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Numerical Investigation of NOx Emission Reduction in Non-Premixed Lean Reverse-Flow Combustor in a Micro Gas Turbine Engine

机译:微燃气涡轮发动机非预混贫逆流燃烧器中NOx排放的数值研究

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摘要

This paper details a NOx emissions characteristics study of a reverse-flow combustor using the steady Reynolds averaged Navier-Stokes (RANS) methodology. The combustor considered in this paper is the SR-30 engine model. The aim of this work is to understand the pollutant formation characteristics within the combustor chamber volume across various combustor zones. Effective ways to counter such high emissions by means of flow dilution were also investigated in the present study. Results indicated that the baseline reverse-low combustor model showed high NOx emission characteristics in the primary and secondary zones due to uneven temperature distribution. The emissions can be reduced effectively with additional dilution holes at the dilution zone of the reverse-flow combustor. The flow split due to the newly designed holes caused the velocity components (axial, radial and tangential), turbulence kinetic energy and the temperature within the primary and secondary zone to reduce significantly. The recovery of flow in the dilution zone with further reduction in temperature reduced the overall NOx emission significantly.
机译:本文详细介绍了使用稳定的雷诺平均Navier-Stokes(RANS)方法的反向流量燃烧器的NOx排放特性研究。本文考虑的燃烧器是SR-30发动机模型。这项工作的目的是了解各种燃烧区燃烧室体积内的污染物形成特性。还研究了本研究中通过流量稀释进行这种高排放的有效方法。结果表明,由于温度分布不均,基线反向低燃烧器模型在初级和二次区域中显示出高度的NOx排放特性。可以有效地减少排放,在反向流动燃烧器的稀释区处具有额外的稀释孔。由于新设计的孔引起的流量拆分导致速度分量(轴向,径向和切线),湍流动能和初级区域内的温度显着减少。在稀释区中的流动回收,随着温度的进一步降低,显着降低了整体NOx排放。

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