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Flow Coefficient Behavior for Boundary Layer Bleed Holes and Slots

机译:边界层排气孔和槽的流动系数特性

摘要

An experimental investigation into the flow coefficient behavior for nine boundary layer bleed orifice configurations is reported. This test was conducted for the purposes of exploring boundary layer control through mass flow removal and does not address issues of stability bleed. Parametric data consist of bleed region flow coefficient as a function of Mach number, bleed plenum pressure, and bleed orifice geometry. Seven multiple hole configurations and two single slot configurations were tested over a supersonic Mach number range of 1.3 to 2.5 (nominal). Advantages gained by using multiple holes in a bleed region instead of a single spanwise slot are discussed and the issue of modeling an entire array of bleed orifices based on the performance of a single orifice is addressed. Preconditioning the flow approaching a 90 degree inclined (normal) hole configuration resulted in a significant improvement in the performance of the configuration. The same preconditioning caused only subtle changes in performance for a 20 degree inclined (slanted) configuration.
机译:报告了对九种边界层引流孔构型的流量系数特性的实验研究。进行该测试的目的是探索通过去除质量流来控制边界层,但并未解决稳定性渗漏的问题。参数数据包括作为马赫数,放气压力,放气孔几何形状的函数的放气区域流量系数。在1.3至2.5(标称值)的超音速马赫数范围内测试了七个多孔配置和两个单槽配置。讨论了通过在排放区域中使用多个孔而不是单个翼展方向槽获得的优势,并解决了基于单个孔的性能对整个排放孔阵列进行建模的问题。对接近90度倾斜(正常)孔构型的流体进行预处理可显着改善构型的性能。对于20度倾斜(倾斜)的配置,相同的预处理仅引起性能的细微变化。

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