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Comparative study of combustion and thermal performance in a swirling micro combustor under premixed and non-premixed modes

机译:预混合和非预混模式下旋流微燃烧器中燃烧和热性能的比较研究

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摘要

A swirling micro combustor fueled by hydrogen/air has been proposed based on the concept of swirling flow stabilization. The effects of premixed and non-premixed combustion modes on the combustion efficiency, flame stability, and thermal performance of the micro combustor at various hydrogen/air mass flow rates and equivalence ratios are discussed and compared. The results show that premixed mode has a lower flame location than non-premixed mode, and the flame location of non-premixed mode is more susceptible to changes of hydrogen/air mass flow rate and equivalence ratio than premixed mode. When the hydrogen mass flow rate is lower, the non-premixed mode is more suitable for micro thermophotovoltaic (MTPV) system because the wall temperature is more uniform. However, the premixed mode has a higher and more uniform wall temperature distribution at high hydrogen mass flow rate. Moreover, the hydrogen/air equivalence ratio has a significant effect on the thermal performance in the swirling micro combustor, and the advantage of a high and uniform wall temperature distribution of premixed mode is more obvious at small equivalence ratio. This work provides a reference for the choice of micro combustor combustion modes under different hydrogen/air mass flow rates and equivalence ratios in the MTPV system.
机译:基于旋流流动稳定的概念提出了一种由氢气/空气燃料的旋转微燃烧器。讨论了预混和未预混燃烧模式对各种氢气/空气质量流量和等效比率的微燃烧器的燃烧效率,火焰稳定性和热性能的影响。结果表明,预混模式具有比未预混合模式的较低的火焰位置,并且未预混模式的火焰位置比预混模式更容易受到氢气/空气质量流量和等效比的变化。当氢气质量流量较低时,未预混的模式更适合于微蒸镀(MTPV)系统,因为壁温更均匀。然而,预混合模式具有高氢气流量的较高且更均匀的壁温度分布。此外,氢气/空气等效比对旋流微燃烧器中的热性能具有显着影响,并且预混合模式的高和均匀壁温度分布的优点在于小的等效比更明显。该作品为在不同氢气/空气质量流量和MTPV系统中的等效比下选择了微燃烧器燃烧模式的参考。

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