Impulse-function method for heat-transfer dynamics in a channel
Abstract
A method is proposed for solving a system of partial differential equations describing the unsteady coupled heat transfer in a channel through which a heat transfer agent flows. Using analytical expressions for the impulse functions which relate the changes in the input and output parameters, the partial differential equations are reduced to two convolution-type Volterra integral equations of the second kind, which are readily amenable to computer-aided solution.
- Publication:
-
Inzhenerno Fizicheskii Zhurnal
- Pub Date:
- December 1977
- Bibcode:
- 1977InFiZ..33..982K
- Keywords:
-
- Boundary Value Problems;
- Channel Flow;
- Heat Transfer;
- Volterra Equations;
- Computer Techniques;
- Flow Characteristics;
- Partial Differential Equations;
- Fluid Mechanics and Heat Transfer