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Autor:
Telionis, D. P.
Publikováno v:
American Scientist, 1982 May 01. 70(3), 332-332.
Externí odkaz:
https://www.jstor.org/stable/27851525
Publikováno v:
Chemical Engineering Journal. 71:207-212
An experimental burner of the heat-recirculating-type was constructed and its thermal characteristics were investigated for methane–air fuel-lean combustion. Temperature distributions of air and burned gas flowing in the passes of the burner were d
Publikováno v:
Chemical Engineering Journal. 71:201-205
The average rate of heat transfer as well as the oscillatory span-widths of the Nusselt number and the Rayleigh number were measured for natural convection in a layer of liquid gallium (Pr = 0.023) heated from below electrically and cooled from above
Publikováno v:
Numerical Heat Transfer, Part A: Applications. 26:363-374
Finite difference calculations were carried out for natural convection in a fluid of low Prandtl number between isothermal, horizontal plates with the higher temperature on the plate below. The motion was postulated to consist of two-dimensional roll
Publikováno v:
Numerical Heat Transfer, Part A: Applications. 18:1-15
General two- and three-dimensional models were derived and solved numerically for the thermoacoustical convection that is generated in a compressible fluid by rapid heating of one of the vertical enclosing walls. Various temperature profiles were imp
Autor:
Stuart Winston Churchill, Yuichiro Tago, Kuniyuki Kitagawa, Fumie Akimoto, Ashwani K. Gupta, Norio Arai
Publikováno v:
1st International Energy Conversion Engineering Conference (IECEC).
In order to investigate the characteristics of the surface of substrates without destroying and touching them, two-dimensional (2D) surface brightness distributions have been measured with a CCD camera equipped with optical filter (700-800 nm). The i
Publikováno v:
Numerical Heat Transfer, Part B: Fundamentals. 8:383-406
The three-dimensional equations of conservation in spherical coordinate were solved by a finite-difference method for natural convection in a spherical annulus. The vorticity-vector potential formulation and the alternating-direction-implicit method
Publikováno v:
Numerical Heat Transfer. 9:323-333
Publikováno v:
Numerical Heat Transfer, Part B: Fundamentals. 6:55-66
Natural convection in a horizontally confined, infinite layer of fluid, heated from below and cooled from above, was computed by a finite-element method. The behavior was modeled in terms of a two-dimensional roll cell with a square cross section. Tr