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Physical Mechanisms and Conditions of Excitation of Vibratory Combustion of Solid Fuels

Journal of Engineering Physics and Thermophysics, 2020
The authors have obtained experimental characteristics of the self-oscillating process of vibratory combustion of a solid fuel. As a result of the analysis of the obtained diagrams of amplitude and frequency characteristics of the self-oscillating process of vibratory combustion of a solid fuel depending on the position of the combustion zone in a ...
Stonik O G, Geshele V D, V D Geshele
exaly   +2 more sources

Intense Regime of Vibratory Combustion of Biofuel

Journal of Engineering Physics and Thermophysics, 2019
Experimental investigation of the vibratory combustion of a solid biofuel (wood pellets) has been conducted. In some experiments, a significant enhancement of acoustic radiation with vibratory combustion of the pellets was observed which was accompanied by the increase in their burnup rate. In the event of such a regime the flame temperature decreased,
Yu V Polezhaev, Geshele V D, V D Geshele
exaly   +2 more sources

Aluminized Solid Propellants Combustion Under Vibratory Conditions

57th International Astronautical Congress, 2006
In the recent past, the influence of steady acceleration fields on the combustion process of solid rocket propellants was analyzed in great details and nowadays a satisfactory knowledge of the related burning rate augmentation mechanisms has been reached.
Luigi Deluca
exaly   +3 more sources

Impact-Compacted Noncement and Vibratory-Placed Noncement/Partial-Cement Concretes Containing Fluidized Bed and Pulverized Coal Combustion Residues

Journal of Materials in Civil Engineering, 2015
The two-part research study presented herein evaluates fresh and hardened properties of vibratory-placed noncement/partial-cement concretes, as well as impact-compacted noncement concretes, containing various dosages of pulverized coal combustion fly ash and fluidized bed combustion spent bed.
Meysam Najimi, Nader Ghafoori
exaly   +2 more sources

A Statistical Assessment of the Stochastic Modeling of Torsional Vibratory Loads in Internal Combustion Engines

Journal of Ship Research, 1995
A statistical assessment of the stochastic modeling of torsional vibratory loads in internal combustion engines is performed, based on (temperature) factory testbed data, for each cylinder of four 16-cyl Colt-Pielstick PC2V type engines at various speeds.
Dimitrios V. Lyridis   +2 more
exaly   +2 more sources

Calculation of flame wavelength in vibratory combustion in tubes

Journal of Engineering Physics, 1966
A calculation is made of the wavelength at the surface of a flame in vibratory combustion in a tube, allowing for preheating of the fuel mixture through heat conduction ahead of the ignition front.
exaly   +2 more sources

Vibratory Combustion, Problems and Investigation Methods

Journal of Engineering Physics and Thermophysics, 2022
Stonik O G, Geshele V D, V D Geshele
exaly   +2 more sources

In situ dynamic measuring system to measure the vibratory and translational displacement of the airfoil modes of a combustion turbine compressor vane via an optical noncontact method

Proceedings of SPIE, 2010
An in-situ Dynamic Measuring System is developed and tested to measure the vibratory and translational displacement of the airfoil modes of a combustion turbine compressor vane via an optical non-contact method. The Dynamic Measurement System measures the dynamic contact displacement in the radial direction of the combustion turbine, which can be ...
Evangelos V. Diatzikis   +2 more
exaly   +2 more sources

Thermoelectric coupling study of scavenging pressure effect on fuel spray and mixing of a vibratory combustion linear engine

International Journal of Engine Research
The vibratory combustion linear engine is a promising energy converter that transforms thermal energy from fuel combustion into electrical energy through mechanical vibration. However, the effect of scavenging pressure on fuel spray and mixture formation under complex coupling conditions remains underexplored.
Chenheng Yuan, Yituan He
exaly   +2 more sources

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