Transient thermal entrance heat transfer in laminar pipe flows with step change in pumping pressure

Author:

Lin T. F.,Hawks K. H.,Leidenfrost W.

Publisher

Springer Science and Business Media LLC

Subject

General Engineering

Reference24 articles.

1. Rizika, J. M.: Thermal Lags in Flowing Systems Containing Heat Capacitors. Trans. ASME 76 (1954) 411

2. Rizika, J. M.: Thermals Lags in Flowing Incompressible Fluid Systems Containing Heat Capacitors. Trans. ASME 78 (1956) 1407

3. Dusinberre, G. M.: Calcuation of Transient Temperatures in Pipes and Heat Exchangers by Numerical Methods. Trans. ASME 76 (1954) 421

4. Clark, J. A.; Arpaci, V. S.; Treadwall, K. M.: Dynamic Response of Heat Exchangers Having Internal Heat Sources-I. Trans. ASME 80 (1958) 612

5. Arpaci, V. S.; Clark, J. A.: Dynamic Response of Heat Exchangers Having Internal Heat Sources-II. Trans. ASME 80 (1958) 625

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1. On forced convection in a circular duct with slug flow and viscous dissipation;International Communications in Heat and Mass Transfer;1996-01

2. The determination of the transient wall pipe temperature by fractional calculus theory;International Communications in Heat and Mass Transfer;1992-01

3. Combined thermal-momentum start-up in long pipes;International Journal of Heat and Mass Transfer;1990-09

4. Transient conjugated heat transfer in fully developed laminar pipe flows;International Journal of Heat and Mass Transfer;1988-05

5. Exact Solution for Unsteady Conjugated Heat Transfer in the Thermal Entrance Region of a Duct;Journal of Heat Transfer;1987-05-01

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