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首页> 外文期刊>Experiments in Fluids >Particle-image velocimetry measurements of flow over interacting barchan dunes
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Particle-image velocimetry measurements of flow over interacting barchan dunes

机译:相互作用Barchan沙丘上流的粒子图像测速测量

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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 (V r, 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.
机译:Barchan沙丘是月牙形的月牙形沙丘,存在于许多自然环境中,可以单独出现也可以成群出现。这项研究使用高分辨率的粒子图像测速(PIV)实验,该实验使用固定床模型来检查Barchan沙丘相互作用对流场结构的影响。 Barchan沙丘模型是根据理想化的轮廓图创建的,其轮廓和尺寸基于先前对沙丘形态的实证研究。实验装置包括两个同轴对齐的Barchan沙丘模型,它们以不同的距离隔开。本文研究了两个体积比(V r ,上游沙丘:下游沙丘),分别为1.0和0.175。将模型放置在边界层风洞中,并通过PIV测量,沿Barchan的中心线,在平均流雷诺数下,沿壁-法线平面的平均流和湍流场进行流量量化。 59,000。上游的沙丘沙丘的存在对水流产生“保护作用”。下游沙丘的浮体侧的流量由上游沙丘形成的内部边界层以及上游沙丘背风自由剪切层散发出的湍流结构控制。在这两种体积比下,下游的沙丘沙背上都存在湍流,这是由于上游沙丘和下游沙丘的剪切层相互作用引起的。形成在上游沙丘背风处的剪切层的大小和大小都控制了这种相互作用,以及该剪切层与下游沙丘的凸台侧的接近程度。正确的正交分解(POD)分析表明,湍流动能的分布在相互作用的沙丘上转移到更高的模式(即较小的空间尺度),这也反映了背风自由剪切层在主导流场中的作用或将TKE重新分配到较小的规模。

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