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Experimental Measurements of Starting Loads and Model Behaviors in the Indraft Supersonic Wind Tunnel

机译:超音速风洞中启动载荷和模型行为的实验测量

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Measurements of starting load in the indraft supersonic wind tunnel of Muroran Institute of Technology were conducted for Mach 2, 3 and 4 conditions with the AGARD-B model. The high-speed photographs covering the behaviors of the wind tunnel model from the start to end of the operation were taken. Those photographs make clear that the oscillations of the model coincide with the measured starting load oscillation and starting loads were caused by two shock waves. The first shock wave is the reflection shock, generated at the nozzle throat by expansion wave reflection. The second wave is comprised asymmetric oblique shock waves (AOS) coming from upstream. AOS can generate asymmetric conical shock (ACS) around the nose cone of the model, which would have directly caused the starting loads on the wind tunnel model. Based on these observations, propose a conical shock theory, as an alternative starting load prediction theory instead of the normal shock theory.
机译:使用AGARD-B模型,对室兰理工学院的超音速风洞吸气中的2、3和4马赫数条件下的启动载荷进行了测量。拍摄了从运行开始到运行结束时覆盖风洞模型行为的高速照片。这些照片清楚地表明,模型的振动与测得的起始载荷振动一致,并且起始载荷是由两个冲击波引起的。第一冲击波是通过膨胀波反射在喷嘴喉部产生的反射冲击。第二波包括来自上游的非对称斜向冲击波(AOS)。 AOS可以在模型的鼻锥周围产生非对称圆锥形冲击(ACS),这将直接引起风洞模型的起始载荷。基于这些观察结果,提出了圆锥形冲击理论,作为替代正常启动理论的替代性起始载荷预测理论。

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