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Showing 1 to 4 of 4 for “"MILD combustion"”.

  1. Flame Stabilisation in the Transition to MILD Combustion

    … air transport and industrial processes is combustion. Moderate or intense low oxygen dilution (MILD) combustion offers improved thermal efficiency and a significant reduction of CO and NOx pollutants, soot and thermo-acoustic instabilities compared to conventional combustion. Whilst …

    adelaide Repository record for Flame Stabilisation in the Transition to MILD Combustion (opens in a new tab)

  2. Physical aspects and modelling of turbulent MILD combustion

    Moderate or Intense Low-oxygen Dilution (MILD) combustion is one of combustion technologies which can improve efficiency and reduce emissions simultaneously. This combustion type is characterised by the highly preheated reactant temperature and the relatively small temperature rise during …

    cambridge Repository record for Physical aspects and modelling of turbulent MILD combustion (opens in a new tab)

  3. Physical Insights of Non-Premixed MILD Combustion using DNS

    Moderate or Intense Low-oxygen Dilution (MILD) combustion is a combustion technology that can simultaneously improve the energy efficiency and reduce the pollutant emissions of combustion devices. It is characterised by highly preheated reactants and a small temperature rise during combustion due …

    cambridge Repository record for Physical Insights of Non-Premixed MILD Combustion using DNS (opens in a new tab)

  4. Advancing turbulent reacting flow simulations with generalisable machine learning models for sub-grid FDF

    … remains a significant challenge in computational combustion research, particularly within the large eddy simulation (LES) framework. This study investigates the application of machine learning (ML) techniques for predicting sub-grid filtered density functions (FDFs), aiming to improve accuracy, …

    cambridge Repository record for Advancing turbulent reacting flow simulations with generalisable machine learning models for sub-grid FDF (opens in a new tab)