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Improvement and Application of the Similarity Saltation Model: Wind-Tunnel Experimental Investigation and Numerical Simulation of the Vertical Sand Mass Flux Distribution in the Saltation Layer

机译:相似盐分模型的改进与应用:盐分层垂直沙体通量分布的风洞试验研究与数值模拟

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摘要

Based upon comparisons between published experimental data and simulated results on the vertical sand flux distribution in the saltation layer, Shao’s similarity saltation model has been greatly improved by correcting the average vertical particle lift-off velocity and using a more suitable universal roughness length. By the improved model, the vertical sand flux profile over the bare, dry and loose uniform sandy surface, which is quite representative of real desert surfaces, can be reproduced very well. Meanwhile, the surface transport rate and the characteristic and average saltation heights have been simulated and analyzed in detail, disclosing their relationships with friction velocity, particle size and roughness length, and the possible underlying mechanisms. Besides, the average particle lift-off velocity and the average mean vertical aerodynamic action upon the ascending particle, which determine the saltation process, are explicitly expressed by parameters involved in the similarity model, and their relationships with friction velocity, particle size and roughness length are also described concisely. The corrected average particle lift-off velocity makes it possible to investigate the characteristic particle trajectory, whose initial velocity equals the average lift-off velocity, so as to estimate the average particle against surface impacting velocity and the average aerodynamic action upon the saltation process.
机译:根据已发表的实验数据与盐层中垂直砂通量分布的模拟结果之间的比较,邵平的相似性盐分模型通过校正平均垂直颗粒提离速度并使用更合适的通用粗糙度长度而得到了大大改善。通过改进的模型,可以很好地再现裸露的,干燥的和疏松的均匀砂质表面上的垂直砂通量分布图,该分布可以很好地再现真实的沙漠表面。同时,对表面传输速率以及特征化和平均盐化高度进行了详细的模拟和分析,揭示了它们与摩擦速度,粒径和粗糙度长度的关系,以及可能的潜在机理。此外,由相似模型所涉及的参数以及与摩擦速度,粒径和粗糙度长度之间的关系明确表示了确定盐析过程的平均颗粒提离速度和对上升颗粒的平均平均垂直空气动力学作用。也简要介绍。校正后的平均颗粒提起速度使得可以研究特征颗粒轨迹,其初始速度等于平均提起速度,从而估计平均颗粒相对于表面撞击速度和盐分过程中的平均空气动力学作用。

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