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LES of premixed and non-premixed combustion in a stagnation point reverse flow combustor

机译:驻点逆流燃烧室中预混合和非预混合燃烧的LES

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Numerical simulations of a low emission lab-scale burner, referred to as stagnation point reverse flow (SPRF) combustor are performed. The flow features and the combustion characteristics of both premixed and non-premixed modes are studied using large Eddy simulations (LES) using a sub-grid scalar mixing closure. The computed mean and root mean square (RMS) quantities in both premixed and non-premixed modes compare well with the corresponding experimental measurements. Computations accurately predict heat release, dilution of hot products with the reactants, entrainment rate of hot products into the fuel and air jets, and in the non-premixed mode, the mixing of fuel and air. Both computations and experiments show that the velocity field in both SPRF modes are qualitatively similar in the second half of the combustor. However, the heat release zones are quite different. In the premixed mode, flame is attached to the injector, while in the non-premixed mode, flame is lifted from the injector. Results are used to highlight some of these differences as well as some similarities. It is shown that premixing with hot products is the process that enables stable operation at a very lean equivalence ratio. In the non-premixed mode, significant partial mixing of fuel and air before the combustion zone results in combustion close to the premixed mode.
机译:对低排放实验室规模燃烧器(称为停滞点逆流(SPRF)燃烧器)进行了数值模拟。通过使用亚网格标量混合封闭的大型涡模拟(LES),研究了预混合模式和非预混合模式的流动特性和燃烧特性。在预混和非预混模式下计算出的均方根和均方根(RMS)量均与相应的实验测量结果进行了很好的比较。计算可准确预测热量的释放,热产物被反应物稀释,热产物进入燃料和空气喷嘴的夹带率,以及在非预混合模式下的燃料和空气的混合。计算和实验均表明,两种SPRF模式下的速度场在燃烧器的后半部在质量上都相似。但是,放热区完全不同。在预混合模式下,火焰附着在喷射器上,而在非预混合模式下,火焰从喷射器中升起。结果用于突出其中的一些差异以及某些相似之处。结果表明,与热产品进行预混合是一种能够在非常稀薄的当量比下实现稳定运行的过程。在非预混合模式下,在燃烧区之前燃料和空气的显着部分混合导致燃烧接近预混合模式。

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