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Pressure Response in Supersonic Wind‐Tunnel Pressure Instrumentation

机译:超音速风洞压力仪表中的压力响应

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摘要

In the development of high‐speed aircraft, rockets, missles, etc., wind‐tunnel pressure measurements at supersonic velocities are necessary to determine certain aerodynamic characteristics. Because of the lack of knowledge concerning the proper choice of parameters in the design of pressure instrumentation, the response time has been known to exceed the running time in the case of the intermittent tunnel. Pressure systems consisting of an orifice, a capillary tube, a length of connecting tubing, and a pressure‐sensitive element connected in series are analyzed. The time required for the pressure in the pressure‐sensitive element to reach within 1 percent of the equilibrium pressure is defined as the response time of the system. Experiments are conducted to determine the effect of the various geometric and dynamic parameters on the response time. Analytical solutions of the flow equations by numerical integration are carried out for the special case of a length of capillary tubing connected to the pressure‐sensitive element for three different inside diameters. The data indicate that the response time can be maintained within acceptable limits for present‐day supersonic wind‐tunnel installations by proper choice of the geometric and dynamic parameters. The agreement between theory and experiment, being quite satisfactory for the special case solved analytically, indicated that the approximations in the derived flow equations are justified.
机译:在高速飞机,火箭,导弹等的发展中,必须以超音速测量风洞压力,以确定某些空气动力特性。由于缺乏有关压力仪表设计中正确选择参数的知识,因此在间歇隧道的情况下,响应时间超过了运行时间。分析了由孔口,毛细管,一段连接管和串联的压敏元件组成的压力系统。压敏元件中的压力达到平衡压力的1%以内所需的时间定义为系统的响应时间。进行实验以确定各种几何和动态参数对响应时间的影响。对于在三种不同内径下连接到压敏元件的毛细管长度的特殊情况,通过数值积分进行了流动方程的解析解。数据表明,通过适当选择几何和动态参数,可以将响应时间保持在当今超音速风洞装置的可接受范围内。理论和实验之间的一致性,对于解析解决的特殊情况非常令人满意,表明导出的流动方程中的近似是合理的。

著录项

  • 来源
    《Journal of Applied Physics 》 |1953年第11期| 共12页
  • 作者

    Ducoffe Arnold L.;

  • 作者单位

    University of Michigan, Ann Arbor. Michigan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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