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Symmetry breaking of azimuthal thermo-acoustic modes in annular cavities: a theoretical study

机译:环形腔中方位热声模的对称破坏:理论研究

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Many physical problems containing rotating symmetry exhibit azimuthal waves, from electromagnetic waves in nanophotonic crystals to seismic waves in giant stars. When this symmetry is broken, clockwise (CW) and counter-clockwise (CCW) waves are split into two distinct modes which can become unstable. This paper focuses on a theoretical study of symmetry breaking in annular cavities containing a number N of flames prone to azimuthal thermo-acoustic instabilities. A general dispersion relation for non-perfectly-axisymmetric cavities is obtained and analytically solved to provide an explicit expression for the frequencies and growth rates of all azimuthal modes of the configuration. This analytical study unveils two parameters affecting the stability of the mode: (i) a coupling strength corresponding to the cumulative effects of the N flames and (ii) a splitting strength due to the symmetry breaking when the flames are different. This theory has been validated using a 3D Helmholtz solver and good agreement is found. When only two types of flames are introduced into the annular cavity, the splitting strength is found to depend on two parameters: the difference between the two burner types and the pattern used to distribute the flames along the azimuthal direction. To first order, this theory suggests that the most stable configuration is obtained for a perfectly axisymmetric configuration. Therefore, breaking the symmetry by mixing different flames cannot improve the stability of an annular combustor independently of the flame distribution pattern.
机译:从纳米光子晶体中的电磁波到巨星中的地震波,许多包含旋转对称性的物理问题都表现出方位角波。当这种对称性被破坏时,顺时针(CW)和逆时针(CCW)波被分成两个不同的模式,这些模式可能变得不稳定。本文着重于在环形腔中对称破裂的理论研究,该腔中包含N个容易产生方位角热声不稳定性的火焰。获得了非完美轴对称腔的一般色散关系,并对其进行了解析求解,从而为该配置的所有方位模的频率和增长率提供了明确的表达式。该分析研究揭示了两个影响模式稳定性的参数:(i)与N个火焰的累积效应相对应的耦合强度,以及(ii)在火焰不同时由于对称破坏而产生的分裂强度。该理论已经使用3D亥姆霍兹求解器进行了验证,并且发现了很好的一致性。当仅将两种火焰引入环形腔时,发现分裂强度取决于两个参数:两种燃烧器类型之间的差异以及用于沿方位角方向分布火焰的模式。首先,该理论表明,对于完全轴对称的配置,可以获得最稳定的配置。因此,通过混合不同的火焰来破坏对称性不能独立于火焰分布模式而提高环形燃烧器的稳定性。

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