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Monday, April 27, 2020 | History

3 edition of Advanced electric propulsion research, 1989 found in the catalog.

Advanced electric propulsion research, 1989

Advanced electric propulsion research, 1989

annual report

by

  • 178 Want to read
  • 16 Currently reading

Published by National Aeronautics and Space Administration, Lewis Research Center, National Technical Information Service, distributor in [Cleveland, Ohio], [Springfield, Va .
Written in English

    Subjects:
  • Cathodes.,
  • Electric propulsion.,
  • Erosion.,
  • Hollow cathodes.,
  • Ion production rates.,
  • Ion propulsion.

  • Edition Notes

    StatementPaul J. Wilbur.
    SeriesNASA CR -- 185237., NASA contractor report -- NASA CR-185237.
    ContributionsLewis Research Center.
    The Physical Object
    FormatMicroform
    Pagination1 v.
    ID Numbers
    Open LibraryOL17725435M

      Glenn tours are a unique blend of education and entertainment. Visitors can explore America’s research facilities and see where scientists and engineers develop propulsion, power and communication technologies for NASA’s aeronautics and space programs. Educational programs. We advance science, technology, engineering and . Publications. The Electric Propulsion Group publishes the results of its flight programs and research in several venues, primarily through peer-reviewed journal articles and conference papers presented at the AIAA Joint Propulsion Conference and the International Electric Propulsion Conference. The full archive of the group extends several decades.


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Advanced electric propulsion research, 1989 Download PDF EPUB FB2

Get this from a library. Advanced electric propulsion research, annual report. [Paul J Wilbur; Lewis Research Center.].

ADVANCED ELECTRIC PROPULSION RESEARCH Prepared for LEWIS RESEARCH CENTER NATIONAL AERONAUTICS AND Advanced electric propulsion research ADMINISTRATION Grant NGR (NASA-CR) RDVANCED ELECTRIC N 37 PROPULSIObl State Univ.) RESEARCH p Annual Report {CoLorado CSCL 2lC Unclas G3/20 Annual Report January.

Space propulsion systems have a great influence on our ability to travel to other planets or how cheap a satellite can provide TV programs. This book provides an up-to-date overview of all kinds of propulsion systems ranging from classical rocket technology, nuclear propulsion to electric propulsion systems, and further to micro- propellantless and even breakthrough propulsion Cited by: Electrogravitics research and advanced propulsion systems A 39, ()] concerning a ZPF-based model of Newtonian gravity, and for the.

Dan M. Goebel, PhD, is a Senior Research Scientist in the Advanced Propulsion Technology Group at JPL in Pasadena, California. Since joining JPL inhe has worked on the development of high-efficiency ion thrusters, advanced long life cathodes and grids, and electric-thruster life models for deep space missions.5/5(1).

Purchase Electric Propulsion Development - 1st Edition. Print Book & E-Book. ISBNBook Edition: 1. ADVANCED ELECTRIC PROPULSION RESEARCH Prepared for NATIONAL AERONAUTICS AND SPACE ADMINISTRATION May, Grant NGR Technical Management Mr. James Lazar Nuclear Electric Systems Division Office of Advanced Research Technology NASA Headquarters Washington, D.C.

Prepared 1989 book Issa William R. Mickelsen. Description. Winner of the Summerfield Book Award. A comprehensive coverage of the key physical concepts that govern gas turbine propulsion systems. Topics include combustion technology, engine/airplane performance matching, inlets and inlet/engine integration, variable convergent/divergent nozzle aerodynamics, and more.

Fundamentals of Electric Propulsion: Ion and Hall Thrusters March The research described in this publication was carried out at the Jet Propulsion Laboratory, California Institute of Technology, under a contract with the National Aeronautics and Space Administration. Reference herein to any specific commercial product, process, or service.

Electrogravitics and Field Propulsion. Starburst research has advanced our understanding of the physics behind electrogravitics and other propellentless field propulsion technologies which Advanced electric propulsion research possible the design of advanced aerospace propulsion technologies that could radically change our future means of travel.

ADVANCED PROPULSION/Electric Propulsion Modeling ADVANCED PROPULSION/HYPERSONIC RESEARCH ENGINE_AEROTHERMODYNAMIC_INTEGRATION MODEL High Endoatmospheric Defense Interceptor HEDI Technology Testing Program May pdf.

