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中国沙漠 ›› 2024, Vol. 44 ›› Issue (4): 14-23.DOI: 10.7522/j.issn.1000-694X.2024.00006

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风沙跃移解析模型的建模思路及存在问题

梅凡民1(), 杨倩文1, 李旺1, 苏进2   

  1. 1.西安工程大学,环境与化学工程学院,陕西 西安 710048
    2.西安工程大学,理学院,陕西 西安 710048
  • 收稿日期:2023-12-08 修回日期:2024-01-06 出版日期:2024-07-20 发布日期:2024-08-29
  • 作者简介:梅凡民(1968—),男,陕西高陵人,博士,教授,主要从事风沙多相流力学与大气环境研究。E-mail: meifanmin@xpu.edu.cn
  • 基金资助:
    陕西省自然科学基金项目(2021JM-448)

An overview of analytical models of saltation

Fanmin Mei1(), Qianwen Yang1, Wang Li1, Jin Su2   

  1. 1.School of Environmental and Chemical Engineering /, Xi'an Polytechnic University,Xi'an 710048,China
    2.School of Science, Xi'an Polytechnic University,Xi'an 710048,China
  • Received:2023-12-08 Revised:2024-01-06 Online:2024-07-20 Published:2024-08-29

摘要:

以Bagnold模型、S?rensen模型和P?htz-Kok-Herrmann模型(PKH模型)为样本,分析了跃移通量解析模型的发展趋势、建模思路及存在问题。与Bagnold模型不同,Owen类模型的建模包括风廓线方程与颗粒群运动学特征方程的参数化求解等环节。S?rensen模型以反映气固耦合过程的跃移轨迹方程的参数化求解为主要的建模策略。PKH模型分别以气流动量传递方程、能量传递方程及风廓线方程的参数化求解为建模策略,在表观粗糙度、粒载切应力垂直衰减廓线及冲击起动的定量表达等方面取得了重要的进展。改进跃移观测的准确度、进一步理解跃移通量变化的峰值现象、充分考虑多尺度湍流对跃移通量的影响等,是发展解析模型的潜在途径。

关键词: 跃移通量, 风沙颗粒, 建模思路, 表观粗糙度, 粒载切应力

Abstract:

Several saltation models including Bagnold model, S?rensen model, and P?htz-Kok-Herrmann (PKH) model have been summarized by analyzing the development trend, model ideas, and problems. In contrast with Bagnold model, the Owen Type of saltation models just like S?rensen model and PKH model involve the parameterized solutions of wind profile equations over aeolian saltation layer and the parameterized motions of saltating particles. The S?rensen model is based on the parametric solution of the leapfrog trajectory equations reflecting the gas-solid coupling process as the main modeling strategy. More specifically and deeply, PKH model parameterizes the force and work rate balances; and the solution of wind profile equations; accordingly, providing new insights into apparent roughness, grain shear stress profile and impact threshold. The analytical saltation models can be improved by more accurate observations, reevaluation of saltation flux peaks, and parameterization of the effect of multi-scale wind on saltation flux.

Key words: saltation flux, aeolian saltating particle, model ideas, apparent roughness, airborne stress profile

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