Investigation of heat transfer coefficient augmentation in divergent rectangular duct for two phases flow (air-water)‎

Other Title(s)

دراسة زيادة معامل انتقال الحرارة في قناة مستطيلة لمتباينة للتدفق على مرحلتين (الماء-الهواء)‎

Parallel Title

دراسة زيادة معامل انتقال الحرارة في قناة مستطيلة لمتباينة للتدفق على مرحلتين (الماء-الهواء)‎

Joint Authors

Shakir, Ahmad Ali
al-Turayhi, Riyad Sabah Salih
al-Qurayshi, Hadi Ubaid Bishr

Source

The Iraqi Journal for Mechanical and Materials Engineering

Issue

Vol. 20, Issue 2 (30 Jun. 2020), pp.111-121, 11 p.

Publisher

University of Babylon College of Engineering

Publication Date

2020-06-30

Country of Publication

Iraq

No. of Pages

11

Main Subjects

Mechanical Engineering

Topics

Abstract EN

In this project, the flow distribution for air and water, and the enhancement of the heat transfer coefficient are experimentally studied.

Experimental studies have been performed to test the influence of discharge, pitch, the height of ribs at a constant heat flux on the temperature and pressure distributions.

Along the channel of the test and the heat transfer coefficient, the water volume flow rate was about (5-12 L/min), the air volume flow rate was about (5.

83-16.

66 L/min), and heat were (80, 100, 120, watt).

An experimental rig was constructed within the test whole system.

On the other hands, the channel has a divergent section with an angle =15o with vertical axis.

The study included changing in the ribs height by using three values (12, 15, 18 mm) and changing the ribs pitch into three values (5, 8, 10 mm).

The results indicated an increasing in the local heat transfer coefficient as a result of increasing the discharge.

While there was an inverse influence for the temperature distribution along the test channel which drops when the discharge rise.

The results also confirm that the increasing in the pitch distance leads to reduce the heat transfer coefficient.

Increasing the ribs height increases the coefficient of heat transfer.

However, the experiment heat transfer coefficient improves about (15.

6 %) when the water volume flow rate increased from (5 to 12 L/min), and about (18.

7%) when the air volume flow rate increased from (5.

83 to 16.

66 L/min).

The best heat transfer coefficient was about (35.

6 %) which can be achieved when the pitch decreased from (10 to 5mm).

The increasing of the height from (12 to 18) mm improves the heat transfer coefficient about (11.

2 %).

The best rib dimension was 18 mm height, and 5 mm pitch, which give a maximum heat transfer coefficient (1212.

02 W/m2.

oC).

American Psychological Association (APA)

al-Qurayshi, Hadi Ubaid Bishr& al-Turayhi, Riyad Sabah Salih& Shakir, Ahmad Ali. 2020. Investigation of heat transfer coefficient augmentation in divergent rectangular duct for two phases flow (air-water). The Iraqi Journal for Mechanical and Materials Engineering،Vol. 20, no. 2, pp.111-121.
https://search.emarefa.net/detail/BIM-972646

Modern Language Association (MLA)

al-Qurayshi, Hadi Ubaid Bishr…[et al.]. Investigation of heat transfer coefficient augmentation in divergent rectangular duct for two phases flow (air-water). The Iraqi Journal for Mechanical and Materials Engineering Vol. 20, no. 2 (Jun. 2020), pp.111-121.
https://search.emarefa.net/detail/BIM-972646

American Medical Association (AMA)

al-Qurayshi, Hadi Ubaid Bishr& al-Turayhi, Riyad Sabah Salih& Shakir, Ahmad Ali. Investigation of heat transfer coefficient augmentation in divergent rectangular duct for two phases flow (air-water). The Iraqi Journal for Mechanical and Materials Engineering. 2020. Vol. 20, no. 2, pp.111-121.
https://search.emarefa.net/detail/BIM-972646

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references : p. 119-121

Record ID

BIM-972646