Progress in Propulsion Physics – Volume 4
St. Petersburg, Russian, July 4-8, 2011L.T. DeLuca, C. Bonnal, O. Haidn and S.M. Frolov (Eds.)
ISBN: 978-2-7598-0876-2
Chapter One. Solid and hybryd propulsion
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High-pressure burning rate studies of solid rocket propellants p. 3
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Ballistic effectiveness of Zr-containing composite solid propellants as a function of binder nature and mass fraction p. 15
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Analysis and synthesis of solutions for the agglomeration process modeling p. 33
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Experimental investigation of paraffin-based fuels for hybrid rocket propulsion p. 59
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Time-resolved regression rate of innovative hybrid solid fuel formulations p. 75
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Testing and modeling liquefying fuel combustion in hybrid propulsion p. 99
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Large eddy simulations and experiments of nonlinear flow interactions in hybrid rocket combustion p. 113
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Chapter Two. Liquid and gelled propulsion
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Validation of the computation of rocket nozzle admittances with linearized euler equations p. 135
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Impact of injection distribution on cryogenic rocket engine stability p. 149
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Determination of thermal load in film cooled bipropellant thrust chambers by an inverse method p. 167
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The influence of liquefied natural gas composition on its behavior as a coolant p. 185
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Simulation of supercritical flows in rocket-motor engines: application to cooling channel and injection system p. 205
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Thrust vectoring effects of a transverse gas injection into a supersonic cross flow of an axisymmetric convergent-divergent nozzle p. 227
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Experimental investigation of isolated acetone droplets at ambient and near-critical conditions, injected in a nitrogen atmosphere p. 257
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Spray behavior of non-newtonian fluids: correlation between rheological measurements and droplets/threads formation p. 271
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Chapter Three. Nuclear and electric rocket propulsion
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The nuclear thermal electric rocket: a proposed innovative propulsion concept for manned interplanetary missions p. 293
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Technological requirements of nuclear electric propulsion systems for fast Earth-Mars transfers p. 313
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Chapter Four. Air-breathing and pulse detonation propulsion
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Development and integration of a scalable low NOx combustion chamber for a hydrogen-fueled aerogas turbine p. 357
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Numerical investigation of a hydrogen-fueled scramjet combustor at flight conditions p. 373
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Interaction of power plant with airframe of new generation aircraft p. 395
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elsA-Hybrid: an all-in-one structured/unstructured solver for the simulation of internal and external flows. Application to turbomachinery p. 417
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Rotordynamic forces acting on a centrifugal open impeller in whirling motion by using active magnetic bearing p. 445
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Unsteady response of flow system around balance piston in a rocket pump p. 457
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Three-dimensional numerical simulation of operation process in rotating detonation engine p. 467
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Partial conversion of hydrocarbons to syngas and hydrogen in volumetric radiation burners as a prospective way to enhance the performance characteristics of power engines p. 489
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Chapter Five. Combustion diagnostics and modeling
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Cars measurements at high pressure in a CH4/O2 Jet flame p. 503
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Use of filtered combustion light and backlit high-speed images in combustion stability studies p. 525
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Extended LES-PaSR model for simulation of turbulent combustion p. 539
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Assumed PDF modeling in rocket combustor simulations p. 569
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Real gas CFD simulations of hydrogen/oxygen supercritical combustion p. 583
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Chapter Six. Fluid/structure interactions
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Fluid-structure interaction analysis applied to thermal barrier coated cooled rocket thrust chambers with subsequent local investigation of delamination phenomena p. 617
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Towards aerothermoelastic simulations of supersonic flow through nozzles p. 637
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Chapter Seven. Environmental impact of rocket emissions
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Impact of rocket exhaust plumes on atmospheric composition and climate ― an overview p. 657
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On the uncertainties in assessing the atmospheric effects of launchers p. 671
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Development of a green bipropellant hydrogen peroxide thruster for attitude control on satellites p. 689
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Kinetic mechanism for low-pressure oxygen/methane ignition and combustion p. 707
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Chapter Eight. Mitigation and removal of space debris
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Engineering and technology challenges for active debris removal p. 735
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Impact risk repercussions on the iridium and cosmo-skymed constellations of two recent catastrophic collisions in space p. 749
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Active Debris Removal mission design in Low Earth Orbit p. 763
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Ion beam shepherd satellite for space debris removal p. 789
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Active space debris removal by using laser propulsion p. 803
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