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  • 1
    Publication Date: 2016-06-07
    Description: Spherical, outwardly-propagating flames of CH4-O2-inert and H2-O2-inert mixtures were experimentally studied in a high pressure apparatus. Stretch-free flame speeds and Markstein lengths were extracted for a wide range of pressures and equivalence ratios for spherically-symmetric, smooth flamefronts and compared to numerical computations with detailed chemistry and transport, as well as existing data in the literature. Wrinkle development was examined for propagating flames that were unstable under our experimental conditions. Hydrodynamic cells developed for most H2-air and CH4-air flames at elevated pressures, while thermal-diffusive instabilities were also observed for lean and near-stoichiometric hydrogen flames at pressures above atmospheric. Strategies in suppressing or delaying the onset of cell formation have been assessed. Buoyancy effects affected sufficiently off-stoichiometric CH4 mixtures at high pressures.
    Keywords: Inorganic, Organic and Physical Chemistry
    Type: Sixth International Microgravity Combustion Workshop; 305-308; NASA/CP-2001-210826
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  • 2
    Publication Date: 2018-06-08
    Description: There are significant international efforts underway to place mobile robots (rovers) on the surface of Mars.
    Keywords: Lunar and Planetary Science and Exploration
    Type: International Society for Optical Engery; Boston, MA; United States
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  • 3
    Publication Date: 2018-06-08
    Type: 19th Conference of Condensed Matter; Brighton; United Kingdom
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  • 4
    Publication Date: 2018-06-11
    Keywords: Communications and Radar
    Type: International Society for Optical Engineering (SPIE) PHotonics West: LASE Session; San Jose, CA; United States
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  • 5
    Publication Date: 2019-06-28
    Description: The present research endeavor is concerned with gaining fundamental understanding of the configuration, structure, and dynamics of laminar premixed and diffusion flames under conditions of negligible effects of gravity. Of particular interest is the potential to establish and hence study the properties of spherically- and cylindrically-symmetric flames and their response to external forces not related to gravity. For example, in an earlier experimental study of the burner-stabilized cylindrical premixed flames, the possibility of flame stabilization through flow divergence was established, while the resulting one-dimensional, adiabatic, stretchless flame also allowed an accurate means of determining the laminar flame speeds of combustible mixtures. We have recently extended our studies of the flame structure in microgravity along the following directions: (1) Analysis of the dynamics of spherical premixed flames; (2) Analysis of the spreading of cylindrical diffusion flames; (3) Experimental observation of an interesting dual luminous zone structure of a steady-state, microbuoyancy, spherical diffusion flame of air burning in a hydrogen/methane mixture environment, and its subsequent quantification through computational simulation with detailed chemistry and transport; (4) Experimental quantification of the unsteady growth of a spherical diffusion flame; and (5) Computational simulation of stretched, diffusionally-imbalanced premixed flames near and beyond the conventional limits of flammability, and the substantiation of the concept of extended limits of flammability. Motivation and results of these investigations are individually discussed.
    Keywords: Materials Processing
    Type: Fourth International Microgravity Combustion Workshop; 69-74; NASA-CP-10194
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  • 6
    Publication Date: 2018-06-08
    Description: Portable mobile robots, in the size class of 20 kg or less, could be extremely valuable as autonomous reconnaissance platforms in urban hostage situations and disaster relief.
    Keywords: Cybernetics, Artificial Intelligence and Robotics
    Type: International Conference on Intelligent Autonomous Systems; Venice; Italy
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  • 7
    Publication Date: 2018-06-08
    Description: A novel image segmentation technique for extracting limb and terminator of planetary bodies is proposed. Conventional edge- based histogramming approaches are used to trace object boundaries. The limb and terminator bifurcation is achieved by locating the harmonized segment in the two equations representing the 2-D parameterized boundary curve. Real planetary images from Voyager 1 and 2 served as representative test cases to verify the proposed methodology.
    Type: Computer Vision and Image Understanding
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  • 8
    Publication Date: 2019-07-13
    Description: No abstract available
    Keywords: Composite Materials
    Type: E-661215 , Annual Conference on Composites, Materials, and Structures.; Jan 23, 2012 - Jan 26, 2012; Cocoa Beach, FL; United States
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  • 9
    Publication Date: 2019-07-13
    Description: A study outlining a fracture mechanics based model that is being developed to investigate crack growth and spallation of environmental barrier coating (EBC) under thermal cycling conditions is presented. A description of the current plan and a model to estimate thermal residual stresses in the coating and preliminary fracture mechanics concepts for studying crack growth in the coating are also discussed. A road map for modeling life and durability of the EBC and the results of FEA model(s) developed for predicting thermal residual stresses and the cracking behavior of the coating are generated and described. Further initial assessment and preliminary results showed that developing a comprehensive EBC life prediction model incorporating EBC cracking, degradation and spalling mechanism under stress and temperature gradients typically seen in turbine components is difficult. This is basically due to mismatch in thermal expansion difference between sub-layers of EBC as well as between EBC and substrate, diffusion of moisture and oxygen though the coating, and densification of the coating during operating conditions as well as due to foreign object damage, the EBC can also crack and spall from the substrate causing oxidation and recession and reducing the design life of the EBC coated substrate.
    Keywords: Composite Materials
    Type: American Ceramic Society''s Ceramic Transactions Volume (from MS and T 2011} meeting; Oct 16, 2012 - Oct 20, 2012; Columbus, OH; United States
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  • 10
    Publication Date: 2019-08-17
    Description: A study is conducted of the structure and response of curved (but unstretched), cylindrically-symmetric 1D premixed flames from a cylindrical porous burner. The study has employed (1) activation-energy asymptotics with one-step reaction constant and constant properties; (2) a numerical computation which encompassed detailed chemistry and transport behavior, and (3) drop-tower microgravity tests. Attention was given to the relative importance of heat loss vs. flow divergence as the dominant mechanism for flame stabilization; the results show that, with increasing flow discharge rate, the dominant flame stabilization mechanism changes from heat loss to flow divergence.
    Keywords: Inorganic and Physical Chemistry
    Type: AIAA Paper 94-0571 , E-9132
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