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首页> 外文期刊>Journal of Mechanical Science and Technology >Experimental investigation of the effects of leading edge bluntness on supersonic flow over a double compression ramp
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Experimental investigation of the effects of leading edge bluntness on supersonic flow over a double compression ramp

机译:双压缩斜坡上超声波钝化对超声波流动影响的实验研究

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摘要

Understanding the flow characteristics over a double compression ramp is crucial for high-speed vehicle design. Leading edge bluntness is a key factor influencing the formation of a separation region on a double compression ramp flow. In the present study, the effect of bluntness on a double compression ramp is investigated experimentally at a nominal Mach number of 4. The test model has 13 degrees and 40 degrees inclinations with respect to the freestream. Five different levels of leading-edge radius, varying from 0.0 to 2.0 mm, were subjected to supersonic wind tunnel tests. Shadowgraph and infrared thermography techniques were employed to visualize the flow features of the double ramp model. Measurements of surface heat-transfer along the centerline of the test model were obtained from the acquired infrared images. It is shown that the leading-edge radius alters the separation characteristics as well as the surface heat-transfer. Possible reasons for such flow characteristics are discussed.
机译:了解双压缩斜坡上的流动特性对于高速车辆设计至关重要。前沿钝性是影响双压缩斜坡流动形成分离区域的关键因素。在本研究中,在实验上以标称马赫数研究了钝性对双压缩斜坡上的效果。试验模型具有13度和40度相对于FreeStream的倾斜度。五个不同级别的前缘半径,从0.0至2.0 mm之间变化,经受超声波风洞测试。影像图和红外热成像技术用于可视化双斜坡模型的流动特征。从所获得的红外图像获得沿着测试模型的中心线的表面传热的测量。结果表明,前缘半径改变了分离特性以及表面热转印。讨论了这种流动特性的可能原因。

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