Particle-image velocimetry measurements of flow over interacting barchan dunes

被引:0
作者
Jessica A. Palmer
Ricardo Mejia-Alvarez
James L. Best
Kenneth T. Christensen
机构
[1] University of Illinois,Department of Geology
[2] University of Illinois,Department of Mechanical Science and Engineering
[3] University of Illinois,Departments of Geology, Geography, Mechanical Science and Engineering and Ven Te Chow Hydrosystems Laboratory
[4] University of Illinois,Departments of Mechanical Science and Engineering, Aerospace Engineering and Geology
来源
Experiments in Fluids | 2012年 / 52卷
关键词
Shear Layer; Turbulent Kinetic Energy; Proper Orthogonal Decomposition; Reynolds Shear Stress; Proper Orthogonal Decomposition Mode;
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摘要
Barchan dunes are crescentic planform-shaped dunes that are present in many natural environments, and may occur either in isolation or in groups. This study uses high-resolution particle-image velocimetry (PIV) experiments using fixed-bed models to examine the effects of barchan dune interaction upon the flow field structure. The barchan dune models were created from an idealized contour map, the shape and dimensions of which were based upon previous empirical studies of dune morphology. The experimental setup comprised two, co-axially aligned, barchan dune models that were spaced at different distances apart. In this paper, two volumetric ratios (Vr, upstream dune: downstream dune) of 1.0 and 0.175 were examined. Models were placed in a boundary-layer wind tunnel and flow quantification was achieved via PIV measurements of the mean and turbulent flow field in the streamwise–wall-normal plane, along the centerline of the barchan(s), at an average flow Reynolds number of 59,000. The presence of an upstream barchan dune induces a “sheltering effect” on the flow. Flow on the stoss side of the downstream dune is controlled by the developing internal boundary layer from the upstream dune, as well as by the turbulent flow structures shed from the free shear layer of the upstream dune leeside. At both volumetric ratios, enhanced turbulence is present over the downstream barchan dune leeside, which is proposed to be caused by the interaction of shear layers from the upstream and downstream dunes. Both the size and magnitude of the shear layer formed in the leeside of the upstream dune control this interaction, together with the proximity of this shear layer to the stoss side of the downstream dune. Proper orthogonal decomposition (POD) analysis shows that the distribution of turbulent kinetic energy is shifted to higher modes (i.e., smaller spatial scales) over interacting barchan dunes, which also reflects the role of the leeside free shear layer in dominating the flow field by generation, or redistribution, of TKE to smaller scales.
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页码:809 / 829
页数:20
相关论文
共 76 条
[1]  
Adrian RJ(2000)Vortex organization in the outer region of the turbulent boundary layer J Fluid Mech 422 1-54
[2]  
Meinhart CD(2001)Large-scale modes of turbulent channel flow: transport and structure J Fluid Mech 448 53-80
[3]  
Tomkins CD(2002)Selection of dune shapes and velocities part 1: dynamics of sand, wind and barchans Eur Phys J B 28 321-339
[4]  
Adrian RJ(2005)The fluid dynamics of river dunes: a review and some future research directions J Geophys Res F: Earth Surf 110 F04S02-1699
[5]  
Liu Z-C(1998)Proper orthogonal decomposition and low-dimensional models for driven cavity flows Phys Fluids 10 1685-5
[6]  
Hanratty TJ(2005)Breeding and solitary wave behavior of dunes Phys Rev E-Stat, Nonlinear, Soft Matter Phys 72 1-647
[7]  
Andreotti B(2004)Observation of the whole process of interaction between barchans by flume experiments Geophys Res Lett 31 L12503-331
[8]  
Claudin P(2006)Mean flow, turbulence structure, and bed form superimposition across the ripple-dune transition Water Resour Res 42 W05406-178
[9]  
Douady S(1959)The barchans of southern Peru J Geol 67 614-49
[10]  
Best J(1967)The barchans of the Arequipa region, southern Peru Z Geomorphol 11 300-1130412