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- W2321793884 abstract "This paper investigates the effect of vitiation on the soot formation process. The motivation behind this study is being able to define and predict the boundaries of flameless combustion as a function of soot precursor concentrations. Although the flameless combustion phenonmenon has varied applications, our primary interest is to predict the onset of flameless combustion in a novel low emissions semiclosed cycle (SCC) engine called the Power, Water Extraction and Refrigeration (PoWER) novel engine. This engine, under development by a team led by the University of Florida, utilizes vitiation of core engine air stream with externally cooled recirculated exhaust gases, in a semiclosed cycle (SCC) loop. The effect of equivalence ratio, exhaust gas recirculation (EGR), residence time and EGR temperature (EGRT) have been modeled for premixed acetylene combustion in a well-stirred homogenous system. The soot formation kinetics were modeled using detailed kinetic mechanism by Frenklach and coworkers. The simulations were performed using a constant-pressure CSTR network model developed using the Cantera combustion code, implemented in C++. Our modeling reveals that EGR has a strong thermal effect, and hence mimics the well-known soot-bell like behavior. Depending on whether the EGR and/or EGR temperature are increased on the high-temperature side of this soot-bell or the low-temperature side of the soot bell, the sooting tendency may increase or decrease for the system." @default.
- W2321793884 created "2016-06-24" @default.
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- W2321793884 date "2009-08-02" @default.
- W2321793884 modified "2023-09-23" @default.
- W2321793884 title "Soot Formation in Vitiated Combustion" @default.
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- W2321793884 doi "https://doi.org/10.2514/6.2009-4970" @default.
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