Investigation of convection heat transfer for high integral finned tube heat exchanger

Other Title(s)

تحقيق انتقال الحرارة بالحمل لمبادل حراري ذو أنابيب مزعنفة طويلة

Joint Authors

Jabir, Hadir Sattar
Qasim, Muna Sabah

Source

Journal of Engineering and Sustainable Development

Issue

Vol. 23, Issue 6 (30 Nov. 2019), pp.70-88, 19 p.

Publisher

al-Mustansyriah University College of Engineering

Publication Date

2019-11-30

Country of Publication

Iraq

No. of Pages

19

Main Subjects

Social Sciences (Multidisciplinary)

Topics

Abstract EN

Numerical investigation has been performed in this work to evaluate the performance for triangular finned tube heat exchanger.

In numerical work, the effect of space (2.5, 3 and 3.5 mm) distance between every two finned shaped and the volumetric flow rate on the heat transfer coefficient are examined consists of cold water loop, hot air loop and the test section which is a concentric parallel flow double pipe heat exchanger.

Coldwater and hot air are used as working fluids in the tube side and shell side, respectively.

water at Reynold's numbers ranging from (3019.892 to 8035.044 ) flows through the inner tube.

The inlet cold water temperatures are (45, 35, 25 and15) oC respectively.

Numerical simulation has been carried out on present heat exchanger to analyze both flow field and heat transfer using ANSYS, FLUENT15 computational fluid dynamic (CFD) package model.

The finned tubes provide higher Nusselt numbers than the smooth tube.

In the less pitch (p=2.5mm) compared with other Numerical investigation has been performed in this work to evaluate the performance for triangular finned tube heat exchanger.

In numerical work, the effect of space (2.5, 3 and 3.5 mm) distance between every two finned shaped and the volumetric flow rate on the heat transfer coefficient are examined consists of cold water loop, hot air loop and the test section which is a concentric parallel flow double pipe heat exchanger.

Coldwater and hot air are used as working fluids in the tube side and shell side, respectively.

water at Reynold's numbers ranging from (3019.892 to 8035.044 ) flows through the inner tube.

The inlet cold water temperatures are (45, 35, 25 and15) oC respectively.

Numerical simulation has been carried out on present heat exchanger to analyze both flow field and heat transfer using ANSYS, FLUENT15 computational fluid dynamic (CFD) package model.

The finned tubes provide higher Nusselt numbers than the smooth tube.

In the less pitch (p=2.5mm) compared with other pitch.

American Psychological Association (APA)

Qasim, Muna Sabah& Jabir, Hadir Sattar. 2019. Investigation of convection heat transfer for high integral finned tube heat exchanger. Journal of Engineering and Sustainable Development،Vol. 23, no. 6, pp.70-88.
https://search.emarefa.net/detail/BIM-1114103

Modern Language Association (MLA)

Qasim, Muna Sabah& Jabir, Hadir Sattar. Investigation of convection heat transfer for high integral finned tube heat exchanger. Journal of Engineering and Sustainable Development Vol. 23, no. 6 (Nov. 2019), pp.70-88.
https://search.emarefa.net/detail/BIM-1114103

American Medical Association (AMA)

Qasim, Muna Sabah& Jabir, Hadir Sattar. Investigation of convection heat transfer for high integral finned tube heat exchanger. Journal of Engineering and Sustainable Development. 2019. Vol. 23, no. 6, pp.70-88.
https://search.emarefa.net/detail/BIM-1114103

Data Type

Journal Articles

Language

English

Notes

-

Record ID

BIM-1114103