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Influence of the saffman force, lift force, and electric force on sand grain transport in a wind-sand flow

机译:沙夫曼力,升力和电力对风沙流中沙粒运输的影响

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摘要

Quasi-horizontal trajectories of salting sand grains were found using high-speed video-recording in the desertified territory of the Astrakhan region. The sizes and displacement velocities of the saltating sand grains were determined. A piecewise logarithmic approximation of the wind profile in a quasi-stationary wind-sand flow is suggested, which is consistent with the data of observations and modeling. It was established that, in the regime of stationary saltation, the wind profile in the lower saltation layer of the wind-sand flow depends only slightly on the wind profile variations in the upper saltation layer. The vertical profiles of the horizontal wind component gradient in a quasi-stationary wind-sand flow were calculated and plotted. It was shown using high-speed video recording of the trajectory of a sand grain with an approximate diameter of 95 mu m that the weightlessness condition in the desertified territory of the Astrakhan region in a stationary wind-sand flow is satisfied at a height of approximately 0.15 mm. The electric parameters of a wind-sand flow, which can provide for compensation of the force of gravity by the electric force, were estimated. In particular, if the specific charge of a sand grain is 100 mu C/kg, the force of gravity applied to the sand grain can be compensated by the electric force if the vertical component of the electric field in a wind-sand flow reaches approximately 100 kV/m. It was shown that the quasi-horizontal transport of sand grains in the lower millimeter saltation layer observed in the desertified territory can be explained by the joint action of the aerodynamic drag, the force of gravity, the Saffman force, the lift force, and the electric force.
机译:利用高速视频记录在阿斯特拉罕地区的沙漠化地区中发现了盐沙粒的准水平轨迹。确定了盐化沙粒的大小和位移速度。建议在准平稳风沙流中风剖面的分段对数近似,这与观测和建模数据一致。已经确定,在固定盐分作用下,风沙流的下部盐分层中的风廓线仅略微取决于上部盐分层中的风廓线变化。计算并绘制了准静态风沙流中水平风分量梯度的垂直剖面。通过对大约直径为95μm的沙粒轨迹进行高速视频记录,可以看出,在稳定的风沙流中,阿斯特拉罕地区沙漠化地区的失重条件得到了满足0.15毫米估计了可以通过重力补偿重力的风沙流的电参数。特别地,如果沙粒的比电荷为100μC/ kg,则如果风沙流中的电场的垂直分量达到约20μm,则可以通过电力来补偿施加到沙粒上的重力。 100 kV /米。结果表明,在沙漠化地区观察到的下部盐分盐层中沙粒的准水平输送可以用气动阻力,重力,萨夫曼力,升力和水力的共同作用来解释。电力。

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  • 来源
    《Doklady Earth Sciences》 |2016年第1期|314-319|共6页
  • 作者单位

    Russian Acad Sci, Obukhov Inst Atmospher Phys, Pyzhevskii Per 3, Moscow 119017, Russia;

    Russian Acad Sci, Obukhov Inst Atmospher Phys, Pyzhevskii Per 3, Moscow 119017, Russia;

    Russian Acad Sci, Obukhov Inst Atmospher Phys, Pyzhevskii Per 3, Moscow 119017, Russia;

    Russian Acad Sci, Obukhov Inst Atmospher Phys, Pyzhevskii Per 3, Moscow 119017, Russia;

    Russian Acad Sci, Obukhov Inst Atmospher Phys, Pyzhevskii Per 3, Moscow 119017, Russia;

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