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Harkins W.D., Ewing D.T.'s An Apparent High Pressure Due to Adsorption, the Heat of PDF

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Extra info for An Apparent High Pressure Due to Adsorption, the Heat of Adsorption, and the Density of Gas-M[...]co

Example text

Outline. This study is organized into three main parts that discuss (I) nonintrusive flow measurement techniques for the coincident data acquisition of velocity and mass, (II) the time-mean flow characteristics of shallow turbulent wakes, and (III) large-scale coherent vortical structures in shallow wakes. Because of the wide range of topics and the resulting voluminous size of the report, the reader is encouraged to concentrate on the most interesting part of the report, and eventually follow some cross–references to related subjects in the other parts of this work.

In different shallow shear flows the large-scale vortical structures of the production range, therefore, have to be examined explicitly, whereas we expect the small-scale turbulent motion not to change for different types of shallow shear flow. Furthermore, because of the amplification of the horizontal normal stresses due to vertical boundaries, also the horizontal growth rates of shallow shear flows significantly exceed the growth rates of their unbounded relatives. 2 Shallow shear flows 13 pendicular to the interfaces may be introduced into a shallow flow and may grow following an “inverse energy cascade” and decay obeying the laws of “2D” turbulence.

Higher frequency range, resulting from high-frequency fluctuations and small-scale coherent turbulence structures. Contrary to the mechanisms of 3D turbulence, vortex stretching mechanisms of the classical energy cascade are suppressed in the wave number range of large-scale 2D turbulence. Instead, vortex pairing or merging of eddies with the same sense of rotation may even lead to growth of the 2D vortical structures, thus spectral energy will even be transferred to lower frequencies or larger wave numbers via the so-called “inverse energy cascade”.

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An Apparent High Pressure Due to Adsorption, the Heat of Adsorption, and the Density of Gas-M[...]co by Harkins W.D., Ewing D.T.


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