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首页> 外文期刊>Journal of engineering for gas turbines and power: Transactions of the ASME >Industrial trent combustor-combustion noise characteristics
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Industrial trent combustor-combustion noise characteristics

机译:工业特伦特燃烧室-燃烧噪声特性

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Thermoacoustic resonance is a difficult technical problem that is experienced by almost all lean-premixed combustors. The Industrial Trent combustor is a novel dry-low-emissions (DLE) combustor design, which incorporates three stages of lean premixed fuel injection in series. The three stages in series allow independent control of two stages-the third stage receives the balance of fuel to maintain the desired power level-at all power conditions. Thus, primary zone and secondary zone temperatures can be independently controlled. This paper examines how the flexibility offered by a 3-stage lean premixed combustion system permits the implementation of a successful combustion noise avoidance strategy at all power conditions and at all ambient conditions. This is because at a given engine condition (power level and day temperature) a characteristic ''noise map" can be generated on the engine, independently of the engine running condition. The variable distribution of heat release along the length of the combustor provides an effective mechanism to control the amplitude of longitudinal resonance modes of the combustor. This approach has allowed the Industrial Trent combustion engineers to thoroughly "map out" all longitudinal combustor acoustic modes and design a fuel schedule that can navigate around regions of combustor thermoacoustic resonance. Noise mapping results are presented in detail, together with the development of noise prediction methods (frequency and amplitude) that have allowed the noise characteristics of the engine to be established over the entire operating envelope of the engine. References: 6
机译:热声共振是一个棘手的技术问题,几乎所有稀薄预混燃烧室都会遇到这个问题。工业遄达燃烧室是一种新颖的干低排放 (DLE) 燃烧室设计,它结合了三个阶段的稀薄预混合燃料喷射串联。串联的三个级允许独立控制两个级 - 第三级接收燃料平衡以保持所需的功率水平 - 在所有功率条件下。因此,可以独立控制初级区和次级区温度。本文研究了 3 级稀薄预混燃烧系统提供的灵活性如何允许在所有功率条件和所有环境条件下实施成功的燃烧噪声规避策略。这是因为在给定的发动机条件(功率水平和日间温度)下,可以在发动机上生成一个特征性的“噪声图”,而与发动机运行条件无关。热量释放沿燃烧室长度的可变分布为控制燃烧室纵向共振模式的幅值提供了一种有效的机制。这种方法使工业遄达燃烧工程师能够彻底“绘制”所有纵向燃烧室声学模式,并设计出可以在燃烧室热声共振区域周围导航的燃料时间表。详细介绍了噪声映射结果,并开发了噪声预测方法(频率和幅度),这些方法允许在发动机的整个工作范围内建立发动机的噪声特性。[参考文献: 6]

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