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Three-dimensional structural characteristics of flow separation induced by a forward-facing step in a turbulent channel flow

机译:湍流通道流动前进步骤诱导流动分离的三维结构特征

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摘要

Separating and reattaching turbulent flows induced by a forward-facing step subjected to an incoming fully developed turbulent channel flow are studied using direct numerical simulation. The step height is one quarter of the channel height, and the Reynolds number based on friction velocity and half-channel height at the inlet is 180. The three-dimensional spatio-temporal characteristics of separation bubbles upstream and downstream of the step are analysed with particular attention to the effects of impinging hairpin structures and the topology of principal stretching. Immediately upstream of the step, the fluctuating vorticity parallel to the mean streamlines is significant. On the frontal surface of the step, strong spanwise skin friction appears in the form of alternating positive and negative values in vertical strips. Over the step, the principal stretching switches orientation along a curve emanating from the leading edge, which is termed the principal stretching line (PSL). The reverse flows upstream and downstream of the step possess dominant and harmonic frequencies that mirror those of the incoming flow. As a hairpin structure leans over the step, the associated vorticity is deformed by the principal stretching. Specifically, PSL marks the lower bound of the deformed hairpin legs, and an opposite-signed pair of counter-rotating quasi-streamwise vortices are induced near the top surface of the step. Consequently, the separation bubbles upstream of and over the step are enlarged and suppressed, respectively. For a sufficiently strong hairpin structure interacting with the step, an open-type separation occurs upstream of the step, while dual separation bubbles appear over the step.
机译:采用直接数值模拟的方法,研究了前向台阶在完全发展的湍流通道中诱导的分离和再附湍流。台阶高度为通道高度的四分之一,基于进口处摩擦速度和半通道高度的雷诺数为180。分析了台阶上游和下游分离气泡的三维时空特征,特别注意碰撞发夹结构和主拉伸拓扑的影响。紧靠台阶上游,平行于平均流线的波动涡度非常显著。在台阶的正面,沿翼展方向的强大表面摩擦力以垂直条带中正负交替的形式出现。在台阶上,主拉伸沿前缘发出的曲线切换方向,该曲线被称为主拉伸线(PSL)。阶梯上游和下游的逆流具有主频率和谐波频率,反映了流入流的频率。当发夹结构倾斜在台阶上时,相关的涡度因主拉伸而变形。特别地,PSL标记了变形的发夹腿的下限,并且在台阶顶面附近诱导了一对相反符号的反向旋转准流向涡。因此,台阶上游和台阶上方的分离气泡分别被放大和抑制。对于与台阶相互作用的足够强的发夹结构,台阶上游出现开放式分离,而台阶上方出现双重分离气泡。

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