Experimental and numerical research on a C-type heat exchanger in duct air conditioner under non-uniform airflow

IF 6.1 2区 工程技术 Q2 ENERGY & FUELS Applied Thermal Engineering Pub Date : 2024-11-28 DOI:10.1016/j.applthermaleng.2024.125097
Bin Luo , Feng Li , Siyuan Wu , Kewei Shi , Yunxiao Ding , Rijing Zhao , Dong Huang , Wenxing Shi
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Abstract

The indoor unit of duct air conditioner typically employs an A-type heat exchanger (HX), but non-uniform airflow within the duct significantly degrades heat transfer performance. The current study proposes a C-type HX to accommodate the non-uniform airflow better. Experiments are conducted to compare the C-type and A-type HXs under varying conditions, including air volume flow rate, air velocity non-uniformity, inlet air temperature, and condensing temperature. Results indicate that as the non-uniformity of inlet air velocity increases, the heat transfer capacity of A-type HX decreases obviously. In contrast, the C-type is insensitive to the non-uniform air velocity distribution, which consistently outperforms the A-type in terms of heat transfer capacity throughout various operating conditions. Additionally, a numerical model is developed to compare the local parameters of the two HX types. The C-type demonstrates a more uniform outlet air temperature and exhibits a heat transfer capacity that is 19.1% higher than the A-type, while maintaining the identical heat transfer area and size parameters.
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非均匀气流条件下风管空调c型换热器的实验与数值研究
风管空调室内机一般采用a型换热器(HX),但风管内气流不均匀会显著降低换热性能。目前的研究建议采用c型HX来更好地适应不均匀气流。对c型HXs和a型HXs在风量流量、风速不均匀性、进风口温度、冷凝温度等不同工况下进行了对比实验。结果表明,随着进气速度不均匀性的增加,a型HX的换热能力明显降低。相比之下,c型对非均匀风速分布不敏感,在各种运行条件下,c型的换热能力始终优于a型。此外,还建立了数值模型来比较两种HX的局部参数。在保持相同的换热面积和尺寸参数的情况下,c型的出风温度更加均匀,换热能力比a型高19.1%。
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来源期刊
Applied Thermal Engineering
Applied Thermal Engineering 工程技术-工程:机械
CiteScore
11.30
自引率
15.60%
发文量
1474
审稿时长
57 days
期刊介绍: Applied Thermal Engineering disseminates novel research related to the design, development and demonstration of components, devices, equipment, technologies and systems involving thermal processes for the production, storage, utilization and conservation of energy, with a focus on engineering application. The journal publishes high-quality and high-impact Original Research Articles, Review Articles, Short Communications and Letters to the Editor on cutting-edge innovations in research, and recent advances or issues of interest to the thermal engineering community.
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