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Analysis of unstable vortical structure in a propeller wake affected by a simulated hull wake

机译:受模拟船体尾流影响的螺旋桨尾流中不稳定涡旋结构的分析

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A two-frame PIV (particle image velocimetry) technique was used to investigate the flow characteristics of a complicated propeller wake influenced by a hull wake. As the propeller is significantly affected by the hull wake of a marine vessel, measurements of the propeller wake under the hull wake are certainly needed for more reliable validation of numerical predictions. Velocity field measurements were conducted in a cavitation tunnel with a simulated hull wake. Generally, the hull wake generated by the hull of a marine ship may cause different loading distributions on the propeller blade in both the upper and the lower propeller planes. The unstable propeller wake caused by the ship’s hull was interpreted in terms of turbulent kinetic energy (T KE) to obtain useful information for flow modeling. The unstable or unsteady phenomenon in the upper propeller wake was identified by using the proper orthogonal decomposition (POD) method to characterize the coherent flow structure with turbulent kinetic energy. Strong unsteadiness appeared in the second and higher modes, largely affecting the downstream flow characteristics. The first eigenmode can be used to appropriately identify the tip vortex positions even in the unstable downstream region, which are helpful for establishing reliable wake modeling.
机译:两帧PIV(粒子图像测速)技术用于研究受船体尾流影响的复杂螺旋桨尾流的流动特性。由于螺旋桨受到船舶船体尾迹的显着影响,因此肯定需要对船体尾迹下的螺旋桨尾迹进行测量,以更可靠地验证数值预测。在具有模拟船体尾流的空化隧道中进行速度场测量。通常,由海洋船的船体产生的船体尾流会在螺旋桨叶片的上,下螺旋桨平面中引起不同的载荷分布。用湍流动能(T KE )解释了由船体引起的不稳定的螺旋桨尾流,以获得有用的流动模型信息。采用适当的正交分解(POD)方法,利用湍动能表征相干流结构,确定了螺旋桨尾流中的不稳定或不稳定现象。在第二和更高模式中出现了强烈的不稳定状态,在很大程度上影响了下游的流动特性。即使在不稳定的下游区域中,第一特征模式也可用于正确识别尖端涡旋位置,这有助于建立可靠的尾流建模。

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