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首页> 外文期刊>International Journal of Natural and Engineering SciencesbElectronic resource >Empirical and Numerical Study of Solidity Effects on Pressure Coefficient and Velocity Distribution of Axial Compressor Blades
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Empirical and Numerical Study of Solidity Effects on Pressure Coefficient and Velocity Distribution of Axial Compressor Blades

机译:固体对轴流压气机叶片压力系数和速度分布的影响的经验和数值研究

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摘要

In the present research, the axial compressor blade’s cascade was analyzed in terms of numerical and experimental conditions. The model included three rotor blades of an axial compressor with the same geometry and profile of NGTE 10C4/30C5 and parallel to the ratio of solidity values, e.g. 1.2 and 0.8, have been studied. The experiments were done in a subsonic wind tunnel and, before it, the reforms in the output of a wind tunnel to install a new test section, suitable for cascade testing, were designed and then built. The necessary measures also for the possibility of a hot-wire probe crossing from the wind tunnel wall and its moving on the surface of the blades has been adopted. The suction and pressure surfaces of the test blade have been equipped to the suitable tapping of the pressure to be connected through the connector tubes to the pressure transducers. The suction and pressure surface velocity profiles in different longitudinal situations and distribution of surface pressure were measured. Parallel with the experiments, the numerical analysis of current also for different modes has been performed and the results compared. In a total sum can be said: by increasing the solidity, namely reducing the blades distance, the pressure reduces and the velocity will increase. According to the continuity equation can be said with increasing the solidity the input and output area ratio decreased and considering to the reverse relation of the area ratio with velocity, the velocity increases.
机译:在本研究中,根据数值和实验条件对轴流压气机叶片的叶栅进行了分析。该模型包括一台轴流压缩机的三个转子叶片,它们具有与NGTE 10C4 / 30C5相同的几何形状和轮廓,并且平行于例如已经研究了1.2和0.8。实验是在亚音速风洞中进行的,在此之前,设计并建造了风洞输出的改革,以安装一个适合级联测试的新测试段。还采取了必要的措施,以防止热线探针从风洞壁穿过并在叶片表面上移动。测试刀片的吸力和压力表面已经配备了合适的压力输出,可以通过连接管连接到压力传感器。测量了不同纵向情况下的吸力和压力表面速度曲线以及表面压力的分布。与实验并行,还对不同模式的电流进行了数值分析,并比较了结果。总的来说可以说:通过增加坚固性,即减小叶片距离,压力减小,速度将增加。根据连续性方程可以说,随着密度的增加,输入和输出面积比减小,并且考虑到面积比与速度的反比关系,速度增加。

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