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22452

Simulation of a Cold Store Driven by Solar Absorption Cooling System under Different Egyptian Climatic Conditions

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Last updated: 04 Jan 2025

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Abstract

Storing of products at their recommended storage temperatures in a cold store is expensive due to their cost of electricity consumption. In order to avoid the drawbacks of both fossil fuels shortage and chlorofluorocarbon refrigerants, the substitution of a conventional vapor compression refrigeration system by a solar absorption cooling system is a promising alternative to operate the cold stores. Therefore, the main objective of the present work is to simulate and evaluate the performance of solar powered absorption refrigeration system to operate the cold store under Egyptian climatic conditions. To achieve this objective, a simulation model based on the mass and energy conservation equations is developed using TRNSYS software. The results showed that this model predicts data that are very close to the available data in the literature with an average error of 6.21%. The results indicated that the maximum load is 7.12kW in 21- July. Reported results revealed that solar collector area of 100 m2 and storage tank volume of 1.8m3 are required for a maximum cold store load with solar fraction of 0.75.

DOI

10.21608/asat.2017.22452

Keywords

Solar absorption chiller, Cold store, evacuated-tube collector

Authors

First Name

M.

Last Name

Abd El.hamed

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Affiliation

Mechanical Power Engineering Department, Faculty of Engineering, Mataria, Helwan University P.O., 11718 Cairo, Egypt.

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First Name

A.

Last Name

Mostafa

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-

Affiliation

Mechanical Power Engineering Department, Faculty of Engineering, Mataria, Helwan University P.O., 11718 Cairo, Egypt.

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First Name

M.

Last Name

Fatouh

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Affiliation

Mechanical Power Engineering Department, Faculty of Engineering, Mataria, Helwan University P.O., 11718 Cairo, Egypt.

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Volume

17

Article Issue

AEROSPACE SCIENCES & AVIATION TECHNOLOGY, ASAT - 17 – April 11 - 13, 2017

Related Issue

4266

Issue Date

2017-04-01

Receive Date

2018-12-20

Publish Date

2017-04-01

Page Start

1

Page End

9

Print ISSN

2090-0678

Online ISSN

2636-364X

Link

https://asat.journals.ekb.eg/article_22452.html

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https://asat.journals.ekb.eg/service?article_code=22452

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27

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Original Article

Type Code

737

Publication Type

Journal

Publication Title

International Conference on Aerospace Sciences and Aviation Technology

Publication Link

https://asat.journals.ekb.eg/

MainTitle

Simulation of a Cold Store Driven by Solar Absorption Cooling System under Different Egyptian Climatic Conditions

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Article

Created At

22 Jan 2023