首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >STRATOSPHERIC HORIZONTAL WAVENUMBER SPECTRA OF WINDS, POTENTIAL TEMPERATURE, AND ATMOSPHERIC TRACERS OBSERVED BY HIGH-ALTITUDE AIRCRAFT
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STRATOSPHERIC HORIZONTAL WAVENUMBER SPECTRA OF WINDS, POTENTIAL TEMPERATURE, AND ATMOSPHERIC TRACERS OBSERVED BY HIGH-ALTITUDE AIRCRAFT

机译:高空飞机观测到的风,势温度和大气示踪剂的水平大气水平波谱

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Horizontal wavenumber power spectra of vertical and horizontal wind velocities, potential temperatures, and ozone and N2O mixing ratios, as measured in the mid-stratosphere during 73 ER-2 flights (altitude approximate to 20 km) are presented. The velocity and potential temperature spectra in the 100 to 1-km wavelength range deviate significantly from the uniform -5/3 power law expected for the inverse energy-cascade regime of two-dimensional turbulence and also for inertial-range, three-dimensional turbulence. Instead, steeper spectra approximately consistent with a -3 power law are observed at horizontal scales smaller than 3 km for all velocity components as well as potential temperature. Shallower spectra are observed at scales longer than 6 km. For horizontal velocity and potential temperature the spectral indices at longer scales are between -1.5 and -2.0. For vertical velocity the spectrum at longer scales becomes flat. It is argued that the observed velocity and potential temperature spectra are consistent with gravity waves. At smaller scales, the shapes are also superficially consistent with a Lumley-Shur-Weinstock buoyant subrange of turbulence and/or nonlinear gravity waves. Contemporaneous spectra of ozone and N2O mixing ratio in the 100 to 1-km wavelength range do conform to an approximately uniform -5/3 power law. It is argued that this may reflect interactions between gravity wave air-parcel displacements and laminar or filamentary structures in the trace gas mixing ratio field produced by enstrophy-cascading two-dimensional turbulence. [References: 99]
机译:给出了在73次ER-2飞行(高度约20 km)平流层中层测得的垂直和水平风速,潜在温度以及臭氧和N2O混合比的水平波数功率谱。在100至1 km波长范围内的速度和潜在温度谱与二维湍流的逆能量级联状态以及惯性范围,三维湍流所期望的均匀-5/3幂定律显着偏离。取而代之的是,对于所有速度分量以及潜在温度,在小于3 km的水平尺度上观察到近似符合-3幂定律的更陡峭的光谱。在比6 km长的尺度上观察到更浅的光谱。对于水平速度和潜在温度,较长尺度的光谱指数在-1.5和-2.0之间。对于垂直速度,较长尺度的频谱变得平坦。有人认为,观测到的速度和潜在的温度谱与重力波一致。在较小的比例尺上,形状在表面上也与湍流和/或非线性重力波的Lumley-Shur-Weinstock浮力子范围一致。臭氧和N2O混合比在100至1公里波长范围内的同时光谱确实符合近似均匀的-5/3幂定律。有人认为,这可能反映了重力波空气包裹位移与由涡流级联的二维湍流产生的痕量气体混合比场中的层状或丝状结构之间的相互作用。 [参考:99]

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