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On the u* -U relationship in the stable atmospheric boundary layer over Arctic Sea Ice

机译:北极海冰稳定大气边界层的U * -u关系

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摘要

A relationship between the friction velocity u* and mean wind speed U in a stable atmospheric boundary layer (ABL) over Arctic sea ice was considered. To that aim, the observations collected during the Surface Heat Budget of the Arctic Ocean (SHEBA) experiment were used. The observations showed the so-called "hockey-stick" shape of the u* -U relationship, which consists of a slow increase of u* with increasing wind speed for U < U_(tr) and a more rapid almost linear increase of u* for U > U_(tr), where U_(tr) is the wind speed of transition between the two regimes. Such a relationship is most pronounced at the highest observational levels, namely at 9 and 14 m, and is also sharper when the air-surface temperature difference exceeds its average values for stable conditions. It is shown that the Monin-Obukhov similarity theory (MOST) reproduces the observed u* - U relationship rather well. This suggests that at least for the SHEBA dataset, there is no contradiction between MOST and the "hockey-stick" shape of the u* - U relationship. However, the SHEBA data, as well as the single-column simulations show that for cases with strong stability, u* significantly decreases with height due to the shallowness of the ABL. It was shown that when u* was assumed independent of height, the value of the normalized drag coefficient, i.e., of the so-called stability correction function for momentum, calculated using observations at a certain level, can be significantly underestimated. To overcome this, the decrease of u* with height was taken into account in the framework of MOST using local scaling instead of the scaling with surface fluxes. Using such an extended MOST brought the estimates of the normalized drag coefficient closer to the Businger-Dyer relation.
机译:考虑了摩擦速度U *和平均风速U之间的关系,在北极海冰中稳定的大气边界层(ABL)中。为此目的,使用了北冰洋(SHEBA)实验的地表热预算期间收集的观察。观察结果显示了U * -u关系的所谓的“曲棍球棒”形状,这包括u *的缓慢增加,随着U U_(TR),其中U_(TR)是两种方案之间的过渡风速。这种关系在最高的观察水平上最为明显,即在9和14米处,当空气表面温度差超过其平均值时也更清晰,以进行稳定的条件。结果表明,Monin-Obukhov相似性理论(大多数)再现了观察到的U * - 你的关系。这表明至少对于Sheba数据集,大多数和“曲棍球棒”形状之间没有矛盾的U * - U关系。然而,Sheba数据以及单列模拟表明,对于具有强稳定性的情况,U *由于ABL的浅薄而显着降低高度。结果表明,当U *与高度无关时,归一化拖曳系数的值,即使用在一定水平的观察结果计算的所谓的稳定性校正函数,可以显着低估。为了克服这一点,在大多数使用本地缩放而不是具有表面通量的缩放的框架中,考虑了U *的降低。使用这种延伸的最大将归一化拖动系数的估计较近较近汇编染色关系。

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  • 来源
    《Oceanographic Literature Review》 |2021年第6期|1194-1194|共1页
  • 作者

    D. Chechin;

  • 作者单位

    Obukhov Institute of Atmospheric Physics Russian Academy of Sciences Pyzevsky per. 3 Moscow 119017 Russian Federation;

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  • 正文语种 eng
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