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Wind-invariant saltation heights imply linear scaling of aeolian saltation flux with shear stress

机译:风不变的盐分高度意味着风切变盐分通量与剪切应力成线性比例关系

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Wind-driven sand transport generates atmospheric dust, forms dunes, and sculpts landscapes. However, it remains unclear how the flux of particles in aeolian saltation—the wind-driven transport of sand in hopping trajectories—scales with wind speed, largely because models do not agree on how particle speeds and trajectories change with wind shear velocity. We present comprehensive measurements, from three new field sites and three published studies, showing that characteristic saltation layer heights remain approximately constant with shear velocity, in agreement with recent wind tunnel studies. These results support the assumption of constant particle speeds in recent models predicting linear scaling of saltation flux with shear stress. In contrast, our results refute widely used older models that assume that particle speed increases with shear velocity, thereby predicting nonlinear 3/2 stress-flux scaling. This conclusion is further supported by direct field measurements of saltation flux versus shear stress. Our results thus argue for adoption of linear saltation flux laws and constant saltation trajectories for modeling saltation-driven aeolian processes on Earth, Mars, and other planetary surfaces.
机译:风力驱动的沙子运输会产生大气尘埃,形成沙丘并雕刻景观。然而,尚不清楚风沙盐化过程中颗粒通量(风在跳跃轨迹中由风驱动的沙子)如何随风速变化,这在很大程度上是因为模型关于风速和风速如何改变颗粒速度和轨迹并不一致。我们提供了来自三个新的野外地点和三个已发表研究的综合测量结果,表明与最近的风洞研究相一致,特征性盐层高度随剪切速度保持大致恒定。这些结果支持了最近的模型中恒定颗粒速度的假设,该模型预测了盐分通量与剪切应力的线性比例关系。相反,我们的结果反驳了广泛使用的较旧模型,这些模型假定粒子速度随剪切速度而增加,从而预测非线性3/2应力通量缩放。盐分通量与切应力的直接现场测量进一步支持了这一结论。因此,我们的结果主张采用线性盐分通量定律和恒定盐分轨迹来模拟地球,火星和其他行星表面上盐分驱动的风成过程。

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