Applied thermal engineering2022,Vol.21514.DOI:10.1016/j.applthermaleng.2022.119015

Multiple simultaneous faults' impacts on air-conditioner behavior and performance of a charge diagnostic method

Yifeng Hu David P. Yuill
Applied thermal engineering2022,Vol.21514.DOI:10.1016/j.applthermaleng.2022.119015

Multiple simultaneous faults' impacts on air-conditioner behavior and performance of a charge diagnostic method

Yifeng Hu 1David P. Yuill1
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作者信息

  • 1. Durham School of Architectural Engineering and Construction, University of Nebraska - Lincoln
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Abstract

Although there have been several studies that have focused on the effects of faults on the performance and on the characteristic features that could be used to detect faults, almost none of the research has studied the effects of multiple simultaneous faults. Existing fault detection and diagnosis approaches that have been developed based on single faults may struggle with simultaneous faults. This paper is part of a series that present a methodology and comprehensive measurement data from a battery of laboratory tests on an air-conditioner with combinations of common faults (refrigerant charge, evaporator airflow, non-condensable gas, and liquid line restrictions) imposed, to show how the indicator variables and overall performance are impacted. The system has a microtube condenser and a fixed-orifice (FXO) expansion device, which are found to affect the features' fault sensitivity. This experiment is the first to test these combined faults in an FXO-equipped system, so comparisons are made to a previously studied thermostatic expansion valve-equipped system. Finally, a promising charge diagnostic technology is assessed, to see how it is impacted by other faults. The faults reduced capacity by up to 42%, and efficiency by up to 39%. The charge diagnostic performed well, even with multiple faults present.

Key words

Simultaneous-fault impacts/Fault detection features/Refrigerant charge/Microtube condenser/Split system air conditioner

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出版年

2022
Applied thermal engineering

Applied thermal engineering

EISCI
ISSN:1359-4311
被引量8
参考文献量23
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