首页> 外文期刊>Journal of geophysical research. Planets >Trajectories and energy transfer of saltating particles onto rock surfaces: Application to abrasion and ventifact formation on Earth and Mars
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Trajectories and energy transfer of saltating particles onto rock surfaces: Application to abrasion and ventifact formation on Earth and Mars

机译:轨迹和跳跃的能量转移粒子在岩石表面:应用程序磨损和风棱石形成地球上3

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摘要

The interaction between saltating sand grains and rock surfaces is assessed to gauge relative abrasion potential as a function of rock shape, wind speed, grain size, and planetary environment. Many kinetic energy height profiles for impacts exhibit a distinctive increase, or kink, a few centimeters above the surface, consistent with previous field, wind tunnel, and theoretical investigations. The height of the kink observed in natural and wind tunnel settings is greater than predictions by a factor of 2 or more, probably because of enhanced bouncing off hard ground surfaces. Rebounded grains increase the effective flux and relative kinetic energy for intermediate slope angles. Whether abrasion occurs, as opposed to simple grain impact with little or no mass lost from the rock, depends on whether the grain kinetic energy (E_G) exceeds a critical value (E_C), as well as the flux of grains with energies above E_C. The magnitude of abrasion and the shape change of the rock over time depends on this flux and the value of E G > E_C. Considering the potential range of particle sizes and wind speeds, the predicted kinetic energies of saltating sand hitting rocks overlap on Earth and Mars. However, when limited to the most likely grain sizes and threshold conditions, our results agree with previous work and show that kinetic energies are about an order of magnitude greater on Mars.
机译:跳跃沙粒之间的交互岩石表面的评估来衡量是相对的磨损潜在的岩石形状的函数,风速、晶粒尺寸和行星环境。表现出一种独特的增加,影响或扭结,几厘米以上的表面,符合之前的字段,风洞,理论研究。扭结观察自然和风洞设置大于2倍或预测,可能是因为增强反射硬底表面。有效的通量和相对动能对于中等坡度角。发生,而不是简单的谷物的影响很少或根本没有质量损失的岩石,取决于谷物动能(E_G)是否超过一个临界值(E_C),以及的通量谷物与能量E_C之上。磨损和岩石的形状改变时间的价值取决于这个通量和E G >E_C。大小和风速预测的动能能量跳跃砂敲击岩石重叠在地球和火星。最有可能的晶粒大小和阈值条件下,我们的结果同意以前的工作并展示动能的订单级大的火星上。

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