研究风洞中稀疏分布砾石运动的阈值风速:表面粗糙度的影响

IF 3.1 3区 地球科学 Q2 GEOGRAPHY, PHYSICAL
Yoshihide Tominaga , Toshihiro Okuyama
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引用次数: 1

摘要

在这项研究中,通过风洞实验来确定路面纹理与导致稀疏分布的砾石运动的阈值风速之间的关系。考虑到砾石的阈值速度太大,无法在典型风洞中模拟,我们提出了一种使用密度比实际砾石低的模拟颗粒的方法。我们首先进行了初步实验,证实了可以通过模拟粒子和原型粒子的密度比来估计密度较大的原型粒子的阈值速度。此外,由于浮石的颗粒密度小于砾石,因此对不同路面纹理进行了主要实验分析。结果表明,路面越粗糙,碎石运动的阈值速度越大。在数量上,最粗糙的沥青混凝土表现出的阈值速度是最光滑表面(水泥混凝土)的2.5倍。然而,表面粗糙度取决于颗粒的大小,而被表面间隙捕获的颗粒的影响比作用在相对粗糙表面的颗粒上的流体力更重要。对于光滑表面,这种力平衡是相反的,这表明可以从颗粒大小和表面纹理粗糙度确定阈值摩擦速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigating threshold wind velocity for movement of sparsely distributed gravels in a wind tunnel: Effect of surface coarseness

In this study, wind tunnel experiments were conducted to determine the relationship between the texture of road surfaces and the threshold wind velocity that causes the movement of sparsely distributed gravels. We proposed a method that uses analogous particles having lower densities compared to actual gravel, considering the threshold velocity for gravel is too large to imitate in a typical wind tunnel. We first conducted a preliminary experiment, which confirmed that the threshold velocity for denser prototype particles can be estimated from the density ratios of the analogous and prototype particles. Furthermore, a main experiment was conducted to analyze different road surface textures using pumice stones, as their particle density is less than that of gravels. The results showed that coarser road surfaces exhibited larger threshold velocities for the gravel movement. Quantitatively, the coarsest asphalt concrete exhibited a threshold velocity that was 2.5 times larger than that of the smoothest surface (cement concrete). However, surface coarseness was dependent on the particle size, whereas the effect of particles trapped by the gaps in surfaces was more dominant than the fluid force acting on the particles of a relatively coarse surface. This force balance is reversed for a smooth surface, which indicates the possibility of determining threshold friction velocity from the particle size and surface texture coarseness.

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来源期刊
Aeolian Research
Aeolian Research GEOGRAPHY, PHYSICAL-
CiteScore
7.10
自引率
6.10%
发文量
43
审稿时长
>12 weeks
期刊介绍: The scope of Aeolian Research includes the following topics: • Fundamental Aeolian processes, including sand and dust entrainment, transport and deposition of sediment • Modeling and field studies of Aeolian processes • Instrumentation/measurement in the field and lab • Practical applications including environmental impacts and erosion control • Aeolian landforms, geomorphology and paleoenvironments • Dust-atmosphere/cloud interactions.
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