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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Fuel Injection Scheme for a Compact Afterburner Without Flameholders
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Fuel Injection Scheme for a Compact Afterburner Without Flameholders

机译:不带火焰保持器的紧凑型加力燃烧室的燃油喷射方案

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摘要

State-of-the-art afterburners employ spray bars and flameholders to burn the fuel. Such afterburner designs significantly increase the length (and thus weight), pressure losses, and observability of the engine. This paper presents a feasibility study of a compact "prime and trigger" afterburner that eliminates the flameholders and, thus, eliminates the above-mentioned problems. In this concept, afterburner fuel is injected just upstream or in between the turbine stages. As the fuel travels through the turbine stages, it evaporates and mixes with the bulk flow without any significant heat release from combustion, a process referred to as "priming." Downstream of the turbine stages, combustion is initiated either through autoignition or by using a low power plasma radical generator to "trigger" the combustion process. The prime and trigger injection and ignition scheme has been investigated using an experimental setup that simulates the operating conditions in a typical gas turbine engine. In this study, a trigger was not used and combustion of the fuel was initiated by autoignition. In a parallel effort, a physics-based theoretical model of the priming stage was developed in order to predict the location of fuel autoignition. The theoretical predictions and the experimental measurements of temperature and CH~* chemiluminescence confirm the feasibility of the proposed prime and trigger concept by demonstrating the controlled autoignition of the afterburner fuel.
机译:最先进的加力燃烧器采用喷杆和火焰保持器来燃烧燃料。这样的加力燃烧器设计显着增加了发动机的长度(并因此增加了重量),压力损失和可观察性。本文提出了一种紧凑型“启动和触发”加力燃烧器的可行性研究,该消除器消除了火焰保持器,从而消除了上述问题。在此概念中,加力燃烧器燃料正好在涡轮级的上游或中间注入。当燃料通过涡轮级时,它蒸发并与大流量混合,而没有燃烧产生的大量热量释放,这一过程称为“引燃”。在涡轮机级的下游,通过自燃或通过使用低功率等离子体自由基发生器“触发”燃烧过程来启动燃烧。已经使用模拟典型燃气轮机发动机工况的实验装置研究了起动,点火和点火喷射方案。在这项研究中,没有使用扳机,而是通过自燃引发了燃料的燃烧。同时,开发了基于物理的启动阶段理论模型,以预测燃料自动点火的位置。温度和CH〜*化学发光的理论预测和实验测量通过演示加力燃烧器燃料的受控自燃,证实了提出的引发和触发概念的可行性。

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