An experimental study for the effect of capillary tube diameter on refrigerator performance with new alternative refrigerant mixture to R134a

Author

al-Sayyab, Ali Khalid Shakir

Source

Kufa Journal of Engineering

Issue

Vol. 9, Issue 2 (30 Apr. 2018), pp.31-44, 14 p.

Publisher

University of Kufa Faculty of Engineering

Publication Date

2018-04-30

Country of Publication

Iraq

No. of Pages

14

Main Subjects

Mechanical Engineering

Abstract EN

In this work, the effect of capillary tube diameter on refrigerator performance is studied for refrigerants R134a, R290, R600a and its mixture which named: RMix1(70%R134a,20%R290,10%R600a), RMix2(70%R134a,10%R290,20%R600a), RMix3.(50%R134a,20%R290,30%R600a), RMix4 (60%R134a,20%R290,20%R600a).

The three adopted capillary tubes diameter are 1.4 mm, 1.8 mm and 2.2 mm, named capillary1, capillary2 and capillary3 respectively.

The experimental work show that, the refrigerator operates in 2.2 mm capillary tube's diameter with R134a gives the highest COP from other refrigerants with the same diameter, where the performance of refrigerator with capillary tube of 1.4 mm and alternative ozone friendly refrigerant RMix2 give 1.3% COP reduction from base case of R134a .

American Psychological Association (APA)

al-Sayyab, Ali Khalid Shakir. 2018. An experimental study for the effect of capillary tube diameter on refrigerator performance with new alternative refrigerant mixture to R134a. Kufa Journal of Engineering،Vol. 9, no. 2, pp.31-44.
https://search.emarefa.net/detail/BIM-840831

Modern Language Association (MLA)

al-Sayyab, Ali Khalid Shakir. An experimental study for the effect of capillary tube diameter on refrigerator performance with new alternative refrigerant mixture to R134a. Kufa Journal of Engineering Vol. 9, no. 2 (Apr. 2018), pp.31-44.
https://search.emarefa.net/detail/BIM-840831

American Medical Association (AMA)

al-Sayyab, Ali Khalid Shakir. An experimental study for the effect of capillary tube diameter on refrigerator performance with new alternative refrigerant mixture to R134a. Kufa Journal of Engineering. 2018. Vol. 9, no. 2, pp.31-44.
https://search.emarefa.net/detail/BIM-840831

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references : p. 43-44

Record ID

BIM-840831