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首页> 外文期刊>International Journal of Spray and Combustion Dynamics >Modelling of combustion acoustics sources and their dynamics in the PRECCINSTA burner test case
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Modelling of combustion acoustics sources and their dynamics in the PRECCINSTA burner test case

机译:燃烧声学源的建模及其在PrecCinsta燃烧器测试盒中的动力学

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A stochastic, hybrid computational fluid dynamics/computational combustion acoustics approach for combustion noise prediction is applied to the PRECCINSTA laboratory scale combustor (prediction and control of combustion instabilities in industrial gas turbines). The numerical method is validated for its ability to accurately reproduce broadband combustion noise levels from measurements. The approach is based on averaged flow field and turbulence statistics from computational fluid dynamics simulations. The three-dimensional fast random particle method for combustion noise prediction is employed for the modelling of time-resolved dynamics of sound sources and sound propagation via linearised Euler equations. A comprehensive analysis of simulated sound source dynamics is carried out in order to contribute to the understanding of combustion noise formation mechanisms. Therefrom gained knowledge can further on be incorporated for the investigation of onset of thermoacoustic phenomena. The method-inherent stochastic Langevin ansatz for the realisation of turbulence related source decay is analysed in terms of reproduction ability of local one- and two-point statistical input and therefore its applicability to complex test cases. Furthermore, input turbulence statistics are varied, in order to investigate the impact of turbulence on the resulting sound pressure spectra for a swirl stabilised, technically premixed combustor.
机译:用于燃烧噪声预测的随机,混合计算流体动力学/计算燃烧声学方法应用于PRECCINSTA实验室燃烧室(工业燃气轮机中的燃烧不含者的预测和控制)。验证了数值方法,以便能够从测量中精确地再现宽带燃烧噪声水平。该方法基于计算流体动力学模拟的平均流场和湍流统计。用于燃烧噪声预测的三维快速随机颗粒方法用于模拟声源的时间分辨动态和通过线性的欧拉方程式的声音传播的建模。进行了对模拟声源动力学的综合分析,以便有助于理解燃烧噪声形成机制。由此,可以进一步加入所获得的知识,以纳入热声现象的发作。在局部单点统计投入的再现能力方面,分析了用于实现湍流相关源衰减的方法 - 固有的随机LangeVin Ansatz,因此其对复杂测试用例的适用性。此外,输入湍流统计变化,以研究湍流对涡旋稳定,技术预混燃烧器的所得声压光谱的影响。

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