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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Wind tunnel observations of weak and strong snow saltation dynamics
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Wind tunnel observations of weak and strong snow saltation dynamics

机译:风洞观测弱和强大的雪盐水

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Theoretical considerations suggest that saltation dynamics is dominated by either aerodynamic entrainment or by a combination of ejection and rebound at a given time and location. Calling these two regimes weak and strong saltation, respectively, we have investigated high-resolution snow mass flux measurements by shadowgraphy in a cold wind tunnel to determine whether these two regimes can be experimentally reproduced. In this contribution, we first suggest that aerodynamic entrainment should lead to a negative correlation in the growth rates of horizontal versus vertical mass fluxes, while for the ejection regime, a positive correlation is plausible. Based on this criterion, we find evidence of weak and strong saltation in our data. Weak saltation is characterized by smaller peaks of horizontal mass flux; however, these peaks have a higher growth rate and therefore are typically narrow. The larger peaks are associated with strong saltation, are wider, and their frequency of occurrence increases with increasing overall saltation mass flux.
机译:理论考虑表明,盐化动力学由空气动力学夹带或通过在给定时间和位置的弹出和反弹的组合来支配。呼吁这两种制度弱和强烈的盐化,我们已经通过阴影在冷风隧道中调查了高分辨率的雪地质量磁通测量,以确定这两个方面是否可以通过实验再现。在这一贡献中,我们首先建议空气动力学夹带应导致水平与垂直质量通量的生长速率的负相关,而对于喷射方案,正相关是合理的。根据这一标准,我们发现我们的数据中疲软和强烈盐化的证据。弱盐的特征在于水平质量磁通量的较小峰;然而,这些峰具有较高的生长速率,因此通常窄。较大的峰与强盐化有关,较宽,它们的发生频率随着总体盐化质量通量的增加而增加。

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