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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 20, 1991 - Issue 2
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Original Articles

NUMERICAL STUDY OF LAMINAR HEAT TRANSFER IN INTERNALLY FINNED TUBES

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Pages 159-180 | Received 09 Jul 1990, Accepted 15 Nov 1990, Published online: 27 Apr 2007

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Read on this site (4)

Wen-Kuo Tien, Rong-Hua Yeh & Jui-Ching Hsiao. (2012) Numerical Analysis of Laminar Flow and Heat Transfer in Internally Finned Tubes. Heat Transfer Engineering 33:11, pages 957-971.
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Gurunarayana Ravi, JorgeL. Alvarado, Charles Marsh & DavidA. Kessler. (2009) Laminar Flow Forced Convection Heat Transfer Behavior of a Phase Change Material Fluid in Finned Tubes. Numerical Heat Transfer, Part A: Applications 55:8, pages 721-738.
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Biswadip Shome. (1998) MIXED CONVECTION LAMINAR FLOW AND HEAT TRANSFER OF LIQUIDS IN HORIZONTAL INTERNALLY FINNED TUBES. Numerical Heat Transfer, Part A: Applications 33:1, pages 65-83.
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Tien-Mo Shih & MichaelM. Ohadi. (1993) LITERATURE SURVEY ON NUMERICAL HEAT TRANSFER (1990-1991). Numerical Heat Transfer, Part A: Applications 23:2, pages 129-169.
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Articles from other publishers (10)

Yu-Wen Pai & Rong-Hua Yeh. (2022) Experimental investigation of heat transfer and pressure drop characteristics of internal finned tubes. International Journal of Heat and Mass Transfer 183, pages 122183.
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Ghazala Ashraf, Khalid S. Syed & Muhammad Ishaq. 2020. Numerical Modeling and Computer Simulation. Numerical Modeling and Computer Simulation.
Muhammad Ishaq, Khalid Saifullah Syed, Zafar Iqbal & Ahmad Hassan. (2018) A Conjugate Heat Transfer Analysis of a Triangular Finned Annulus Based on DG-FEM. Mathematical Problems in Engineering 2018, pages 1-18.
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Waseem Ahmad, Khalid Saifullah Syed, Muhammad Ishaq, Ahmad Hassan & Zafar Iqbal. (2017) Numerical study of conjugate heat transfer in a double-pipe with exponential fins using DGFEM. Applied Thermal Engineering 111, pages 1184-1201.
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Jakub Krzysztof Grabski & Jan Adam Kołodziej. (2015) Comparison of Selected Meshless Methods for Analysis of Steady, Fully-Developed, Laminar Flow of an Incompressible Newtonian Fluid in Internally Finned Tubes. Applied Mechanics and Materials 797, pages 274-281.
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Z. Iqbal, K.S. Syed & M. Ishaq. (2015) Fin design for conjugate heat transfer optimization in double pipe. International Journal of Thermal Sciences 94, pages 242-258.
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Mazhar Iqbal & K. S. Syed. (2011) Thermally developing flow in finned double-pipe heat exchanger. International Journal for Numerical Methods in Fluids 65:10, pages 1145-1159.
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Mafizul Huq, A.M. Aziz-ul Huq & Muhammad Mustafizur Rahman. (1998) Experimental measurements of heat transfer in an internally finned tube. International Communications in Heat and Mass Transfer 25:5, pages 619-630.
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Hi-Yong Pak, Kyoung-Woo Park & Moon-Suk Choi. (1998) Numerical analysis of the flow and heat transfer characteristics for forced convection-radiation in entrance region of an internally finned tubes. KSME International Journal 12:2, pages 310-319.
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muhammad amjad, Muhammad Ishaq, Amjad Ali, Khalid Saifullah Syed & Zafar Iqbal. (2022) Conjugate Heat Transfer Analysis of a Diamond Finned Double Pipe Heat Exchanger. SSRN Electronic Journal.
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