Force Calibration of a Hemispherical Model Using Reddy Shock Tube

Samprada S. Kumbhare, Devyani Kumar Kundurthi, J. Sura, G. Joshi
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Abstract

Shock tube study is done to understand the characteristic behavior of various types of shock wave, pressure and temperature variations observed at hypersonic speed. To study these characteristics in an inexpensive and simplified way, an instrument called Reddy Shock tube was designed, also known as Table-Top shock tube. Shock waves are generated purely by the application of manual force. In the test section, a flow of Mach upto 6.5 is generated. The attempt here was made to calculate force acting on a hemispherical model at hypersonic flow regime. It is an impulse facility, where the flow operates only for a fractional second. The pressure transducers were used to characterize the shock wave properties. Similarly, an accelerometer was connected to the model, which determined the acceleration value required to find the axial force.
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用Reddy激波管标定半球形模型的力
对激波管进行了研究,以了解在高超声速下观察到的各种类型激波、压力和温度变化的特征行为。为了以一种廉价和简化的方式研究这些特性,设计了一种称为Reddy激波管的仪器,也称为桌面激波管。冲击波纯粹是由人工施加的力产生的。在试验段中,产生了高达6.5马赫的气流。本文试图在高超声速流态下计算作用在半球形模型上的力。这是一个脉冲装置,其中的流体只运行一小部分秒。利用压力传感器对冲击波特性进行了表征。同样地,一个加速度计连接到模型上,它确定了求轴向力所需的加速度值。
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