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首页> 外文期刊>Experiments in Fluids >Indirect measurements of streamwise solid fraction variations of granular flows accelerating down a smooth rectangular chute
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Indirect measurements of streamwise solid fraction variations of granular flows accelerating down a smooth rectangular chute

机译:间接测量沿光滑矩形斜槽加速的颗粒流的沿流固体分数变化

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摘要

In this study, we detail a method for estimating the flux-averaged solid fraction of a steady granular flows moving down an inclined rectangular chute using velocity measurements from along the perimeter cross section, combined with knowledge of the mass flow rate through the cross section. The chute is 5 cm wide and 150 cm long with an adjustable inclination angle. Four inclination angles, from 27° to 36° at 3° intervals, are tested. This angle range overlaps the internal friction angle of the glass beads, which are 4 mm nominal in diameter. Two slender mirrors are installed at the top and the bottom of the transparent chute to reflect images of the flow down the chute of the two surfaces. This allows photographic recording of the flow with a PIV imaging system and measurement of the flow depth. The mass flow rate can be calibrated simultaneously by collecting the accumulated mass at the chute exit. A linear interpolation scheme is proposed to interpolate the volume flow rate in each section of the chute. Sensitivity analysis suggests that the relative standard deviation of this scheme is about ±6%, i.e., the resultant solid volume fraction is only moderately dependent on the interpolation scheme for the tested cases. This is further confirmed by a direct intercepting method. Compared to the sophisticated magnetic resonance imaging (MRI) or the radioactive positron emission particle tracking (PEPT) methods, the present method is verified as a cost-effective and nonhazardous alternative for ordinary laboratories. Two distinct groups of streamwise dependence of the solid fractions are found. They are separated by the inclination angle of the chute and agreed with the internal friction angle. In the experiments using the two smaller inclination angles, the solid fraction ratios are found to be linear functions of the streamwise distance, while for the two larger inclination angles, the ratios have a nonlinear concave shape. All decrease with growing downstream distance.
机译:在这项研究中,我们详细介绍了一种方法,该方法使用沿周边横截面的速度测量结果,结合通过横截面的质量流量的知识,估算在倾斜的矩形斜槽上向下移动的稳定颗粒流的​​平均通量固体含量。斜槽宽5厘米,长150厘米,倾斜角度可调。测试了三个倾斜角度,从27°到36°,间隔为3°。该角度范围与玻璃珠的内摩擦角重叠,玻璃内摩擦角的公称直径为4 mm。在透明斜槽的顶部和底部安装了两个细长镜,以反射沿两个表面的斜槽向下流动的图像。这允许使用PIV成像系统对流量进行照相记录并测量流量深度。通过收集在溜槽出口处积累的质量,可以同时校准质量流率。提出了一种线性插值方案来插值斜槽各部分中的体积流量。敏感性分析表明,该方案的相对标准偏差约为±6%,即,对于测试案例,所得固体体积分数仅适度取决于插值方案。通过直接拦截方法进一步证实了这一点。与复杂的磁共振成像(MRI)或放射性正电子发射粒子跟踪(PEPT)方法相比,本方法被证明是普通实验室的一种经济高效且无害的替代方法。发现了固体组分的两个不同的流向依赖性组。它们由滑道的倾斜角隔开,并与内部摩擦角一致。在使用两个较小的倾斜角的实验中,发现固含量比是流向距离的线性函数,而对于两个较大的倾斜角,该比例具有非线性凹形。随着下游距离的增加,所有这些减少。

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