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Experimental investigation of turbulent flow through a circular-to-rectangular transition duct

机译:流经圆形至矩形过渡管道的实验研究

摘要

Steady, incompressible, turbulent, swirl-free flow through a circular-to-rectangular transition duck was studied experimentally. The cross-sectional area remains the same at the exit as at the inlet, but varies through the transition section to a maximum value approximately 15 percent above the inlet value. The cross-sectional geometry everywhere along the duct is defined by the equation of a superellipse. Mean and turbulence data were accumulated utilizing pressure and hot-wire instrumentation at five stations along the test section. Data are presented for operating bulk Reynolds numbers of 88,000 and 390,000. Measured quantities include total and static pressure, the three components of the mean velocity vector, and the six components of the Reynolds stress tensor. In addition to the transition duct measurements, a hot-wire technique which relies on the sequential use of single rotatable normal and slant-wire probes was proposed. The technique is applicable for measurement of the total mean velocity vector and the complete Reynolds stress tensor when the primary flow is arbitrarily skewed relative to a plane which lies normal to the probe axis of rotation.
机译:实验研究了从圆形到矩形过渡鸭的平稳,不可压缩,湍流,无涡流。出口处的横截面积与入口处的横截面积相同,但在过渡段中变化至最大值,比入口值大15%。沿管道各处的横截面几何形状由超椭圆方程定义。利用压力和热线仪器在沿测试区域的五个站点上收集了平均和湍流数据。所提供的雷诺数为88,000和390,000。测得的量包括总压力和静压力,平均速度矢量的三个分量以及雷诺应力张量的六个分量。除了过渡导管测量之外,还提出了一种热线技术,该技术依赖于单个可旋转法线和斜线探头的顺序使用。当主流相对于垂直于探头旋转轴的平面任意倾斜时,该技术适用于测量总平均速度矢量和完整的雷诺应力张量。

著录项

  • 作者

    Davis David O.;

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  • 年度 1991
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