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Showing 1 to 3 of 3 for “"Reverse flow combustor"”.

  1. Flame stabilization and mixing characteristics in a stagnation point reverse flow combustor

    A novel combustor design, referred to as the Stagnation Point Reverse-Flow (SPRF) combustor, was recently developed that is able to operate stably at very lean fuel-air mixtures and with low NOx emissions even when the fuel and air are not premixed before entering the combustor. The primary …

    gatech Repository record for Flame stabilization and mixing characteristics in a stagnation point reverse flow combustor (opens in a new tab)

  2. Experimental and Computational Investigation of Thermal-Flow Characteristics of Gas Turbine Reverse-Flow Combustor

    <p>Reverse-flow combustors have been used in heavy land-based gas turbines for many decades. A sheath is typically installed to provide cooling at an expense of large pressure losses, through small jet impingement cooling and strong forced convention channel flow. With the modern advancement in …

    uno Repository record for Experimental and Computational Investigation of Thermal-Flow Characteristics of Gas Turbine Reverse-Flow Combustor (opens in a new tab)

  3. Self-sustained combustion of low grade solid fuels in a stagnation-point reverse-flow combustor

    … investigates the use of the Stagnation-Point Reverse-Flow (SPRF) combustor geometry for burning low-grade solid fuels that are attractive for specific industrial applications because of their low cost and on-site availability. These fuels are in general, hard to burn, either because of high …

    gatech Repository record for Self-sustained combustion of low grade solid fuels in a stagnation-point reverse-flow combustor (opens in a new tab)