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首页> 外文期刊>Nonlinear Processes in Geophysics Discussions >Influence of stability on the flux-profile relationships for wind speed, iΦ/isubm/sub, and temperature, iΦ/isubh/sub, for the stable atmospheric boundary layer
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Influence of stability on the flux-profile relationships for wind speed, iΦ/isubm/sub, and temperature, iΦ/isubh/sub, for the stable atmospheric boundary layer

机译:稳定性对风速Φ m 和温度Φ h ,用于稳定的大气边界层

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摘要

Data from SABLES98 experimental campaign have been used in order to study the influence of stability (from weak to strong stratification) on the flux-profile relationships for momentum, Φm, and heat, Φh. Measurements from 14 thermocouples and 3 sonic anemometers at three levels (5.8, 13.5 and 32 m) for the period from 10 to 28 September 1998 were analysed using the framework of the local-scaling approach (Nieuwstadt, 1984a; 1984b), which can be interpreted as an extension of the Monin-Obukhov similarity theory (Obukhov, 1946). The results show increasing values of Φm and Φh with increasing stability parameter ζ=z/Λ, up to a value of ζ≈1–2, above which the values remain constant. As a consequence of this levelling off in Φm and Φh for strong stability, the turbulent mixing is underestimated when linear similarity functions (Businger et al., 1971) are used to calculate surface fluxes of momentum and heat. On the other hand when Φm and Φh are related to the gradient Richardson number, Ri, a different behaviour is found, which could indicate that the transfer of momentum is greater than that of heat for high Ri. The range of validity of these linear functions is discussed in terms of the physical aspects of turbulent intermittent mixing.
机译:为了研究稳定性(从弱分层到强分层)对动量Φm和热量Φh的通量分布关系的影响,使用了SABLES98实验活动的数据。使用局部缩放方法(Nieuwstadt,1984a; 1984b),可以分析1998年9月10日至28日在14个热电偶和3个声波风速计在三个水平(5.8、13.5和32 m)的测量结果。解释为莫宁-奥布科夫相似性理论的扩展(Obukhov,1946)。结果表明,随着稳定性参数ζ= z /Λ的增加,Φm和Φh的值增加,直到ζ≈1-2为止,在此之上,这些值保持恒定。由于为了稳定而使Φm和Φh趋于平稳,当使用线性相似函数(Businger等人,1971)计算动量和热的表面通量时,湍流混合被低估了。另一方面,当Φm和Φh与Richardson梯度Ri相关时,发现了不同的行为,这表明对于高Ri,动量传递大于热传递。这些线性函数的有效范围是根据湍流间歇混合的物理方面进行讨论的。

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