Dynamic behavior of a direct expansion evaporator under frosting condition. Part II. Field investigation on a shipping container

A field investigation is performed on the frost formation at an evaporator of a commercial full-scale refrigerated container that uses R-12 as the working refrigerant. Results when compared with those from a numerical model presented earlier show that the model is capable of predicting the dynamic b...

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Main Authors: TSO, C, CHENG, Y, LAI, A
Format: Article
Published: 2006
Subjects:
Online Access:http://shdl.mmu.edu.my/1968/
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author TSO, C
CHENG, Y
LAI, A
author_facet TSO, C
CHENG, Y
LAI, A
author_sort TSO, C
building MMU Institutional Repository
collection Online Access
description A field investigation is performed on the frost formation at an evaporator of a commercial full-scale refrigerated container that uses R-12 as the working refrigerant. Results when compared with those from a numerical model presented earlier show that the model is capable of predicting the dynamic behavior of a direct expansion evaporator under both non-frosting and frosting conditions. The air outlet and energy transferred compare well between experiment and model, and within 20% for the air pressure drop. The frost occurrence and propagation agree well generally, with the frost formation first occurring at the first row where the refrigerant enters the evaporator. (c) 2005 Elsevier Ltd and IIR. All rights reserved.
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spelling mmu-19682011-09-23T03:16:59Z http://shdl.mmu.edu.my/1968/ Dynamic behavior of a direct expansion evaporator under frosting condition. Part II. Field investigation on a shipping container TSO, C CHENG, Y LAI, A TA Engineering (General). Civil engineering (General) A field investigation is performed on the frost formation at an evaporator of a commercial full-scale refrigerated container that uses R-12 as the working refrigerant. Results when compared with those from a numerical model presented earlier show that the model is capable of predicting the dynamic behavior of a direct expansion evaporator under both non-frosting and frosting conditions. The air outlet and energy transferred compare well between experiment and model, and within 20% for the air pressure drop. The frost occurrence and propagation agree well generally, with the frost formation first occurring at the first row where the refrigerant enters the evaporator. (c) 2005 Elsevier Ltd and IIR. All rights reserved. 2006-06 Article NonPeerReviewed TSO, C and CHENG, Y and LAI, A (2006) Dynamic behavior of a direct expansion evaporator under frosting condition. Part II. Field investigation on a shipping container. International Journal of Refrigeration, 29 (4). pp. 624-631. ISSN 01407007 http://dx.doi.org/10.1016/j.ijrefrig.2005.09.012 doi:10.1016/j.ijrefrig.2005.09.012 doi:10.1016/j.ijrefrig.2005.09.012
spellingShingle TA Engineering (General). Civil engineering (General)
TSO, C
CHENG, Y
LAI, A
Dynamic behavior of a direct expansion evaporator under frosting condition. Part II. Field investigation on a shipping container
title Dynamic behavior of a direct expansion evaporator under frosting condition. Part II. Field investigation on a shipping container
title_full Dynamic behavior of a direct expansion evaporator under frosting condition. Part II. Field investigation on a shipping container
title_fullStr Dynamic behavior of a direct expansion evaporator under frosting condition. Part II. Field investigation on a shipping container
title_full_unstemmed Dynamic behavior of a direct expansion evaporator under frosting condition. Part II. Field investigation on a shipping container
title_short Dynamic behavior of a direct expansion evaporator under frosting condition. Part II. Field investigation on a shipping container
title_sort dynamic behavior of a direct expansion evaporator under frosting condition. part ii. field investigation on a shipping container
topic TA Engineering (General). Civil engineering (General)
url http://shdl.mmu.edu.my/1968/
http://shdl.mmu.edu.my/1968/
http://shdl.mmu.edu.my/1968/