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Design of a continuous portable indraft supersonic wind tunnel

机译:设计连续便携式陷入铁艺超声波风洞

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摘要

Programs in mechanical and aeronautical engineering commonly include courses in compressible fluid flow. As such, learning can be greatly enhanced if theory is taught in conjunction with hands on experimentation. While supersonic wind tunnels are not uncommon at many universities, such facilities are generally of the blow down configuration. Consequently, run time is very short and ear protection is required during operation, potentially hindering instruction. Furthermore, blow down configurations are typically expensive and large. This article presents the design and manufacture of a continuous, indraft, miniature supersonic wind tunnel. The tunnel was designed for a nominal test section Mach number of 2; validation indicated a Mach number of 1.96 was achieved. Vacuum was provided by a regenerative blower. The facility is portable and quiet; measurements indicated that the sound level around the tunnel when operational was less than 81 dB (compared to 119dB generated by the department’s blow down supersonic wind tunnel).
机译:机械和航空工程方案通常包括可压缩流体流动的课程。因此,如果理论与实验相结合,可以大大提高学习。虽然在许多大学的超音速风隧道并不少见,但这些设施通常是吹击配置。因此,运行时间非常短,在操作期间需要耳朵保护,可能妨碍指令。此外,吹吹配置通常昂贵且大。本文介绍了连续,indraft,微型超声隧道的设计和制造。隧道设计用于标称试验部分2号码2;验证表明,实现了1.96的马赫数。通过再生鼓风机提供真空。该设施便携,安静;测量表明,当操作时隧道周围的声级小于81 dB(与由部门吹动超声波风洞产生的119dB相比)。

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