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Schlieren visualization of micro gas turbine exhaust plume with different shapes of nozzle

机译:Schlieren用不同形状的微型燃气轮机排气羽流的Schlieren可视化

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Schlieren visualization of the plume ejected from the microgas turbine nozzle was conducted to understand infrared signal characteristics of various shapes of the exhaust nozzle. At the same time, the precise temperature distribution and infrared signal measurement were performed and compared. The maximum thrust of the microgas turbine used in the experiment is 230 N, the maximum speed of revolution is 108,500 rpm, and the maximum exhaust gas temperature is 750 °C. Seven nozzles were used for this experiment which included a cone nozzle, five square nozzles with aspect ratios (AR) ranging from 1 to 5 and an S-shaped nozzle with aspect ratio 6. The infrared signal emitted from the exhaust plume decreased as the aspect ratio increased. Schlieren flow visualization images show that cone nozzle had a uniform flow pattern, while square nozzle had a bright triangle pattern in the dispersed plume. As the aspect ratio of square nozzles increased, a bright triangle pattern reduced in size. On comparing Schlieren visualization with the temperature distribution, it can be understood that the triangular shape of core plume plays a major role in the temperature diffusion with the surrounding air. Based on the temperature distribution and the results of the Schlieren visualization, three types of exhaust plume models are suggested. These three models are homogenous plume, intermediate plume and two-dimensional plume with hot core, which correspond to the cone nozzle, the AR2 square nozzle and AR5 square nozzle, respectively.
机译:通过从微磁涡轮机喷嘴喷射的羽流的Schlieren可视化以了解排气喷嘴各种形状的红外信号特性。同时,进行精确的温度分布和红外信号测量并进行比较。实验中使用的微磁涡轮机的最大推力是230 n,最大速度速度为108,500rpm,最大排气温度为750℃。七个喷嘴用于该实验,该实验包括锥形喷嘴,具有宽高比(AR)的五个方形喷嘴,范围为1至5和具有纵横比6的S形喷嘴。从排气羽流发射的红外信号随着方面而减小比率增加。 Schlieren流量可视化图像显示锥形喷嘴具有均匀的流动图案,而方形喷嘴在分散的羽流中具有明亮的三角形图案。随着方形喷嘴的纵横比增加,尺寸减小了明亮的三角形图案。在将Schlieren可视化与温度分布的比较时,可以理解的是,核心羽流的三角形形状在与周围空气的温度扩散中起主要作用。基于温度分布和Schlieren可视化的结果,提出了三种类型的排气羽流模型。这三种型号是具有热芯的均匀羽流,中间羽流和二维羽流,其对应于锥形喷嘴,AR2方形喷嘴和AR5方形喷嘴。

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