Performance Optimization of Automotive Air-Conditioning System Operating with Al2O3-SiO2/PAG Composite Nanolubricants using Taguchi Method

Q2 Engineering Automotive Experiences Pub Date : 2022-03-08 DOI:10.31603/ae.6215
Nurul Izzati Mohd Zawawi, W. Azmi, M. F. Ghazali, A. I. Ramadhan
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引用次数: 2

Abstract

The performance of an automotive air-conditioning (AAC) system is influenced by a variety of operating conditions. This can be addressed by employing optimization techniques that can suggest the appropriate parameters for the best results. In this study, the optimum operating conditions for a composite nanolubricants-fuelled AAC system were investigate using Taguchi's design of experiment approach and analysis of variance (ANOVA). The motor speed value, initial refrigerant charge, and composite nanolubricants composition ratio were chosen as operating parameters to investigate the AAC system performance, focusing on the coefficient of performance (COP) and compressor work. Orthogonal arrays (ORs) L25 (56) was selected to determine the optimum operating parameters of the AAC system. The optimum values for speed, refrigerant mass, and composition ratio were determined to be A4B1C5 (60:40, 900 rpm and 155 g), respectively. The motor speed was the significant factor influencing both COP and compressor performance by 78.13% and 89.29%. A confirmation test was conducted with the optimum levels of AAC system parameters to verify the efficiency of the Taguchi optimization method. The validation between the optimization results and the experimental results yielded a maximum error of 9.85%, indicating that the findings of this investigation were acceptable.
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田口法优化Al2O3-SiO2/PAG复合纳米润滑剂汽车空调系统性能
汽车空调(AAC)系统的性能受到多种工况的影响。这可以通过采用优化技术来解决,优化技术可以为最佳结果建议适当的参数。本研究采用田口设计实验法和方差分析(ANOVA)对复合纳米润滑剂燃料AAC系统的最佳操作条件进行了研究。以电机转速值、制冷剂初始充注量和复合纳米润滑剂组成比为运行参数,重点考察了性能系数(COP)和压缩机功。选择正交阵列(ORs) L25(56)确定AAC系统的最佳运行参数。转速、制冷剂质量和成分比的最佳值分别为A4B1C5(60:40、900 rpm和155 g)。电机转速对COP和压缩机性能的影响分别为78.13%和89.29%。以AAC系统参数的最优水平进行了验证试验,验证了田口优化方法的有效性。优化结果与实验结果验证的最大误差为9.85%,表明本研究的结果是可以接受的。
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来源期刊
Automotive Experiences
Automotive Experiences Engineering-Automotive Engineering
CiteScore
3.00
自引率
0.00%
发文量
14
审稿时长
12 weeks
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