Space propulsion systems have a great influence on our ability to travel to other planets or how cheap a satellite can provide TV programs.

This book provides an up-to-date overview of all kinds of propulsion systems ranging from classical rocket technology, nuclear propulsion to electric propulsion systems, and further to micro- propellantless and even breakthrough propulsion, 3/5(7).

Throughout most of the twentieth century, electric propulsion was considered the technology of the future. Now, the future has arrived. This important new book Advanced electric propulsion research the fundamentals of electric propulsion for spacecraft and describes in detail the physics and characteristics of the two major electric thrusters in use today, ion and Hall thrusters.

The authors provide an. Growing amounts of evidence support an association between self-reported greenspace near the home and lower noise annoyance; however, objectively defined greenspace has rarely been considered.

In the present study, we tested the association between objective measures of greenspace and noise annoyance, with a focus on underpinning pathways through noise level Cited by: 6.

In this paper, we study Lipschitz stability of Caputo fractional differential equations with non-instantaneous impulses and state dependent delays. The study is based on Lyapunov functions and the Razumikhin technique. Our equations in particular include constant delays, time variable delay, distributed delay, etc.

We consider the case of impulses that start abruptly at some Cited by: 1. Electric propulsion research includes unique capabilities in high-power. pulse-electric propulsion systems and nuclear fusion propulsion research. Supporting electric propulsion research, Marshall operates a low-thrust vacuum chamber, which also can be used for chemical propulsion research.

Preparation for Hollow Cathode Testing for the Advanced Electric Propulsion System at NASA Glenn Research Center. Scott J. Hall, Timothy R. Sarver-Verhey, Jason D. Frieman, Hani Kamhawi and James L. Myers. Field propulsion systems were proposed by many researchers to overcome the speed limit of the conventional space propulsion system.

Field propulsion system can be. Space propulsion systems have a great influence on our ability to travel to other planets or how cheap a satellite can provide TV programs. This book provides an up-to-date overview of all kinds of propulsion systems ranging from classical rocket technology, nuclear propulsion to electric propulsion systems, and further to micro- propellantless and even breakthrough/5.

Read the latest articles of Propulsion and Power Research atElsevier’s leading platform of peer-reviewed scholarly literature. Background This report summarizes the results of an evaluation of a variety of advanced low thrust propulsion options for the cargo-delivery portion of a split-mission piloted Mars exploration scenario.

The propulsion options considered were solar sails. MWe class nuclear electric propulsion (NEP), WEe class solar electric propulsion (SEP). Performs research and technology development of advanced plasma-based propulsion technologies.

Provides the discipline engineering required to develop and fly electric propulsion components and subsystems onboard NASA human and robotic spacecraft, including requirements development, component and system analysis, specification development, test.

An electrically-powered spacecraft propulsion system uses electrical, and possibly also magnetic fields, to change the velocity of a of these kinds of spacecraft propulsion systems work by electrically expelling propellant (reaction mass) at high speed.

Electric thrusters typically use much less propellant than chemical rockets because they have a higher exhaust. Acta Astronautica Vol. 29, No. 9, pp./93 $ + Printed in Great Britain Pergamon Press Ltd ELECTRIC PROPULSION: AN EVOLUTIONARY TECHNOLOGY~ FRANCIS M.

CURRAN and JAMES S. SOVEY NASA Lewis Research Center, Cleveland, OHU.S.A. and ROGER M. MYERS Sverdrup Technology, Inc., Lewis Research Center Cited by: 5. Books. Recommended books, textbooks, college textbooks, monographs, and tutorials. Astronautics. Rockets. Missiles. Spacecraft. Space technology.

Space systems. NASA has selected Aerojet Rocketdyne, Inc. of Redmond, Washington, to design and develop an advanced electric propulsion system that will significantly advance the nation's commercial space capabilities, and enable deep space exploration missions, including the robotic portion of NASA’s Asteroid Redirect Mission (ARM) and its Journey to Mars.

He holds 52 patents and is the author of over technical journal papers, conference papers, 8 book chapters, and one book (with ) Fundamentals of Electric Propulsion, John Wiley and Sons, NJ He is an internationally recognized expert in electric propulsion, microwave sources, advanced plasma sources and high voltage engineering.

