首页> 外文OA文献 >Spectral enstrophy budget in a shear-less flow with turbulent/non-turbulent interface
【2h】

Spectral enstrophy budget in a shear-less flow with turbulent/non-turbulent interface

机译:带有湍流/非湍流界面的无剪切流中的光谱总涡旋预算

摘要

A numerical analysis of the interaction between decaying shear free turbulence and quiescent fluid is performed by means of global statistical budgets of enstrophy, both, at the single-point and two point levels. The single-point enstrophy budget allows us to recognize three physically relevant layers: a bulk turbulent region, an inhomogeneous turbulent layer, and an interfacial layer. Within these layers, enstro- phy is produced, transferred, and finally destroyed while leading to a propagation of the turbulent front. These processes do not only depend on the position in the flow field but are also strongly scale dependent. In order to tackle this multi-dimensional behaviour of enstrophy in the space of scales and in physical space, we analyse the spectral enstrophy budget equation. The picture consists of an inviscid spatial cascade of enstrophy from large to small scales parallel to the interface moving towards the interface. At the interface, this phenomenon breaks, leaving place to an anisotropic cascade where large scale structures exhibit only a cascade process normal to the interface thus reducing their thickness while retaining their lengths parallel to the interface. The observed behaviour could be relevant for both the theo- retical and the modelling approaches to flow with interacting turbulent/nonturbulent regions. The scale properties of the turbulent propagation mechanisms highlight that the inviscid turbulent transport is a large-scale phenomenon. On the contrary, the viscous di↵usion, commonly associated with small scale mechanisms, highlights a much richer physics involving small lengths, normal to the interface, but at the same time large scales, parallel to the interface.
机译:通过单点和两点水平上的总涡流统计预算对衰减的自由湍流和静态流体之间的相互作用进行了数值分析。单点涡旋预算使我们能够识别三个与物理相关的层:整体湍流区,不均匀湍流层和界面层。在这些层中,产生了引诱物,将其转移并最终被破坏,同时导致湍流锋面的传播。这些过程不仅取决于流场中的位置,而且很大程度上取决于比例。为了解决在尺度空间和物理空间中这种涡旋的多维行为,我们分析了频谱涡旋预算方程。图片由与界面向界面移动平行的,从大尺度到小尺度的无形的涡旋空间级联组成。在界面处,此现象破裂,留给各向异性的级联结构,在该级联结构中,大型结构仅表现出垂直于界面的级联过程,从而在保持其长度与界面平行的同时减小了其厚度。观察到的行为对于与相互作用的湍流/非湍流区域流动的理论和建模方法都可能是相关的。湍流传播机制的尺度性质凸显出无粘性的湍流输运是一种大规模现象。相反,通常与小尺度机制相关的粘性扩散突出了一个更丰富的物理学,涉及到与界面垂直的小长度,但同时与界面平行的大尺度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

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