The Surface Temperature of a Halfplane Heated by Friction and Cooled by Convection
✍ Scribed by F.D. Fischer; E. Werner; K. Knothe
- Publisher
- John Wiley and Sons
- Year
- 2001
- Tongue
- English
- Weight
- 129 KB
- Volume
- 81
- Category
- Article
- ISSN
- 0044-2267
No coin nor oath required. For personal study only.
✦ Synopsis
The Surface Temperature of a Halfplane Heated by Friction and Cooled by Convection
Based on earlier works by the authors an analytical expression for the surface temperature of a halfplane heated by fast moving rolling/sliding contact and cooled by convection on the surface of the halfplane is presented by applying the Laplace transformation technique and the solution of a Volterra integral equation of the second kind. Furthermore, the influence of heat conduction in the rolling/sliding direction is investigated.
Aufbauend auf fr€ u uhere Arbeiten der Autoren wird ein analytischer Ausdruck f€ u ur die Oberfl€ a achentemperatur einer Halbebene angegeben, die in einer rasch entlang der Oberfl€ a ache bewegten Roll-oder Gleitkontaktzone aufgeheizt wird und durch freie Konvektion au%erhalb der Kontaktzone gek€ u uhlt wird. Dazu wird die Laplacetransformationstechnik herangezogen und eine Volterra-Integralgleichung zweiter Art f€ u ur die Oberfl€ a achentemperatur analytisch gel€ o ost. Der Einflu% der W€ a armeleitung in Richtung der Roll-/Gleitrichtung wird zus€ a atzlich abgesch€ a atzt.
📜 SIMILAR VOLUMES
Finite difference techniques are used to predict the transient temperature distribution within the infinitely long, solid, right circular cylinder which is subjected to a combined linear convection and nonlinear radiation boundary condition at its surface. Representative results for the non-dimensio
## Abstract An experiment was performed to simulate an air‐cooling panel system for passive decay heat removal from a high‐temperature gas‐cooled reactor to investigate the performance of decay heat removal and the temperature distributions of components of the system. The experimental apparatus co