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The Role of Wake Production on the Scaling Laws of Scalar Concentration Fluctuation Spectra Inside Dense Canopies

机译:醒觉生产对密集冠层内标量浓度波动谱标度定律的作用

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摘要

The scalar concentration fluctuations within a plane parallel-to-the-ground surface were measured inside a model canopy composed of densely arrayed rods using the laser-induced fluorescence technique. Two-dimensional scalar concentration spectra werecomputed and were shown to exhibit an approximate —3 power-law scaling at wavenum-bers larger than those associated with wake production during quiescent instances when von Karman vortex streets dominated the flow. However, during instances when sweepsdisrupted the flow, the spectral exponents increased above —3. The —3 power-law for these concentration fluctuation spectra measurements was shown to be consistent with a simplified spectral budget for locally homogeneous and isotropic turbulence augmented with a relaxation time scale similarity argument that assumed a constant enstrophy injection rate and wake generation mechanism. Hence, the origin of this —3 power-law scaling here differs from the well-known —3 power-law result for the so-calledinertial diffusive range derived for the scalar concentration spectrum at small Prandtl numbers.
机译:使用激光诱导荧光技术,在由密集排列的杆组成的模型顶篷内部,测量了与地面平行的平面内的标量浓度波动。计算了二维标量浓度谱,并显示了在静止级von Karman涡街占据主导地位的静态情况下,波幅上的尾波功率比与尾波产生相关的功率幂比大约为-3。但是,在吹扫使流动中断的情况下,谱指数增加到高于-3。这些浓度波动谱测量的-3幂律被证明与局部均质和各向同性湍流的简化谱预算相一致,并以弛豫时间尺度相似性论点为前提,该论证假设恒定的涡旋注入速率和尾流产生机理。因此,这里的-3幂律定标的起源与众所周知的对于惯性扩散范围的-3幂律结果不同,所谓惯性扩散范围是为标量浓度谱在小普朗特数下得出的。

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