The Office of Naval Research is offering this grant for fundamental research to actively control noise from hot, supersonic jets. This grant seeks to understand and manage large-scale flow structures in shock-containing jet plumes contributing to near and far-field noise. Key research areas for proposals include analytical and computational methods, flow interaction-noise correlation, advanced diagnostics and experiments, plus innovative noise control design methodologies and devices. The ultimate purpose is to develop solutions for mitigating jet noise impacts.
Opportunity ID: 66434
General Information
Document Type: | Grants Notice |
Funding Opportunity Number: | 11-SN-0007 |
Funding Opportunity Title: | Basic Research Opportunity: “Towards Active Control of Noise from Hot Supersonic Jets” |
Opportunity Category: | Discretionary |
Opportunity Category Explanation: | CategoryExplanation |
Funding Instrument Type: | Cooperative Agreement Grant Procurement Contract |
Category of Funding Activity: | Science and Technology and other Research and Development |
Category Explanation: | – |
Expected Number of Awards: | 5 |
Assistance Listings: | 12.300 — Basic and Applied Scientific Research |
Cost Sharing or Matching Requirement: | No |
Version: | Synopsis 1 |
Posted Date: | Jan 25, 2011 |
Last Updated Date: | – |
Original Closing Date for Applications: | Feb 25, 2011 Full proposals (including one technical volume and one cost volume) should be submitted under ONRBAA11-001 by 25 February 2011. Full proposals received after that date will be considered only insofar as agency time and continued availability of funding permit. |
Current Closing Date for Applications: | Feb 25, 2011 Full proposals (including one technical volume and one cost volume) should be submitted under ONRBAA11-001 by 25 February 2011. Full proposals received after that date will be considered only insofar as agency time and continued availability of funding permit. |
Archive Date: | Mar 27, 2011 |
Estimated Total Program Funding: | – |
Award Ceiling: | – |
Award Floor: | – |
Eligibility
Eligible Applicants: | Others (see text field entitled “Additional Information on Eligibility” for clarification) |
Additional Information on Eligibility: | See ONRBAA11-001 for Eligibility Information |
Additional Information
Agency Name: | Office of Naval Research |
Description: | The Office of Naval Research seeks full proposals aimed at understanding and controlling the development of large-scale flow structures in hot, supersonic, shock-containing jet plumes and their contribution to near-field (within 20 nozzle diameters of the jet axis) and far-field (greater than 100 jet diameters) noise. Research areas of interest include: analytical and computational approaches, correlation between flow interactions and noise radiation, advanced diagnostics and experiments, and advanced noise control design methodologies and devices. **************************************************************************************************Applicants shall NOT apply under this Special Notice. Applicants shall apply using the Application Instructions and Package under ONRBAA11-001 by 25 FEB 2011. |
Link to Additional Information: | Link to Special Notices |
Grantor Contact Information: | If you have difficulty accessing the full announcement electronically, please contact:
Lynnette Desorcie
Senior Contracting Officer 703-696-4324 Email:lynnette.desorcie@navy.mil |
Version History
Version | Modification Description | Updated Date |
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Related Documents
Folder 66434 Full Announcement-1 -> 11-sn-0007.pdf
Packages
Agency Contact Information: | Lynnette Desorcie Senior Contracting Officer 703-696-4324 Email: lynnette.desorcie@navy.mil |
Who Can Apply: | Organization Applicants |
Assistance Listing Number | Competition ID | Competition Title | Opportunity Package ID | Opening Date | Closing Date | Actions |
---|---|---|---|---|---|---|
12.300 | 11-SN-0007 | Basic Research Opportunity: “Towards Active Control of Noise from Hot Supersonic Jets | PKG00029031 | Feb 25, 2011 | View |
Package 1
Mandatory forms
66434 RR_SF424_1_2-1.2.pdf