...
首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >A flow field study of an elliptic jet in cross flow using DPIV technique
【24h】

A flow field study of an elliptic jet in cross flow using DPIV technique

机译:使用DPIV技术的横流椭圆射流流场研究

获取原文
获取原文并翻译 | 示例
           

摘要

The digital particle image velocimetry (DPIV) technique has been used to investigate the flow fields of an elliptic jet in cross flow (EJICF). Two different jet orientations are considered; one with the major axis of the ellipse aligned with the cross flow (henceforth referred to as a low aspect ratio (AR) jet), and the other with the major axis normal to the cross flow (henceforth referred to as a high aspect ratio jet). Results show that the vortex-pairing phenomenon is prevalent in the low aspect ratio jet when the velocity ratio (VR)greater than or equal to3, and is absent in the high aspect ratio jet regardless of the velocity ratio. The presence of vortex pairing leads to a substantial increase in the leading-edge peak vorticity compared to the lee-side vorticity, which suggests that vortex pairing may play an important role in the entrainment of ambient fluid into the jet body, at least in the near-field region. In the absence of vortex pairing, both the leading-edge and the lee-side peak vorticity increase monotonically with velocity ratio regardless of the aspect ratio. Moreover, time-averaged velocity fields for both AR=0.5 and AR=2 jets reveal the existence of an "unstable focus" (UF) downstream of the jet, at least for VRgreater than or equal to2. The strength and the location of this focus is a function of both the velocity ratio and aspect ratio. In addition, time-averaged vorticity fields show a consistently higher peak-averaged vorticity in the low aspect ratio jet than in the high aspect ratio jet. This behavior could be due to a higher curvature of the vortex filament facing the cross flow in the low aspect ratio jet, which through mutual interaction may lead to higher vortex stretching, and therefore higher peak-averaged vorticity.
机译:数字粒子图像测速(DPIV)技术已被用于研究椭圆射流在横流(EJICF)中的流场。考虑了两种不同的喷射方向;一个椭圆的长轴与横流对齐(此后称为低长宽比(AR)射流),另一个长轴垂直于横流(此后称为高长宽比的射流) )。结果表明,当速度比(VR)大于或等于3时,低纵横比射流中普遍存在涡流配对现象,而与速度比无关,在高纵横比射流中则不存在这种现象。与背风侧的涡流相比,涡流对的存在会导致前沿峰值涡流的显着增加,这表明涡流对可能至少在喷射流中夹带环境流体起着重要作用。近场区域。在没有涡流配对的情况下,无论长宽比如何,前缘和背侧峰值涡度均随速度比而单调增加。而且,至少对于VR大于或等于2,AR = 0.5和AR = 2的射流的时间平均速度场揭示了在射流的下游存在“不稳定焦点”(UF)。该焦点的强度和位置是速度比和纵横比的函数。此外,时间平均涡度场在低长宽比射流中的峰值平均涡度始终高于高长宽比射流。此行为可能是由于在低长宽比的射流中面对交叉流的涡流丝的曲率较高,这通过相互相互作用可能导致更高的涡流拉伸,从而导致更高的峰均涡度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号