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Integral Rocket Ramjet Demonstration Programme, IRRDP:

Integral Rocket Ramjet Demonstration Programme, IRRDP:
Author:
Publisher:
Total Pages: 40
Release: 1998
Genre:
ISBN:

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This report describes the main accomplishments of a collaborative Canadian-Dutch project known as the Integral Rocket Ramjet Demonstration Program (IRRDP) to investigate the key technologies of air-breathing missile propulsion through the design, fabrication, & testing of a solid fuel ducted rocket engine with an integral booster for a medium-range air-launched missile. It begins by discussing the requirements for an integral rocket ramjet engine, then reviews activities related to the development of a missile design tool & performance prediction tool, computational fluid dynamics evaluation of the intake & port covers, development of a new solid propellant for a gas generator used in ducted rocket propulsion, modelling of the ramjet combustor in a water tunnel, combustion tests, modelling & propellant development for the nozzle-less booster, and the final design.


User's Manual for Rocket Combustor Interactive Design (Roccid) and Analysis Computer Program. Volume 2

User's Manual for Rocket Combustor Interactive Design (Roccid) and Analysis Computer Program. Volume 2
Author: National Aeronautics and Space Administration (NASA)
Publisher: Createspace Independent Publishing Platform
Total Pages: 586
Release: 2018-08-04
Genre:
ISBN: 9781724704665

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The appendices A-K to the user's manual for the rocket combustor interactive design (ROCCID) computer program are presented. This includes installation instructions, flow charts, subroutine model documentation, and sample output files. The ROCCID program, written in Fortran 77, provides a standardized methodology using state of the art codes and procedures for the analysis of a liquid rocket engine combustor's steady state combustion performance and combustion stability. The ROCCID is currently capable of analyzing mixed element injector patterns containing impinging like doublet or unlike triplet, showerhead, shear coaxial and swirl coaxial elements as long as only one element type exists in each injector core, baffle, or barrier zone. Real propellant properties of oxygen, hydrogen, methane, propane, and RP-1 are included in ROCCID. The properties of other propellants can be easily added. The analysis models in ROCCID can account for the influences of acoustic cavities, helmholtz resonators, and radial thrust chamber baffles on combustion stability. ROCCID also contains the logic to interactively create a combustor design which meets input performance and stability goals. A preliminary design results from the application of historical correlations to the input design requirements. The steady state performance and combustion stability of this design is evaluated using the analysis models, and ROCCID guides the user as to the design changes required to satisfy the user's performance and stability goals, including the design of stability aids. Output from ROCCID includes a formatted input file for the standardized JANNAF engine performance prediction procedure. Muss, J. A. and Nguyen, T. V. and Johnson, C. W. Unspecified Center NASA-CR-187110, NAS 1.26:187110 NAS3-25556; RTOP 582-01-21...


User's Manual for Rocket Combustor Interactive Design (Roccid) and Analysis Computer Program. Volume 1

User's Manual for Rocket Combustor Interactive Design (Roccid) and Analysis Computer Program. Volume 1
Author: National Aeronautics and Space Administration (NASA)
Publisher: Createspace Independent Publishing Platform
Total Pages: 94
Release: 2018-07-17
Genre:
ISBN: 9781722858841

Download User's Manual for Rocket Combustor Interactive Design (Roccid) and Analysis Computer Program. Volume 1 Book in PDF, ePub and Kindle

The user's manual for the rocket combustor interactive design (ROCCID) computer program is presented. The program, written in Fortran 77, provides a standardized methodology using state of the art codes and procedures for the analysis of a liquid rocket engine combustor's steady state combustion performance and combustion stability. The ROCCID is currently capable of analyzing mixed element injector patterns containing impinging like doublet or unlike triplet, showerhead, shear coaxial, and swirl coaxial elements as long as only one element type exists in each injector core, baffle, or barrier zone. Real propellant properties of oxygen, hydrogen, methane, propane, and RP-1 are included in ROCCID. The properties of other propellants can easily be added. The analysis model in ROCCID can account for the influence of acoustic cavities, helmholtz resonators, and radial thrust chamber baffles on combustion stability. ROCCID also contains the logic to interactively create a combustor design which meets input performance and stability goals. A preliminary design results from the application of historical correlations to the input design requirements. The steady state performance and combustion stability of this design is evaluated using the analysis models, and ROCCID guides the user as to the design changes required to satisfy the user's performance and stability goals, including the design of stability aids. Output from ROCCID includes a formatted input file for the standardized JANNAF engine performance prediction procedure. Muss, J. A. and Nguyen, T. V. and Johnson, C. W. Unspecified Center...


Energy and Exergy for Sustainable and Clean Environment, Volume 2

Energy and Exergy for Sustainable and Clean Environment, Volume 2
Author: V. Edwin Geo
Publisher: Springer Nature
Total Pages: 531
Release: 2022-09-19
Genre: Business & Economics
ISBN: 9811682747

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This multi-disciplinary book presents the most recent advances in exergy, energy, and environmental issues. Volume 2 focuses on fundamentals in the field and covers current problems, future needs, and prospects in the area of energy and environment from researchers worldwide. Based on some selected lectures from the Eleventh International Exergy, Energy and Environmental Symposium (IEEES-11) and complemented by further invited contributions, this comprehensive set of contributions promote the exchange of new ideas and techniques in energy conversion and conservation in order to exchange best practices in "energetic efficiency." Included are fundamental and historical coverage of the green transportation and sustainable mobility sectors, especially regarding the development of sustainable technologies for thermal comforts and green transportation vehicles. Furthermore, contributions on renewable and sustainable energy sources, strategies for energy production, and the carbon-free society constitute an important part of this book.


Scaling in a Ducted Rocket Combustor

Scaling in a Ducted Rocket Combustor
Author:
Publisher:
Total Pages: 24
Release: 1998
Genre:
ISBN:

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In a project to demonstrate several of the key technologies of an air-breathing propulsion unit for a medium-range air-launched missile, experiments are to be conducted on an essential component of such a unit: the ducted rocket combustor. Existing test facilities will use hardware smaller than those of the missiles of interest, so that test results on small-scale models will have to be scaled up to the larger full-sized combustors. This report details the derivation of the relevant dimensionless parameters used in the scaling process and shows how the scaling has been applied in the past to experimental data from various types of combustors. The scaling procedure is called PD-scaling, which requires that geometric similarity be maintained and that the product of the static pressure in the combustor and the length scale be held constant between the model and the full-scale combustors. Inlet velocities, fuel type, air/fuel ratios, and inlet temperatures must also be kept constant. Finally, the report shows how PD-scaling should be applied to the ducted rocket combustor tests.