对流边界层的平均风和位温通量廓线

IF 3 3区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES Journal of the Atmospheric Sciences Pub Date : 2023-08-01 DOI:10.1175/JAS-D-22-0159.1
Luoqin Liu, Srinidhi N. Gadde, R. Stevens
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引用次数: 1

摘要

本文提出了对流边界层平均风通量和位温通量的解析表达式。由于地球表面被太阳辐射加热,CBLs经常在白天被观测到。因此,他们的建模与天气预报、气候建模和风能应用相关。对于以对流滚转为主状态的CBLs,混合层体区的平均速度和势温近似均匀。我们利用地表和逆温层的水平均匀和准平稳特征,采用微扰方法,提出了归一化位温通量剖面作为高度函数的解析表达式。混合层和夹带区的速度分布是基于所提出的位温通量分布和对流对数摩擦律的见解构建的。结合著名的莫宁-奥布霍夫相似理论,我们可以获得整个边界层高度上的速度剖面。在−L/z0∈[3.6 × 102,0.7 × 105]范围内,所提出的剖面与大涡模拟结果非常吻合,其中L为奥布霍夫长度,z0为粗糙度长度。
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The Mean Wind and Potential Temperature Flux Profiles in Convective Boundary Layers
We develop innovative analytical expressions for the mean wind and potential temperature flux profiles in convective boundary layers (CBLs). CBLs are frequently observed during daytime as Earth’s surface is warmed by solar radiation. Therefore, their modeling is relevant for weather forecasting, climate modeling, and wind energy applications. For CBLs in the convective-roll-dominated regime, the mean velocity and potential temperature in the bulk region of the mixed layer are approximately uniform. We propose an analytical expression for the normalized potential temperature flux profile as a function of height, using a perturbation method approach in which we employ the horizontally homogeneous and quasi-stationary characteristics of the surface and inversion layers. The velocity profile in the mixed layer and the entrainment zone is constructed based on insights obtained from the proposed potential temperature flux profile and the convective logarithmic friction law. Combining this with the well-known Monin–Obukhov similarity theory allows us to capture the velocity profile over the entire boundary layer height. The proposed profiles agree excellently with large-eddy simulation results over the range of −L/z0 ∈ [3.6 × 102, 0.7 × 105], where L is the Obukhov length and z0 is the roughness length.
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来源期刊
Journal of the Atmospheric Sciences
Journal of the Atmospheric Sciences 地学-气象与大气科学
CiteScore
0.20
自引率
22.60%
发文量
196
审稿时长
3-6 weeks
期刊介绍: The Journal of the Atmospheric Sciences (JAS) publishes basic research related to the physics, dynamics, and chemistry of the atmosphere of Earth and other planets, with emphasis on the quantitative and deductive aspects of the subject. The links provide detailed information for readers, authors, reviewers, and those who wish to submit a manuscript for consideration.
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