Plasma-Induced Ignition and Plasma-Assisted Combustion in High-Speed Flow

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Release : 2003
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Plasma-Induced Ignition and Plasma-Assisted Combustion in High-Speed Flow - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Plasma-Induced Ignition and Plasma-Assisted Combustion in High-Speed Flow write by . This book was released on 2003. Plasma-Induced Ignition and Plasma-Assisted Combustion in High-Speed Flow available in PDF, EPUB and Kindle. The paper is dedicated to the experimental demonstration of plasma technology abilities in the field of high speed combustion. It is doing in three principal directions: control of the structure and the parameters of the duct driven flows; the ignition of air fuel composition at low mean gas temperature; and the mixing intensification inflow.

Plasma Assisted Combustion and Flameholding in High Speed Cavity Flows

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Release : 2012
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Plasma Assisted Combustion and Flameholding in High Speed Cavity Flows - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Plasma Assisted Combustion and Flameholding in High Speed Cavity Flows write by Joseph Aloysius Heinrichs. This book was released on 2012. Plasma Assisted Combustion and Flameholding in High Speed Cavity Flows available in PDF, EPUB and Kindle. Abstract: This thesis presents an experimental study of non-equilibrium, low temperature, large volume plasma assisted ignition and flameholding in high-speed, non-premixed fuel-air flows. The plasma is produced between two electrodes powered by a high-voltage, nanosecond pulse generator operated at a high pulse repetition rate. Ignition in this type of plasma occurs due to production of highly reactive radicals by electron impact excitation and dissociation, as opposed to more common thermal ignition. Previously, it has been shown that this type of plasma can reduce ignition delay time and ignition temperature. The experiments performed in this thesis focus on application of these plasmas to ignition, and flameholding in high-speed cavity flows. The experiments discussed in this thesis continue previous work using a high-speed combustion test section with a larger cavity, and the previous results are compared to the present work. Several modifications have been made to the test section and electrodes compared to the design used in previous work in order to reduce the cavity effect on the main flow and maintain diffuse plasma between the electrodes in the cavity. The electrodes used in these experiments are placed in a cavity recess, used to create a recirculation flow region with long residence time, where ignition and flameholding can occur. In order to analyze the nanosecond pulse plasma and the flame, various diagnostics were used, including current and voltage measurements, UV emission measurements, ICCD camera imaging, static pressure measurements, and time-averaged emission spectroscopy. The experiments in this thesis were performed at relatively low pressures (P=150-200 torr) using hydrogen and ethylene fuels injected into the cavity. Current and voltage measurements showed that ~1-2 mJ was coupled to the plasma by each pulse. ICCD imaging and UV emission data revealed that the plasma sustained in quiescent air was diffuse. When ethylene was injected into the cavity to ignite the flow, ICCD imaging and UV emission data showed arcing to bare metal surfaces in the test section occurred shortly after ignition, which prompted switching to hydrogen fuel. Using hydrogen, ICCD imaging and UV emission showed that the plasma remained diffuse and confined to the area between electrodes. Time-average emission spectroscopy measurements revealed that the air-flow temperature remained low until fuel was injected and ignition occurred. Pressure and UV emission measurements were used to find velocity limits within which the flow ignited. It was found that the upper limit of velocity depends strongly on the static pressure in the test section. The highest flow velocity at which combustion was achieved in H2-air flows was 270 m/s at 180 torr. This represents considerable improvement compared to previous work using nanosecond pulse discharge for ignition in cavities. Preliminary results show that plasma generation and ignition are possible using a smaller diameter electrode such that the cavity size can be further reduced, and that a supersonic flow can be produced in the present test section using a Mach 2 nozzle placed upstream of the cavity. The appendix details a study on the production of oxygen atoms using a pulsed excimer laser.

Plasma Assisted Combustion

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Release : 2007
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Plasma Assisted Combustion - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Plasma Assisted Combustion write by . This book was released on 2007. Plasma Assisted Combustion available in PDF, EPUB and Kindle. This report results from a contract tasking Moscow Institute of Physics and Technology as follows: The contractor will investigate the use of high voltage, nano-second plasma discharges to ignite and efficiently combust fuel/air mixtures in high speed flows. This strongly nonequilibrium low-temperature plasma has a high mean energy of electrons and will provide a source of reactive atoms, radicals, and excited molecules which has been shown to enhance ignition and combustion. The short duration of the pulses results in relatively low power requirements for generating the discharge. The goal is to demonstrate and understand the physics of energy exchange, ignition and combustion . Also, the use of this type of plasma for aerodynamic flow control will be investigated. Finally, applicability to use this type of discharge to directly initiate a detonation wave will be investigated.

Ignition Systems for Gasoline Engines

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Release : 2016-11-18
Genre : Technology & Engineering
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Book Rating : 044/5 ( reviews)

Ignition Systems for Gasoline Engines - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Ignition Systems for Gasoline Engines write by Michael Günther. This book was released on 2016-11-18. Ignition Systems for Gasoline Engines available in PDF, EPUB and Kindle. The volume includes selected and reviewed papers from the 3rd Conference on Ignition Systems for Gasoline Engines in Berlin in November 2016. Experts from industry and universities discuss in their papers the challenges to ignition systems in providing reliable, precise ignition in the light of a wide spread in mixture quality, high exhaust gas recirculation rates and high cylinder pressures. Classic spark plug ignition as well as alternative ignition systems are assessed, the ignition system being one of the key technologies to further optimizing the gasoline engine.

Plasma-assisted Combustion in a Supersonic Flow

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Release : 2009
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Plasma-assisted Combustion in a Supersonic Flow - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Plasma-assisted Combustion in a Supersonic Flow write by Hyungrok Do. This book was released on 2009. Plasma-assisted Combustion in a Supersonic Flow available in PDF, EPUB and Kindle.