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50568

Experimental Study for Using Ice in Air Conditioning to Reduce Peak Loads

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Last updated: 22 Jan 2023

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Abstract

This paper provides an experimental debate about using ice in air cooling to reduce peak loads resulting from air
conditioning. Three copper helical coils having the same surface area were used in the present work. The coils diameters are
5, 7 and 10 mm, coils lengths are 4.50, 3.22 and 2.26 m respectively. The three coils are have the same pitch circle diameter
and different number of turns. Warm air have a temperature ranging from 40°C to 60°C was fed inside the coils immersed
in slurry ice hours. The air flow rate was changed from 0.0008 to 0.0065 kg/s. The effects of Reynolds number and coil
diameter on heat transfer characteristics were investigated. The results provided that Nusselt number, Nu, increases with the
increase of Reynolds number for small tube diameter coil. Empirical correlations were found for both heat transfer and
pressure drop as dimensionless groups in the range of experimental investigation

DOI

10.21608/pserj.2013.50568

Keywords

ICE, Air conditioning, helical coils, duration, slurry ice and thermal storage

Authors

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E

Last Name

Eid

MiddleName

I

Affiliation

Department of Mechanical Engineering-Faculty of Industrial Education, Suez University, Egypt

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First Name

Tarek

Last Name

Omara

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Affiliation

Department of Mechanical Engineering-Faculty of Industrial Education, Suez University, Egypt

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First Name

A

Last Name

Omar

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Affiliation

Department of Mechanical Engineering-Faculty of Industrial Education, Suez University, Egypt

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Volume

17

Article Issue

2

Related Issue

7269

Issue Date

2013-09-01

Receive Date

2013-07-12

Publish Date

2013-09-01

Page Start

54

Page End

63

Print ISSN

1110-6603

Online ISSN

2536-9377

Link

https://pserj.journals.ekb.eg/article_50568.html

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https://pserj.journals.ekb.eg/service?article_code=50568

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6

Type

Original Article

Type Code

813

Publication Type

Journal

Publication Title

Port-Said Engineering Research Journal

Publication Link

https://pserj.journals.ekb.eg/

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Article

Created At

22 Jan 2023