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High Energy, Low Temperature Gelled Bi-Propellant Formulation for Long-Duration In-Space Propulsion

Award Information
Agency: National Aeronautics and Space Administration
Branch: N/A
Contract: NNM06AA20C
Agency Tracking Number: 042274
Amount: $50,000.00
Phase: Phase II
Program: SBIR
Solicitation Topic Code: X6.05
Solicitation Number: N/A
Timeline
Solicitation Year: 2004
Award Year: 2006
Award Start Date (Proposal Award Date): 2005-12-02
Award End Date (Contract End Date): 2007-11-30
Small Business Information
215 Wynn Dr. 5th Floor
Huntsville, AL 35805-1926
United States
DUNS: 185169620
HUBZone Owned: No
Woman Owned: Yes
Socially and Economically Disadvantaged: No
Principal Investigator
 Robert DiSalvo
 Principal Investigator
 (256) 726-4839
 jls@cfdrc.com
Business Contact
 Ashok Singhal
Title: President
Phone: (256) 726-4858
Email: jls@cfdrc.com
Research Institution
N/A
Abstract

The use of gelled propellants for deep space planetary missions may enable adoption of high performance (Isp-vac>360 sec) propellant combinations that do not require power-intensive heating and stirring cycles before firings, and whose handling and safety characteristics are close to stated goals of "green" propellants.

Phase I focused on the ability to gel both halves of the propellant combination of liquid propane and MON-30 (GLP/GMON-30). This combination was selected to provide extended low-temperature capability. Both components were successfully gelled and preliminary rheological data was taken. To allow system-wide studies of the impact of gelled propellant adoption, non-Newtonian gel rheology models were added to NASA's flow network system analysis code, Generalized Fluid System Simulation Program (GFSSP). These models were validated with experimental gel data. Preliminary two-fluid CFD simulations were performed to understand the flow of gelled propellants in microgravity environments.

Phase II will culminate in a hot-fire demonstration of a GLP/GMON-30 rocket chamber, to be performed at AMRDEC facilities. To support this, hardware for gelling of the propellants will be fabricated and delivered to NASA. Suitable quantities of the gelled propellants will be prepared and fundamental data, including rheological and freezing point behavior will be determined. Expanded system-level assessments will be performed, using both GFSSP and CFD tools.

* Information listed above is at the time of submission. *

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