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  • 1
    Electronic Resource
    Electronic Resource
    Amsterdam : Elsevier
    Biochemical Systematics and Ecology 22 (1994), S. 171-195 
    ISSN: 0305-1978
    Keywords: Amblyolepis ; Asteraceae ; Dugaldia ; Gaillardiinae ; Heliantheae ; Hymenoxys ; Macdougalia ; Plateilema ; Plummera ; Tetraneuris ; chemotaxonomy ; glandular trichomes ; inositol derivatives ; monoterpenes ; sesquiterpene lactones
    Source: Elsevier Journal Backfiles on ScienceDirect 1907 - 2002
    Topics: Biology , Chemistry and Pharmacology
    Type of Medium: Electronic Resource
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  • 2
    Publication Date: 2019-08-13
    Description: A Turbine-Based Combined Cycle (TBCC) dynamic simulation model has been developed to demonstrate all modes of operation, including mode transition, for a turbine-based combined cycle propulsion system. The High Mach Transient Engine Cycle Code (HiTECC) is a highly integrated tool comprised of modules for modeling each of the TBCC systems whose interactions and controllability affect the TBCC propulsion system thrust and operability during its modes of operation. By structuring the simulation modeling tools around the major TBCC functional modes of operation (Dry Turbojet, Afterburning Turbojet, Transition, and Dual Mode Scramjet) the TBCC mode transition and all necessary intermediate events over its entire mission may be developed, modeled, and validated. The reported work details the use of the completed model to simulate a TBCC propulsion system as it accelerates from Mach 2.5, through mode transition, to Mach 7. The completion of this model and its subsequent use to simulate TBCC mode transition significantly extends the state-of-the-art for all TBCC modes of operation by providing a numerical simulation of the systems, interactions, and transient responses affecting the ability of the propulsion system to transition from turbine-based to ramjet/scramjet-based propulsion while maintaining constant thrust.
    Keywords: Aircraft Propulsion and Power
    Type: E-17775P , 58th JANNAF (JPM/CS/APS/EPSS/PHHS) Propulsion meeting; Apr 18, 2011 - Apr 22, 2011; Arlington, VA; United States
    Format: application/pdf
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  • 3
    Publication Date: 2019-08-13
    Description: The low emissions potential of a Rich-Quench-Lean (RQL) combustor for use in the HIgh Speed Civil transport (HSCT) application was evaluated as part of the NASA Critical Propulsion Components (CPC) Program. Fuel shifting as an approach to combustor control was evaluated in a multiple bank RQL combustor, utilizing reduced scale quench technology implemented in a convoluted linear with quench plate concept.
    Keywords: Aircraft Propulsion and Power
    Type: NASA/CR-2004-212879 , E-14293
    Format: application/pdf
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