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Research on the combined heating method using dual subsonic gas flow of high and middle temperature for thermal test of tip wedge structure

机译:中高温双亚音速气流联合加热法对尖端楔形结构进行热试验的研究

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Serious thermal stress problem of the alloy tip wedge structure is simulated under the typical hypersonic condition of Mach number 6, which is caused by the big temperature distribution gradient of the structure along the flow direction. The root cause of the big temperature distribution gradient is the large difference of the average heat flux density between in the head zone and in the rare flat zone, but the distribution form of the heat flux density in the head zone. From which a novel combined heating method using dual subsonic gas low of high and middle temperature is put forward. The numerical simulation shows that by respectively adjusting the temperature of dual flow, the method can meet the requirement of the big temperature gradient simulation along the tip wedge structure.
机译:在典型的马赫数为6的高超声速条件下,模拟了合金尖端楔形结构的严重热应力问题,这是由于结构沿流动方向的温度分布梯度较大所致。温度分布梯度大的根本原因是头部区域和稀有平坦区域之间的平均热通量密度相差较大,但是头部区域内的热通量密度的分布形式却不同。从中提出了一种新型的利用高中低温双亚音速气体的联合加热方法。数值模拟表明,通过分别调节双流温度,该方法可以满足沿尖端楔形结构的大温度梯度模拟的要求。

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