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Influence of Curvature and Pressure Gradient on Turbulent Wake Development in Curved Channels

机译:曲率和压力梯度对弯道湍流尾迹发展的影响

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摘要

The development of steady wake flow downstream of a cylindrical rod within a curved channel under the influence of positive, negative, and zero streamwise pressure gradients is theoretically and experimentally investigated. The measured asymmetric wake quantities, such as the mean velocity, turbulent fluctuations in longitudinal and lateral directions, and the turbulent shear stress, are transformed from the probe coordinate system into the curvilinear wake coordinate system. For the transformed nondimensionalized velocity defect and the turbulent quantities, affine profiles are observed throughout the flow regime. Based on the experimental observations and using the transformed equations of motion and continuity, a theoretical framework that generally describes a two-dimensional curvilinear steady wake flow is developed. The theory treats the straight wake flow as a special case for which the curvature radius approaches infinity. A comparison of the developed theory with our own experimental results and with the reevaluated experimental data from the literature establishes the general validity of the theory.
机译:理论上和实验上研究了在正,负和零流向压力梯度的影响下,弧形通道内圆柱杆下游的稳定尾流的发展。测得的非对称尾迹量(例如平均速度,纵向和横向方向的湍流波动以及湍流剪应力)从探针坐标系转换为曲线尾迹坐标系。对于转换后的无量纲速度缺陷和湍流量,在整个流态中都可以看到仿射轮廓。基于实验观察结果,并使用变换后的运动和连续性方程,建立了一个通常描述二维曲线稳定尾流的理论框架。该理论将直尾流视为曲率半径接近无穷大的特例。将已发展的理论与我们自己的实验结果以及文献中重新评估的实验数据进行比较,可以确定该理论的一般有效性。

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