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1.
  • Davies, Peter A., et al. (author)
  • The interaction between topography and a nonlinearly stratified rotating fluid
  • 1982
  • In: Physics of fluids. - : AIP Publishing. - 1070-6631 .- 1089-7666 .- 0031-9171. ; 25:11, s. 1931-1934
  • Journal article (peer-reviewed)abstract
    • Laboratory experiments have been conducted in which a spherical solid obstacle has been towed steadily through a thermally stratified rotating fluid in order to determine the effects of the density‐profile shape upon the attenuation with height of the disturbance produced by the obstacle. The existence of a cutoff level in the fluid beyond which the disturbance is not detected is illustrated, and the dependence of this level upon local variations in density profile is studied. Measurements of velocity above and behind the obstacle are reported.
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3.
  • Fälthammar, Carl-Gunne (author)
  • Stationary state of a high-temperature gas-insulated plasma column
  • 1961
  • In: Physics of Fluids. - : AIP Publishing. - 0031-9171. ; 4, s. 1145-1151
  • Journal article (peer-reviewed)abstract
    • On the basis of a simplified theoretical model an analysis is given of the stationary state of a cylindrical column of fully ionized high-pressure plasma, which is heated by an axial current and cooled by heat conduction in the radial direction across the self-magnetic field of the current. The radial distributions of current, magnetic field, temperature, pressure, and density are calculated and discussed. The power needed to maintain a stationary state at very high temperatures is found to be moderate. The relative importance of radiation losses is considered and found to be small in a certain range of parameters.
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