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Improving lifetime and manufacturability of an RQL combustor for microturbines: design and numerical validation

机译:改善微型涡轮机的RQL燃烧器的寿命和可制造性:设计和数值验证

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A new annular RQL combustion chamber of an 80 kWel Elliott TA80R micro gas turbine was designed and built with a modified geometry to overcome known failures at low running hours (around 2500 hrs) caused by overheating. Design considered simplified manufacturability and flow optimization to reduce emission while maintaining similar temperatures and efficiencies. A preliminary geometry was analyzed and also built to verify manufacturability and economics. It was easily built with overall brute costs around 3000 €. It has also run continuously for over 27.000 hrs. An optimized geometry, however, guaranteed similar TIT with respect to the original geometry with a considerable reduction in CO and NOx emissions. Given the installation of the mGT at the IRP (Integrated Pyrolysis Regenerated Plant) the modified geometry was tested through CFD analysis on syngas from biomass thermochemical processes. The results show that further modifications of the liner are required for optimal operation and to reach adequate values for Turbine Inlet Temperature.
机译:设计并建造了80 kWel Elliott TA80R微型燃气轮机的新型环形RQL燃烧室,并采用了改进的几何形状,以克服因过热导致的低运行时间(约2500小时)下的已知故障。设计考虑了简化的可制造性和流程优化,以减少排放,同时保持相似的温度和效率。分析了初步的几何形状,并建立了可验证的可制造性和经济性。它很容易制造,总的蛮力成本约为3000欧元。它也连续运行了27.000多个小时。然而,优化的几何形状保证了与原始几何形状相似的TIT,同时大大减少了CO和NOx排放量。假定将mGT安装在IRP(整体热解再生工厂)上,则通过CFD分析法对来自生物质热化学过程的合成气进行了测试,测试了改进的几何形状。结果表明,需要对衬套进行进一步修改,以实现最佳运行并达到涡轮进口温度的适当值。

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