With those challenges in mind, research and development of more efficient and electric propulsion systems will expand. Fuel-cell technology is but one example that addresses such emission and resource challenges, and others, including negligible acoustic emissions and the potential to leverage current infrastructure models.

Welcome to the Propulsion Research Center The Propulsion Research Center is your resource for: Cost-effective fundamental and applied research Nationally recognized faculty and students State-of-the-art test facilities Innovative solutions Directory Students Capabilities Facilities News Contact Us UAH master’s student Ethan Hopping and UAH professor Dr.

Virginia Tech Research News Multifunctional porous carbon fibers show significant promise in capacitive desalination Researchers in the College of Science have developed a material that is up to 40 times faster in desalinating small batches of water than other materials available today.

NASA Hybrid Electric Aircraft Propulsion 1 Dr. Rodger Dyson NIEA Biomimicry Summit Hybrid Gas Electric Propulsion Technical Lead NASA Glenn Research Center Cleveland, OH Oct. 4, Electrically Enhanced Propulsion • Hybrid Gas Electric Propulsion technology enables: –Heavier payloads. Thesis (Degree of Naval Engineer and M.S.

in Electrical Engineering and Computer Science) Massachusetts Institute of Technology, June Includes bibliographical references A theoretical study was carried out on the effects of replacing submarine turbine-reduction gear propulsion drive systems with an equivalent electric drive : A second approach would be to use a moderate-thrust ( lb), modest-performance chemical propulsion thruster at sec I sp, such as liquid oxygen (LOx)/monopropellant hydrazine using a cryocooler to keep the LOx from boiling ty changes of hundreds of feet per second can be achieved in minutes to hours, depending on the propellant mass.

More comprehensive and coherently organized than any other book on the subject, Rocket Propulsion Elements guides readers evenhandedly through the complex factors that shape propulsion, with both theory and practical design considerations. With more than a third of the text and illustrations either completely new or extensively revised, this /5(11).

Performance. The NEXT engine is a type of solar electric propulsion in which thruster systems use the electricity generated by the spacecraft's solar panel to accelerate the xenon propellant to speeds of up to 90, mph (, km/h or 40 km/s).

NEXT can produce kW thrust power and mN thrust. It can be throttled down to kW power, and has a specific impulse of. Commercial Aircraft Propulsion and Energy Systems Research develops a national research agenda for reducing CO2 emissions from commercial aviation.

This report focuses on propulsion and energy technologies for reducing carbon emissions from large, commercial aircraft— single-aisle and twin-aisle aircraft that carry or more passengers. T&R Bulletin [] Marine Steam Power Plant Heat Balance Practices by Panel M (Heat Balance)() In JanuaryPanel M (Heat Balance) of the Society of Naval Architects and Marine Engineers Technical and Research (T&R) program was formed to investigate the possibility of standardizing the assumptions and allowances and methods of treatment of heat.

Antimatter to ion drives: NASA's plans for deep space propulsion. and accelerated by an electric field to be shot out the back. An early plasma propulsion engine from the Lewis Research.

Theoretical research agencies. Talbert indicated the rationale for the intensified interest in gravity control propulsion research had stemmed from the works of three physicists. They were Bryce DeWitt's prize-winning Gravity Research Foundation essay; the book Gravity and the Universe by Pascual Jordan; and presentations to the International Astronautical Federation by Dr.

In July ofMr. George Knapp released a leaked version of the 38 reports created under The Aerospace Aerospace Threat Identification Program (AATIP).

On this, were various, highly scientific and technical reports, by various authors, regarding fusion, advanced propulsion etc. The exact role they played in the AATIP program, is unclear.

Books. Goebel, D. M. and Katz, I., Fundamentals of Electric Propulsion: Ion and Hall Thrusters. (John Wiley & Sons, New York, ). (Hardcopies are also available. Like Gregory Matloff and Eugene Mallove, whose book The Starflight Handbook reviewed all the interstellar options then at work in the literature, Long’s Deep Space Propulsion offers a mathematical treatment of certain key ideas, especially useful for those coming up to speed on fundamentals like the rocket equation.

Long throws in, in.April 6, The ion propulsion system on Deep Space 1 is the culmination of over 50 years of development on electric engine systems in ed on Oct. 24,Deep Space 1 will be the first spacecraft to actually use ion propulsion to reach another planetary body.