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Method and apparatus for reducing pressure fluctuations in supersonic wind tunnel circuit

机译:减小超音速风洞回路压力波动的方法和装置

摘要

The operating efficiency of a compressor in the range of low Mach numbers at a supersonic wind tunnel test section (for which a considerable flow rate is required) is emphasized, and a design is provided in which pressure fluctuations can be reduced in a supersonic flow and also can be reduced in a supersonic wind tunnel circuit capable of operating at the required Mach number. Pressure fluctuations of flow brought about by inefficient operation can be reduced by operating an axial compressor 9 at a higher operating efficiency in the presence of a tunnel circuit resistor than the operating efficiency determined by the operating state theoretically calculated based on the Mach number required at a test section 19 in the absence of the tunnel circuit resistor. The Mach number at the test section can be made to conform to the required Mach number by causing the stream produced by the axial compressor 9 to pass through the tunnel circuit resistor such as a mesh plate 20 mounted in the tunnel circuit. The mesh plate 20 itself is effective for reducing pressure fluctuations and noise in the flow.
机译:强调了在超音速风洞试验段(要求相当大的流量)下在低马赫数范围内的压缩机的运行效率,并且提供了一种设计,在该设计中,可以减小超音速流中的压力波动和在能够以所需马赫数运行的超音速风洞电路中,也可以减少这种情况。通过使轴向压缩机 9 在存在隧道电路电阻器的情况下以比根据理论计算得出的运行状态所确定的运行效率更高的运行效率运行,可以减少由效率低下的运行引起的流量压力波动。在没有隧道电路电阻的情况下,测试部分 19 所需的马赫数。通过使轴向压缩机 9 产生的流穿过隧道电路电阻器(例如网孔板 20),可以使测试部分的马赫数符合所需的马赫数。 安装在隧道电路中。筛板 20 本身对减少压力波动和流动中的噪音有效。

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