首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >OPTIMUM MULTI-NOZZLE CONFIGURATION FOR MINIMIZING THE RAYLEIGH INTEGRAL DURING HIGH-FREQUENCY TRANSVERSE INSTABILITIES
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OPTIMUM MULTI-NOZZLE CONFIGURATION FOR MINIMIZING THE RAYLEIGH INTEGRAL DURING HIGH-FREQUENCY TRANSVERSE INSTABILITIES

机译:最佳的多喷嘴配置,用于最小化高频横向稳定期间的瑞利积分

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摘要

This paper develops a formalism for optimizing nozzle location/configuration with respect to combustion stability of high-frequency transverse modes in a can combustor. The stability of these acoustically non-compact flames was assessed using the Rayleigh Integral (RI). Several key control parameters influence RI -flame angle, swirling strength, nozzle location, as well as nozzle location with respect to the acoustic mode shape. In this study, we consider a N-around-1 configuration such as typically used in a multi-nozzle can system and study the overall stability of this system for different natural transverse modes. Typically, such nozzles are distributed in a uniformly circular manner for which we study the overall RI and for cases where RI>0, we optimize the nozzle distribution that can reduce and minimize RI. For a fixed geometry such a circular configuration, the analysis shows how the flame's parameters must varv across the different nozzles, to result in a relatively stable system. Additionally, for a fixed set of flame parameters, the analysis also indicates the non-circular distribution of the N nozzles that minimizes RI. Overall, the analysis aims to provide insights on designing nozzle locations around the center nozzle for minimal amplification of a given transverse mode.
机译:本文开发了用于优化喷嘴位置/配置的形式主义,了解罐燃烧器中的高频横向模式的燃烧稳定性。使用瑞利积分(RI)评估这些声学上非紧凑的火焰的稳定性。几个关键控制参数影响Ri -Flame角度,旋转强度,喷嘴位置,以及相对于声模式形状的喷嘴位置。在这项研究中,我们考虑了一个N-1的配置,例如通常用于多喷嘴的型可以系统并研究该系统的整体稳定性,用于不同的自然横向模式。通常,这种喷嘴以均匀的圆形方式分布,我们研究了整个RI和用于RI> 0的情况,我们优化了可以减少和最小化RI的喷嘴分布。对于固定的几何形状如此循环配置,分析显示了火焰的参数必须如何在不同的喷嘴上varv,以导致相对稳定的系统。另外,对于固定的一组火焰参数,分析还表示最小化Ri的N个喷嘴的非圆形分布。总的来说,分析旨在提供关于在中心喷嘴周围设计喷嘴位置的见解,以最小的放大给定的横向模式。

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