
By Je-Chin Han
ISBN-10: 1439896895
ISBN-13: 9781439896891
Entrance hide; Contents; Preface; bankruptcy 1. warmth Conduction Equations; bankruptcy 2. 1-D Steady-State warmth Conduction; bankruptcy three. 2-D Steady-State warmth Conduction; bankruptcy four. brief warmth Conduction; bankruptcy five. Numerical research in warmth Conduction; bankruptcy 6. warmth Convection Equations; bankruptcy 7. exterior pressured Convection; bankruptcy eight. inner pressured Convection; bankruptcy nine. average Convection; bankruptcy 10. Turbulent
Chapter 14. Radiation move via GasesAppendix A: Mathematical family and services; again Cover. Read more...
summary: entrance disguise; Contents; Preface; bankruptcy 1. warmth Conduction Equations; bankruptcy 2. 1-D Steady-State warmth Conduction; bankruptcy three. 2-D Steady-State warmth Conduction; bankruptcy four. temporary warmth Conduction; bankruptcy five. Numerical research in warmth Conduction; bankruptcy 6. warmth Convection Equations; bankruptcy 7. exterior pressured Convection; bankruptcy eight. inner pressured Convection; bankruptcy nine. common Convection; bankruptcy 10. Turbulent circulation warmth move; bankruptcy eleven. basic Radiation; bankruptcy 12. View issue; bankruptcy thirteen. Radiation trade in a Nonparticipating Medium.
Chapter 14. Radiation move via GasesAppendix A: Mathematical relatives and features; again hide
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Extra resources for Analytical Heat Transfer
Example text
F. Incropera and D. Dewitt, Fundamentals of Heat and Mass Transfer, Fifth Edition, John Wiley & Sons, New York, NY, 2002. 3. A. Mills, Heat Transfer, Richard D. , Boston, MA, 1992. 4. V. Arpaci, Conduction Heat Transfer, Addison-Wesley Publishing Company, Reading, MA, 1966. 1 Method of Separation of Variables: Given Temperature BC Most often heat is conducted in two dimensions instead of one dimension as discussed in Chapter 2. For example, we are interested in determining the temperature distribution in a 2-D rectangular block with appropriate BCs.
3. Determine heat loss per tube length as the following conditions: Given: Steam Inside the Pipe Air Outside the Pipe T∞1 = 250◦ C T∞2 = 20◦ C h1 = 500 W/m2 K Find: q/L =? 3. 6. The cylinder has a thin metal sheath and is immersed in a liquid at temperature T∞ . Heat transfer from the cylinder surface to the liquid can be characterized by a heat transfer coefficient h. Obtain the steady-state temperature distributions for the following cases: a. q˙ = q˙ o 1 − (r/ro )2 . b. q˙ = a + b(T − T∞ ). 4.
You may also determine the steady 1-D temperature distribution in the annular fin numerically using the finite difference method. Give the finite-difference equations for the nodes at r = ri and r = ro and for a typical interior node. Please rearrange the equations to give expressions for the temperatures at the nodes. 14. An engineer has suggested that a triangular fin would be more effective than a circular fin for a new natural convection heat exchanger. The fins are very long and manufactured from Al 2024T6.