The effect of asymmetrical thermal boundary conditions on radiating-fin heat transfer.
Radiative heat transfer in plate-type fins with unsymmetric thermal boundary conditions
Engineering topics
Publications and source records attributed to Jonsson, V. K..
Radiative heat transfer in plate-type fins with unsymmetric thermal boundary conditions
Heat transfer rate, adiabatic wall temperature and forces exerted for free molecule flow on concave cylindrical surface
Angle factors for diffuse radiant energy interchange between parallel cylindrical tubes - application to tubular heat exchanger
Angle factors of radiative heat transfer between parallel fin-tube radiators
Radiant-energy emission of diffuse conical cavities
Radiant emission from diffuse conical cavity openings, including wall distribution of radiant emittance, heat flux, and temperature
Radiant energy absorption of a rectangular-groove cavity for both diffuse and specular reflector surfaces
An analysis was made to determine the energy absorbed when radiation from an external source enters a spherical cavity with diffusely reflecting walls. It was found that both the overall energy absorbed in the cavity and the local distribution of absorbed energy could be expressed in terms of simple algebraic equations that are valid for any arbitrary spatial and directional distribution of the incoming radiation. In addition, the characteristics of an isothermal spherical cavity as a possible source of near black-body radiation were investigated. This information was also expressed by simple algebraic relations.
Thermal radiation absorption in rectangular groove cavities
The thermal radiation characteristics of spherical cavities are of practical interest in connection with the absorption of radiant energy for both space-vehicle and terrestrial applications. Also, spherical cavities are of potential use as sources of black-body energy. The purpose of this brief paper is to determine both the absorption and emission characteristics of spherical cavities which are diffuse reflectors and emitters.
Thermal radiation absorption in rectangular-groove cavities