2018
DOI: 10.1115/1.4040689
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Extension of Fuel Flexibility by Combining Intelligent Control Methods for Siemens SGT-400 Dry Low Emission Combustion System

Abstract: Extension of gas fuel flexibility of a current production SGT-400 industrial gas turbine combustor system is reported in this paper. A SGT-400 engine with hybrid combustion system configuration to meet a customer's specific requirements was string tested. This engine was tested with the gas turbine package driver unit and the gas compressor-driven unit to operate on and switch between three different fuels with temperature-corrected Wobbe index (TCWI) varying between 45 MJ/m3, 38 MJ/m3, and 30 MJ/m3. The alter… Show more

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Cited by 4 publications
(1 citation statement)
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“…Numerous works have highlighted and overcome those challenges in DLE gas turbines over the past years. Various studies focus on flame static stability as in [32,38], combustion performance [39,40], fuel injection flexibility [41,42], turbine burner [43], fuel flow aerodynamic [44], fuel combustion [45] and fuel mixing [46]. Upon analysis, most of the works are focused on either combustor design, combustion fuels or the combustion process.…”
Section: Gas Turbine Modelmentioning
confidence: 99%
“…Numerous works have highlighted and overcome those challenges in DLE gas turbines over the past years. Various studies focus on flame static stability as in [32,38], combustion performance [39,40], fuel injection flexibility [41,42], turbine burner [43], fuel flow aerodynamic [44], fuel combustion [45] and fuel mixing [46]. Upon analysis, most of the works are focused on either combustor design, combustion fuels or the combustion process.…”
Section: Gas Turbine Modelmentioning
confidence: 99%