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An experimental trace gas investigation of fluid transport and mixing in a circular-to-rectangular transition duct

机译:圆形到矩形过渡管道中流体传输和混合的微量气体实验研究

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摘要

An ethylene trace gas technique was used to map out fluid transport and mixing within a circular to rectangular transition duct. Ethylene gas was injected at several points in a cross stream plane upstream of the transition duct. Ethylene concentration contours were determined at several cross stream measurement planes spaced axially within the duct. The flow involved a uniform inlet flow at a Mach number level of 0.5. Statistical analyses were used to quantitatively interpret the trace gas results. Also, trace gas data were considered along with aerodynamic and surface flow visualization results to ascertain transition duct flow phenomena. Convection of wall boundary layer fluid by vortices produced regions of high total pressure loss in the duct. The physical extent of these high loss regions is governed by turbulent diffusion.
机译:使用乙烯微量气体技术绘制出从圆形到矩形过渡管道内的流体传输和混合图。在过渡管道上游的横流平面中的几个点处注入乙烯气体。在管道内沿轴向隔开的几个交叉流测量平面上确定乙烯浓度轮廓。该流动涉及马赫数水平为0.5的均匀入口流量。统计分析用于定量解释痕量气体的结果。此外,还考虑了痕量气体数据以及空气动力学和表面流可视化结果,以确定过渡管道的流动现象。涡流对壁边界层流体的对流在管道中产生了高总压力损失的区域。这些高损耗区域的物理范围由湍流扩散控制。

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