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Turbulence structure in the wake region of a meteorological Tower

机译:气象塔尾流区的湍流结构

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A meteorological tower significantly modifies the air flow, the mean wind speed and wind direction as well as the turbulence structure of the air. Such changes can be noticed in particular in the wake region of the tower. Measurements on the 200 m tower of Forschungszentrum Karlsruhe were carried out using Solent sonic anemometers in the lee of the tower and cup anemometers on both sides. In the wake region, spectral energy density is increased in the high-frequency range. Superposition of this disturbance spectrum on the undisturbed spectrum yields a 'knee' in the resulting spectrum. In the case of low turbulence intensity with stable stratification, a plateau with a constant energy content is observed in front of the knee. This effect is causedby the new production of turbulence energy from the mean flow as well as by an energy transfer from larger to smaller vortices. Power spectra in strongly stable conditions show a more rapid decrease of intensity in the region where the inertial subrangeis expected. The relevant scales of wake turbulence are derived from the maximum of the disturbance spectrum. Locations of the high-frequency peak do not depend on atmospheric stability, but are controlled mainly by mean wind speed. Apart from the reduction of the mean wind speed, the spectra and cospectra exhibit a strong anisotropy for such cases. The results demonstrate the significant influence of a tower on turbulence spectra in the wake region.
机译:气象塔极大地改变了气流,平均风速和风向以及空气的湍流结构。这种变化尤其可以在塔的尾流区域中注意到。使用塔身后部的Solent声波风速计和两侧的杯形风速计对Forschungszentrum Karlsruhe的200 m塔进行了测量。在唤醒区域中,频谱能量密度在高频范围内增加。该干扰谱在未干扰谱上的叠加会在结果谱中产生“拐点”。在湍流强度低且分层稳定的情况下,在膝盖前部会观察到能量含量恒定的高原。这种影响是由平均流中新产生的湍流能量以及从大涡流到小涡流的能量转移引起的。在非常稳定的条件下,功率谱显示出在预计有惯性子范围的区域中强度的下降更快。尾流的相关尺度是从扰动谱的最大值得出的。高频峰的位置不依赖于大气稳定性,而是主要由平均风速控制。除了平均风速的降低外,这种情况下的光谱和共谱表现出很强的各向异性。结果证明了塔对尾流区域湍流谱的显着影响。

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