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Parametric study of low-profile vortex generators

机译:低剖面涡发生器的参数研究

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Vortex generators (VGs) are flow control devices employed to avoid or delay flow separation. In most cases, the VG is calculated with the same height as the boundary layer (BL) thickness at the device position. However, these so-called conventional VGs may produce overload drag in some applications. The low-profile VGs can decrease the residual drag linked to this kind of passive flow control actuators. The main goal of the present work is to investigate the trajectory and size of the primary vortex produced by low-profile VGs on a flat plate with a height to length ratio of 1/2 and a vane incident angle of 18.5. Hence, numerical simulations have been performed using Navier Stokes equations at Re = 1350 based on the local boundary layer thickness where the VG was placed. Additionally, a prediction model has been developed to describe the progression of the vortex size behind the passive vanes. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:涡流发生器(VG)是用于避免或延迟流分离的流量控制设备。在大多数情况下,VG的计算高度与器件位置处的边界层(BL)厚度相同。但是,这些所谓的常规VG在某些应用中可能会产生过载阻力。低矮的VG可以减少与这种被动式流量控制执行器相关的残余阻力。本工作的主要目的是研究平板高度为1/2且叶片入射角为18.5的低剖面VG产生的初级涡旋的轨迹和大小。因此,基于放置VG的局部边界层厚度,使用Navier Stokes方程在Re = 1350处进行了数值模拟。另外,已经开发了预测模型来描述被动叶片后面的涡流大小的变化。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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