Numerical investigation of heat transfer enhancement with CuO Nanofluid flowing in a circular tube fitted with twisted tape inserts

Joint Authors

Karam Allah, A. A.
Mahmud, N. S.

Source

Engineering and Technology Journal

Issue

Vol. 35, Issue 10A (31 Oct. 2017), pp.1052-1058, 7 p.

Publisher

University of Technology

Publication Date

2017-10-31

Country of Publication

Iraq

No. of Pages

7

Main Subjects

Engineering & Technology Sciences (Multidisciplinary)

Abstract EN

The present paper investigates numerically the enhancement of heat transfer with CuO nanofluid flowing in a horizontal circular tube fitted with different shapes of twisted tape.

Finite volume method with ANSYS FLUENT in three dimensions is used in numerical investigation.

The effect of twist ratio, concentration of nanofluid, twisted tape type with single phase flow on values of Nusselt number and friction factor are investigated.

Heat transfer is enhanced as Reynolds number increases and twist ratio decreases

American Psychological Association (APA)

Karam Allah, A. A.& Mahmud, N. S.. 2017. Numerical investigation of heat transfer enhancement with CuO Nanofluid flowing in a circular tube fitted with twisted tape inserts. Engineering and Technology Journal،Vol. 35, no. 10A, pp.1052-1058.
https://search.emarefa.net/detail/BIM-878042

Modern Language Association (MLA)

Karam Allah, A. A.& Mahmud, N. S.. Numerical investigation of heat transfer enhancement with CuO Nanofluid flowing in a circular tube fitted with twisted tape inserts. Engineering and Technology Journal Vol. 35, no. 10A (2017), pp.1052-1058.
https://search.emarefa.net/detail/BIM-878042

American Medical Association (AMA)

Karam Allah, A. A.& Mahmud, N. S.. Numerical investigation of heat transfer enhancement with CuO Nanofluid flowing in a circular tube fitted with twisted tape inserts. Engineering and Technology Journal. 2017. Vol. 35, no. 10A, pp.1052-1058.
https://search.emarefa.net/detail/BIM-878042

Data Type

Journal Articles

Language

English

Notes

Includes appendix : p. 1058

Record ID

BIM-878042