an accurate thermodynamic and kinetic model for ablation species produced by the decomposition of the heat shield material, to better characterize the radiative heating experienced by the spacecraft. This research is intended to improve the accuracy of radiation predictions during high-speed atmospheric entry, which is critical for the design and development of future entry vehicles. The contract does not have a set-aside designation.
Generated 3/24/24, 1:02 AM
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | ($739) | 9/6/23 | ||
| P00004 | Funding Only Action | ($739) | 9/6/23 | |
| Not listed | $0 | 2/1/22 | ||
| P00003 | Other Administrative Action | $0 | 2/1/22 | |
| P00002 | Funding Only Action | $175.7k | 1/5/21 |