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320923

THERMAL PERFORMANCE TEST OF THE PARABOLIC SOLAR COLLECTOR

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Last updated: 24 Dec 2024

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Abstract

An experimental solar water heater was designed, built and in­stalled on the roof of the Ag. Eng. Research Institute, Power and Energy department in order to study, test and evaluate its thermal performance for the parabolic solar collector. It was employed to focus the direct so­lar radiation on the absorber plate which was fixed on a parabolic dish. having a surface area 2.1 m2 and the solar heater box dimensions were (1.25 X 1.25 m). Solar water heater was mounted on a movable frame which could be adjusted so that at any time the angle of solar incidence on the surface of the absorber plate can be set at zero. The operating fluid (water) was continually cycled through the solar heater using a wa­ter pump. After passing through the heater, the heated water was stored in an insulated storage tank. The daily heat removal factor, useful heat gain, heat transfer efficiency, heat losses, overall thermal efficien­cy, energy stored, and storage system efficiency of the solar water heat­er throughout the experimental work were found to be 98.60%, 9.271 kWh/day, 89.71%, 1.063 kWh/day, 74.29%, 8.217 kWh/day, and 88.63% respectively.

DOI

10.21608/ejar.2001.320923

Authors

First Name

AHMED M.

Last Name

KASSEM

MiddleName

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Affiliation

Power and Energy Department, Agricultural Engineering Research Institute, Agricultural Research Center, Dokki, Giza, Egypt

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Orcid

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Volume

79

Article Issue

4

Related Issue

43870

Issue Date

2001-10-01

Receive Date

2001-06-07

Publish Date

2001-12-01

Page Start

1,525

Page End

1,537

Print ISSN

1110-6336

Online ISSN

2812-4936

Link

https://ejar.journals.ekb.eg/article_320923.html

Detail API

https://ejar.journals.ekb.eg/service?article_code=320923

Order

20

Type

Original Article

Type Code

1,041

Publication Type

Journal

Publication Title

Egyptian Journal of Agricultural Research

Publication Link

https://ejar.journals.ekb.eg/

MainTitle

THERMAL PERFORMANCE TEST OF THE PARABOLIC SOLAR COLLECTOR

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Article

Created At

24 Dec 2024