The Effect Of Condensate Water On The Performance Of Automotive Air Conditioning System Under Difference Evaporator Air Inlet Temperature

This paper experimentally investigates the effect of condensate water on the performance of automotive air conditioning (AAC) system under difference evaporator air inlet temperature. An experimental test rig was fabricated using the actual component of AAC system used for Proton Wira passenger car....

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Main Authors: Sukri, Mohamad Firdaus, Lokman, Rusmiati, Muhajir, Asjufri, Muhamad Damanhuri, Amir Abdullah, Wasbari, Faizil, Sumeru, Kasni
Format: Article
Language:English
Published: Universiti Malaysia Perlis 2020
Online Access:http://eprints.utem.edu.my/id/eprint/25123/2/15_MFSUKRI_IJNEAM_2020.PDF
http://eprints.utem.edu.my/id/eprint/25123/
https://ijneam.unimap.edu.my/images/PDF/IJNEAM%20SPECIAL%20ISSUE%20MEI%202020/Vol_13_SI_Mei2020_85-94.pdf
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Institution: Universiti Teknikal Malaysia Melaka
Language: English
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spelling my.utem.eprints.251232021-07-27T17:06:58Z http://eprints.utem.edu.my/id/eprint/25123/ The Effect Of Condensate Water On The Performance Of Automotive Air Conditioning System Under Difference Evaporator Air Inlet Temperature Sukri, Mohamad Firdaus Lokman, Rusmiati Muhajir, Asjufri Muhamad Damanhuri, Amir Abdullah Wasbari, Faizil Sumeru, Kasni This paper experimentally investigates the effect of condensate water on the performance of automotive air conditioning (AAC) system under difference evaporator air inlet temperature. An experimental test rig was fabricated using the actual component of AAC system used for Proton Wira passenger car. During experimental work, the volume flow rate of condensate water was manipulated at 0, 140 and 340 ml/min. The evaporator air inlet temperature was also varied at 28, 32 and 36°C. The other parameters of compressor speed, condensate water temperature and condenser air inlet temperature were kept constant at 1550 rpm, 29 ± 1°C and 32 ± 1°C, respectively. The study showed that the coefficient of performance (COP) of the AAC system increases when the volume flow rate of condensate water increased from 0 to 140 ml/min. It was due to a dominant decrease in compressor work, as compared to the drop in cooling capacity. In addition, the highest increment in COP occurred at evaporator air inlet temperature of 36°C (9.8%), followed by evaporator air inlet temperature of 28°C (2.8%) and 32°C (0.4%). The highest COP is 3.66, occurred at evaporator air inlet temperature of 32°C and volume flow rate of condensate water of around 140 ml/min Universiti Malaysia Perlis 2020-05 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/25123/2/15_MFSUKRI_IJNEAM_2020.PDF Sukri, Mohamad Firdaus and Lokman, Rusmiati and Muhajir, Asjufri and Muhamad Damanhuri, Amir Abdullah and Wasbari, Faizil and Sumeru, Kasni (2020) The Effect Of Condensate Water On The Performance Of Automotive Air Conditioning System Under Difference Evaporator Air Inlet Temperature. International Journal of Nanoelectronics and Materials, 13 (SI). pp. 85-94. ISSN 1985-5761 https://ijneam.unimap.edu.my/images/PDF/IJNEAM%20SPECIAL%20ISSUE%20MEI%202020/Vol_13_SI_Mei2020_85-94.pdf
institution Universiti Teknikal Malaysia Melaka
building UTEM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknikal Malaysia Melaka
content_source UTEM Institutional Repository
url_provider http://eprints.utem.edu.my/
language English
description This paper experimentally investigates the effect of condensate water on the performance of automotive air conditioning (AAC) system under difference evaporator air inlet temperature. An experimental test rig was fabricated using the actual component of AAC system used for Proton Wira passenger car. During experimental work, the volume flow rate of condensate water was manipulated at 0, 140 and 340 ml/min. The evaporator air inlet temperature was also varied at 28, 32 and 36°C. The other parameters of compressor speed, condensate water temperature and condenser air inlet temperature were kept constant at 1550 rpm, 29 ± 1°C and 32 ± 1°C, respectively. The study showed that the coefficient of performance (COP) of the AAC system increases when the volume flow rate of condensate water increased from 0 to 140 ml/min. It was due to a dominant decrease in compressor work, as compared to the drop in cooling capacity. In addition, the highest increment in COP occurred at evaporator air inlet temperature of 36°C (9.8%), followed by evaporator air inlet temperature of 28°C (2.8%) and 32°C (0.4%). The highest COP is 3.66, occurred at evaporator air inlet temperature of 32°C and volume flow rate of condensate water of around 140 ml/min
format Article
author Sukri, Mohamad Firdaus
Lokman, Rusmiati
Muhajir, Asjufri
Muhamad Damanhuri, Amir Abdullah
Wasbari, Faizil
Sumeru, Kasni
spellingShingle Sukri, Mohamad Firdaus
Lokman, Rusmiati
Muhajir, Asjufri
Muhamad Damanhuri, Amir Abdullah
Wasbari, Faizil
Sumeru, Kasni
The Effect Of Condensate Water On The Performance Of Automotive Air Conditioning System Under Difference Evaporator Air Inlet Temperature
author_facet Sukri, Mohamad Firdaus
Lokman, Rusmiati
Muhajir, Asjufri
Muhamad Damanhuri, Amir Abdullah
Wasbari, Faizil
Sumeru, Kasni
author_sort Sukri, Mohamad Firdaus
title The Effect Of Condensate Water On The Performance Of Automotive Air Conditioning System Under Difference Evaporator Air Inlet Temperature
title_short The Effect Of Condensate Water On The Performance Of Automotive Air Conditioning System Under Difference Evaporator Air Inlet Temperature
title_full The Effect Of Condensate Water On The Performance Of Automotive Air Conditioning System Under Difference Evaporator Air Inlet Temperature
title_fullStr The Effect Of Condensate Water On The Performance Of Automotive Air Conditioning System Under Difference Evaporator Air Inlet Temperature
title_full_unstemmed The Effect Of Condensate Water On The Performance Of Automotive Air Conditioning System Under Difference Evaporator Air Inlet Temperature
title_sort effect of condensate water on the performance of automotive air conditioning system under difference evaporator air inlet temperature
publisher Universiti Malaysia Perlis
publishDate 2020
url http://eprints.utem.edu.my/id/eprint/25123/2/15_MFSUKRI_IJNEAM_2020.PDF
http://eprints.utem.edu.my/id/eprint/25123/
https://ijneam.unimap.edu.my/images/PDF/IJNEAM%20SPECIAL%20ISSUE%20MEI%202020/Vol_13_SI_Mei2020_85-94.pdf
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