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- W2809310507 abstract "Heat losses have the potential to substantially modify turbulent combustion processes, especially the formation of pollutants such as nitrogen oxides. The chemistry governing these species is strongly temperature sensitive, making heat losses critical for an accurate prediction. To account for the effects of heat loss in large eddy simulation (LES) using a precomputed reduced-order manifold approach, thermochemical states must be precomputed not only for adiabatic conditions but also over a range of reduced enthalpy states. However, there are a number of methods for producing reduced enthalpy states, which invoke different implicit assumptions. In this work, a set of a priori and a posteriori LES studies have been performed for turbulent premixed flames considering heat losses within a precomputed reduced-order manifold approach to determine the sensitivity to the method by which reduced enthalpy states are generated. Two general approaches are explored for generating these reduced enthalpy states and are..." @default.
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- W2809310507 date "2018-06-22" @default.
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- W2809310507 title "Comparative analysis of methods for heat losses in turbulent premixed flames using physically-derived reduced-order manifolds" @default.
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- W2809310507 doi "https://doi.org/10.1080/13647830.2018.1479043" @default.
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