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1.
In order to provide wind profiles for the microscale numerical simulation of wind farm with complex terrain,using the 100 m tower atmospheric turbulence observation experiment data in 2010 in Hebei Province offered by National Climate Center, the variation characteristics of wind profile under the different atmospheric stability conditions are analyzed, and the wind profile expression based on the local similarity theory is established. The results show that:(1) In spring, the occurrence probability of unstable stratification in the Hebei coastal area is as high as 28%, and the probability of stable stratification is more than 43% while, in summer, the probability of occurrence of unstable stratification is as high as 80% with a lower probability for stable stratification; and(2) for stable stratification, the characteristics of atmosphere change is dramatic in terms of the vertical direction, which need to be treated layer by layer.According to the atmospheric turbulence observation experiment data above, under stable stratification, the relationship between the dimensionless velocity gradient and the stability ζ can be expressed as 1 +βmζ, with βm changing with the height: βm takes 4.1-4.3 under 30 m, βm takes 4.6-4.7 between 30-50 m, and βm takes 6.3-6.7 over 50 m.  相似文献   

2.
Summary The topic of this study is the investigation of channelling of the airflow and the so-called counter-current within the area of Karlsruhe. These phenomena of a strong turning of the wind direction with respect to the height generally develop under conditions of stable stratification and are of great importance in air pollution modelling.First a case study of a channelling event with data from the 200 m high IMK-tower is analysed in detail. During this channelling event a deviation angle, i.e. a difference of the wind direction between the upper (200 m) and lower levels (40 m) of about 100° exists.In the second part, the data collected at the IMK-tower over a period of 16 years are used to evaluate from the climatological point of view the frequency of channelling events in conjunction with the meteorological conditions. Concerning the deviation angle it can be found that there is an increase of the mean deviation angle at the transition from unstable stratification to stable stratification, but only a slight dependence on the degree of stable stratification. In contrast a considerable dependence on the wind speed is found, i.e. there is a decrease of the deviation angle with increasing wind speed. The mean deviation angle for a gradient Richardson number Ri < 0 is about 10°, while for Ri > 0 this value increases up to 50°.Finally, numerical simulations are carried out with the meso-scale model KAMM. The simulated deviation angles are in good agreement with the observations. Especially from these simulations the dependence of the deviation angle on the wind speed can be explained.With 19 Figures  相似文献   

3.
本文主要讨论地形对天气系统的影响,研究了斜压大气中地形背风气旋的问题。用小参数法简化基本运动方程,利用青藏高原和落基山脉的实际地形,采用FFT的数值方法,考虑了不同地形、风切变、大气层结等诸因素对地形扰动的影响。结果表明:青藏高原和落基山脉东侧的地形扰动与统计结果较一致;层结对地形扰动的影响较敏感。  相似文献   

4.
小尺度对流的发展和环境间相互作用的一个近似分析   总被引:3,自引:0,他引:3  
巢纪平 《气象学报》1962,32(1):11-18
本文应用一个近似的模式,分析了大气中小尺度对流发展时和环境(平均运动)间的非线性相互作用。分析结果指出,对流除在不稳定和中性稳定层结条件下可以发展外,在稳定层结条件下也可以得到发展,并且扰动的振幅最后均趋于有限值。同时,由于扰动的发展,大气的平均状态也要发生改变,不论开始时大气的层结如何,最后均趋向于中性,而大气的平均风速最后一般都要减小。  相似文献   

5.
6.
为了研究风场对背风波的影响,针对边界层附近为弱稳定层结的背风波,建立了一个三维三层的理论模型和线性计算模式,分析了各层中风速和风向的变化对背风波特征的影响,揭示了气流过孤立山脉产生背风波的有利风场条件。结果表明:背风波的波长、振幅等特征对各层风速和风向的变化具有相当的敏感性,波长随着低、高层风速的增大而增大,随着中层风速的增大先减小后增大;振幅随着低、中层风速的增大先增大后减小,随着高层风速的增大而增大。此外,风速和上下层风向切变的增大均使背风波的形态逐渐由横波型转为辐散型,但是上下层风向的切变对背风波形态的影响比风速更为显著。  相似文献   

7.
利用地面观测资料、秒级探空资料结合WRF中尺度数值模式,对2016年6月25—26日江苏南部地区一次影响范围广、持续时间长的罕见辐射雾过程进行了数值模拟分析。结果表明:(1)雾区范围和气象要素数值模拟结果与实况基本一致;(2)低层超薄超强逆温为此次夏季雾的形成、发展和维持提供了稳定条件;(3)成雾前江苏南部地区白天出现的降水是夜间浓雾形成的重要水汽来源;(4)夜间地表辐射冷却作用是浓雾形成的重要因素;地面风速稳定低于2 m·s^-1,有利于浓雾的维持;日出后随着短波辐射增强风速增大、稳定层结破坏促使浓雾减弱消散。  相似文献   

8.
丁治英  陈久康 《气象科学》1994,14(4):344-353
本文通过1991年梅雨后期,7月1—13日200hPa非地转场分析得出,梅雨期200hPa非地转风主要由积云对流动量转换形成。其次是风速平流,并通过数值试验得以证明。非地转风形成的高层辐散,可进一步使暴雨增强与维持。另外梅雨期非均匀层结对非地转风及暴雨也有较大的影响。  相似文献   

9.
On the basis of improving the algorithm of the mixing length in and above forest canopies, a PBL numerical model including the multi-layer, heterogeneous vegetation is developed. Simulations indicate that different treatments of mixing length can make a great difference in the wind field especially for dense forest, and results from the improved mixing length scheme are in better agreement with observations than those from the original scheme. It may be expected that the improved mixing length scheme can lead to more ra-tional turbulent transfer than the original one. From the sensitivity experiments, we obtain the characteris-tics of both wind and temperature profiles in and above plant canopies, e.g., during the daytime, a stable thermal stratification exists near the surface in the canopies, but a neutral or slightly unstable condition ap-pears above plant canopies, while at night the reverse situations occur; the increase of the temperature of the dense-forest case is less than that of the sparse-forest case; the windspeed is reduced within the canopy lay-er and the large wind shear occurs near the treetop, etc.  相似文献   

10.
The solutions of downslope motions over a sloping terrain are solved analytically in terms of the atmos-pheric wave equations with a two-layer model.The physical meanings of the solutions are discussed.As thelower layer of the atmosphere is stable and deep with strong wind the solution represents strong downslopewind,while as the lower layer is strong stable with light wind the drainage flow is obtained.The dependenceof the strength of downslope motion on the atmospheric stratification,wind field structure as well as Scorerparameter is also examined.  相似文献   

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