
The GE Rich-Quench-Lean Gas Turbine Combustor
1998年7月1日 · The General Electric Company has developed and successfully tested a full-scale, F-class (2550°F combustor exit temperature), rich-quench-lean (RQL) gas turbine …
The GE Rich-Quench-Lean Gas Turbine Combustor - ScienceGate
The General Electric Company has developed and successfully tested a full-scale, ‘F’ class (2550°F combustor exit temperature), rich-quench-lean (RQL) gas turbine combustor, …
The GE rich-quench-lean gas turbine combustor. - 百度学术
Reports that the General Electric Company has developed and tested a full-scale, F-class, rich-quench-lean (RQL) gas turbine combustor, designated RQL2. Usage of the combustor for low …
GE Rich-Quench-Lean贫燃燃气轮机燃烧器,Journal of Engineering …
RQL2是一项为期5年研发工作的结晶,始于2直径穿孔板式燃烧器的天然气测试,其中包括RQL1(缩小规模(6直径)的燃气轮机燃烧器)的LHV燃料测试。
RQL2 combustor and test stand. | Download Scientific Diagram
RQL tests by GE and Multi-Annular Swirl Burner tests by Siemens-Westinghouse are presented for application to combined cycles; main operational parameters for the GT may be obtained via...
2023年7月16日 · The development of RQL2, a full scale (14" diameter, 10 lb/s total flow), rich-quench-lean gas turbine combustor is the culmination of a five year research and development …
Title: Design and Performance of a Low Btu Fuel Rich-Quench …
This research outlines the design and performance testing of the RQL2 combustor, revealing that it achieves a significantly lower conversion rate of FBN to NO x compared to existing …
The Ge Rich-quench-lean Gas Turbine Combustor - 搜只猫
The General Electric Company has developed and successfully tested a full-scale, 'F' class (2550°F combustor exit temperature), rich-quench-lean (RQL) gas turbine combustor, …
The GE Rich-Quench-Lean Gas Turbine Combustor
2014年12月24日 · The General Electric Company has developed and successfully tested a full-scale, ‘F’ class (2550°F combustor exit temperature), rich-quench-lean (RQL) gas turbine …
(PDF) Design and Performance of a Low Btu Fuel Rich
1996年12月31日 · Rich-quench-lean (RQL) combustion can decrease the conversion of FBN to NO {sub x} because a large fraction of the FBN is converted into non-reactive N {sub 2} in a …