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The Blunt Body Paradox - A Case for Transient Growth

机译:钝器悖论 - 一种瞬态生长的情况

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The 'blunt body paradox' refers to the early transition on spherical forebodies (even those that are highly polished) observed at supersonic and hypersonic freestream speeds both in flight and inwind tunnels. This transition occurs usually in the subsonic portion of the flow behind the bow shock wave (see for example Buglia 1961), a region of highly favorable pressure gradient that is stable to T-S waves. Surface cooling leads to even earlier transition. This phenomenon, identified in the mid-1950's, has defied clear explanation. It has always been prominent on Morkovin's list of unsolved problems. The tentative suggestions are generally roughness related since stagnation point boundary layers are very thin. But no connection has been made between the microscopic roughness on the surface and the features of the observed early transition such as location, sensitivity to surface temperature level, etc. This has led the present authors to seek an explanation through transient growth.
机译:“钝器悖论”是指在飞行和Inwind隧道中以超音速和超声波的自由流速观察到的球形前期(甚至那些高度抛光的那些)的早期过渡。这种过渡通常发生在凸轮冲击波后面的流动的子源部分中(参见例如Bulglia 1961),这是一种高良好的压力梯度的区域,其对T-S波是稳定的。表面冷却导致甚至早期过渡。这种现象在1950年代中期确定了,已经藐视明确的解释。它在Morkovin的未解决问题列表中始终突出。由于停滞点边界层非常薄,暂定的建议通常是粗糙度相关的。但是,在地面上的微观粗糙度和观察到的早期过渡的特征之间没有进行连接,例如地点,对表面温度水平的敏感性等。这导致了本作者通过瞬态生长寻求解释。

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