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Spatial resolution of a chemiluminescence sensor for local heat-release rate and equivalence ratio measurements in a model gas turbine combustor

机译:用于模型燃气轮机燃烧室中局部放热率和当量比测量的化学发光传感器的空间分辨率

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摘要

The spatial resolution of a Chemiluminescence Sensor, based on focused Cassegrain optics, to detect the location of the reaction zone and heat-release rate in a model gas turbine combustor is reported. The sensor measures simultaneously the chemiluminescent intensities from OH* and CH* excited radicals in flames in order to obtain information on the local flame characteristics. The spatial resolution was evaluated by a combined theoretical and experimental study in laminar and turbulent flames and was supported by detailed chemistry calculations, including the chemiluminescent species, of unstrained one-dimensional flames. The experimental study involved simultaneous measurements of chemiluminescence with the sensor and laser-based reaction rate imaging, using the product of OH and CH2O radicals obtained from planar laser-induced fluorescence (PLIF), and OH PLIF for the location of the reaction zone. The study quantified the influence of flame shape and dimensions and the direction of traverse of the focal region of the sensor through the flames on the spatial resolution, thereby identifying the limitations and optimising the applicability of the sensor. The sensor was used to obtain local time-dependent measurements of heat-release and equivalence ratio of a reacting mixture, based on the chemiluminescent intensity ratio of OH*/CH*, in a swirl-stabilised model gas turbine combustor and quantified the degree of air–fuel premixedness, probability of reaction and power spectra of pressure and chemiluminescent intensity fluctuations in two unsteady flames.
机译:据报道,基于聚焦的卡塞格伦光学系统的化学发光传感器的空间分辨率可检测模型燃气轮机燃烧室中反应区的位置和放热率。传感器同时测量火焰中OH *和CH *激发自由基的化学发光强度,以获得有关局部火焰特性的信息。通过对层流和湍流火焰的理论和实验研究相结合,对空间分辨率进行了评估,并得到了详细的化学计算(包括化学发光物质)对未应变的一维火焰的详细计算支持。实验研究涉及使用传感器和化学反应同时测量化学发光和基于激光的反应速率成像,使用从平面激光诱导荧光(PLIF)和OH PLIF获得的OH和CH 2 O自由基的产物反应区的位置。这项研究量化了火焰形状和尺寸以及传感器焦点区域穿过火焰的移动方向对空间分辨率的影响,从而确定了局限性并优化了传感器的适用性。基于OH * / CH *的化学发光强度比,该传感器用于在稳定涡旋的模型燃气轮机燃烧器中获得反应混合物的放热和当量比的局部时间相关测量值,并量化空气-燃料的预混性,反应的可能性以及两个不稳定火焰中压力和化学发光强度波动的功率谱。

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