Thermodynamic analysis of ejector as an expansion device on split-type air conditioner using R410A as working fluid
Typically the split-type air conditioner uses a capillary tube as expansion device. To enhance the performance of the system, an ejector can be applied as expansion device to replace capillary tube. Based on the numerical modeling, the coefficient of performance (COP) of standard cycle using R410A a...
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my.utm.636322017-06-15T02:33:52Z http://eprints.utm.my/id/eprint/63632/ Thermodynamic analysis of ejector as an expansion device on split-type air conditioner using R410A as working fluid Sumeru, Kasni Nasution, Henry Ani, Farid Nasir TJ Mechanical engineering and machinery Typically the split-type air conditioner uses a capillary tube as expansion device. To enhance the performance of the system, an ejector can be applied as expansion device to replace capillary tube. Based on the numerical modeling, the coefficient of performance (COP) of standard cycle using R410A as working fluid was slightly lower than that of R22. The use of an ejector as an expansion device on a split-type air conditioner using R410 increased the COP by 10.8%. Also, R410A has a lower total GWP impact compared with R22, which reduce negative impact on the environment. 2013 Conference or Workshop Item PeerReviewed Sumeru, Kasni and Nasution, Henry and Ani, Farid Nasir (2013) Thermodynamic analysis of ejector as an expansion device on split-type air conditioner using R410A as working fluid. In: International Conference on Mechanical Engineering, ICOME 2013, 19-21 Sep,2013, Mataram, Lombok, Indonesia. http://dx.doi.org/10.4028/www.scientific.net/AMM.493.227 |
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TJ Mechanical engineering and machinery Sumeru, Kasni Nasution, Henry Ani, Farid Nasir Thermodynamic analysis of ejector as an expansion device on split-type air conditioner using R410A as working fluid |
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Typically the split-type air conditioner uses a capillary tube as expansion device. To enhance the performance of the system, an ejector can be applied as expansion device to replace capillary tube. Based on the numerical modeling, the coefficient of performance (COP) of standard cycle using R410A as working fluid was slightly lower than that of R22. The use of an ejector as an expansion device on a split-type air conditioner using R410 increased the COP by 10.8%. Also, R410A has a lower total GWP impact compared with R22, which reduce negative impact on the environment. |
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Conference or Workshop Item |
author |
Sumeru, Kasni Nasution, Henry Ani, Farid Nasir |
author_facet |
Sumeru, Kasni Nasution, Henry Ani, Farid Nasir |
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Sumeru, Kasni |
title |
Thermodynamic analysis of ejector as an expansion device on split-type air conditioner using R410A as working fluid |
title_short |
Thermodynamic analysis of ejector as an expansion device on split-type air conditioner using R410A as working fluid |
title_full |
Thermodynamic analysis of ejector as an expansion device on split-type air conditioner using R410A as working fluid |
title_fullStr |
Thermodynamic analysis of ejector as an expansion device on split-type air conditioner using R410A as working fluid |
title_full_unstemmed |
Thermodynamic analysis of ejector as an expansion device on split-type air conditioner using R410A as working fluid |
title_sort |
thermodynamic analysis of ejector as an expansion device on split-type air conditioner using r410a as working fluid |
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2013 |
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http://eprints.utm.my/id/eprint/63632/ http://dx.doi.org/10.4028/www.scientific.net/AMM.493.227 |
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