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AN INNOVATIVE DEVELOPMENT OF A FIVE-HOLE PRESSURE PROBE FOR HIGHLY UNSTEADY FLOW PHENOMENA

机译:用于高度不稳定的流量现象的五孔压力探头的创新开发

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An advanced unsteady multi-hole pressure probe is developed in cooperation between the Chair of Aerodynamics and Fluid Mechanics of the Technical University of Munich, the probe manufacturer Vectoflow GmbH and the sensor producer fos4X GmbH. The application of additive manufacturing enables a wide variation in probe geometries. The spatial characteristics of the unsteady probe are determined in the aerodynamic calibration in a known steady uniform jet. Furthermore, the acoustic system inside the channels of the probe is investigated experimentally in the dynamic calibration. Both aerodynamic and dynamic calibration ensure an accurate reconstruction of the velocity components. Measurements of the near wake of a circular cylinder have been recorded with the unsteady probe and compared to data from the literature and corresponding hotwire anemometry measurements. Further improvements to enhance the range of applications of the probe have been initiated: This includes the miniaturization of the probe. Moreover, an unsteady differential fiber-optic sensor and its optic and passive measurement principle are introduced which shall improve the main dynamic specifications of the probe. By combining the additive manufactured pressure probe design and the novel fiberoptic sensor, more accurate measurements of high frequency flow phenomena are expected.
机译:先进的不稳定多孔压力探头在主席空气动力学和慕尼黑技术大学,探头制造商Vectoflow GmbH的流体力学和传感器制造商fos4X有限公司之间的合作开发。添加剂制造的应用使得在探针的几何形状变化很大。非稳定探头的空间特性在以已知的稳定均匀的喷射气动校准确定。此外,探针的通道内的声学系统在动态校准实验研究。二者的空气动力学和动态校准确保速度分量的准确重建。一个圆形圆柱体的近尾迹的测量已被记录有不稳定探针和与来自文献的数据和对应的热线风速测量法测量。进一步的改进,以提高已经开始的探头的应用范围:这包括探测的小型化。此外,不稳定的差动光纤传感器和其镜片和无源测量原理引入其中应改善探测器的主动态规格。通过组合添加剂制造的压力探针设计和新颖光纤传感器,预期的高频流动现象更准确的测量。

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