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Post-Stall Lift Enhancement of a Flat Plate Airfoil by Suction

机译:通过吸力增强平板翼型的失速后升力

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The effect of suction on airfoil surface at various locations downstream of the leading-edge of a thin flat-plate airfoil was studied in a wind tunnel at a low Reynolds number. At post-stall angles of attack, substantial lift enhancement and delay of stall can be achieved if a large separation bubble is generated by reattaching the massively separated flow near the trailing-edge. The effects of location and volumetric flow rate of suction were investigated by means of force and velocity measurements. There is an optimal location of suction around x_s /c = 0.4, which generates the maximum lift coefficient for suction coefficients less than 3%. When suction is applied near the leading-edge, it may be easier to reattach the flow for small suction coefficients, but the resulting small separation bubble causes smaller lift increase. The size of the separation bubble is important, and small bubbles can even cause smaller lift enhancement than the separated flows due to the suction further downstream.
机译:在低雷诺数的风洞中研究了吸力对薄平板翼型前缘下游各个位置的翼型表面的影响。在失速后的迎角下,如果通过在后缘附近重新附着大量分离的水流而产生较大的分离气泡,则可以显着提高升力和延迟失速。吸力的位置和体积流量的影响通过力和速度测量进行了研究。在x_s / c = 0.4附近有一个最佳的吸力位置,当吸力系数小于3%时会产生最大升力系数。在前缘附近施加吸力时,可能会更容易以较小的吸力系数重新连接流,但由此产生的较小的分离气泡会导致较小的升力增加。分离气泡的大小很重要,并且由于向下游的抽吸作用,小气泡甚至可以引起比分离流小的提升力。

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