室内空调系统热管换热器热回收性能分析

IF 1.8 Q4 ENERGY & FUELS
AIMS Energy Pub Date : 2023-01-01 DOI:10.3934/energy.2023031
Fazri Amir, H. Muhammad, Nasruddin A. Abdullah, S. Rizal, R. Thaib, H. Umar
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引用次数: 0

摘要

空调系统是为居民提供舒适室温的最常见方式。然而,其运行所需的能源非常高,成本很高。因此,需要一种更高效、能耗更低的暖通空调系统。实验结果和性能分析表明,通过HPHE(预冷)蒸发器侧的出口空气温度有可能在使用配备HPHE的HVAC系统时节省一定的能源。本研究旨在研究预冷过程在商用房间暖通空调系统中的应用。本研究在32-42℃的新风进气温度范围内对HPHE在空调系统热回收中的利用进行了研究。风速设为1.0 m/s。这个实验证明了最高的有效性为21%的值。HPHE热回收分析结果表明,当新风进风温度超过离开房间的排风温度时,热回收性能达到最佳。在低新风进气温度为32℃时进行对比,成功回收0.05 W,当温度升高到42℃时,回收0.21 W。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance analysis of heat recovery in Heat Pipe Heat Exchanger on room air conditioning systems
The air conditioning system is the most common way to provide comfortable room temperature for its inhabitants. However, the energy required for its operation is extremely high and cost-intensive. Therefore, a more efficient HVAC system with a lower energy consumption is desirable. The experimental results and performance analysis demonstrated that the outlet air temperature through the evaporator side of HPHE (precooling) has the potential to save some amount of energy utilizing an HVAC system equipped with HPHE. This research aims to study the performance of HPHE with the precooling process applied in commercial room HVAC system applications. This research on the utilization of HPHE for heat recovery in air conditioning systems was carried out with variations in temperature of fresh air intake ranging between 32–42 ℃. The airflow speed was set constant at 1.0 m/s. This experiment demonstrated the highest effectiveness at a value of 21%. The HPHE heat recovery analysis results show that the best heat recovery performance is achieved when the fresh air intake temperature exceeds the exhaust air leaving the room. The phenomenon was compared at a low fresh air intake temperature of 32 ℃, which succeeded in recovering 0.05 W, and when the temperature rose to 42 ℃, 0.21 W was recovered.
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来源期刊
AIMS Energy
AIMS Energy ENERGY & FUELS-
CiteScore
3.80
自引率
11.10%
发文量
34
审稿时长
12 weeks
期刊介绍: AIMS Energy is an international Open Access journal devoted to publishing peer-reviewed, high quality, original papers in the field of Energy technology and science. We publish the following article types: original research articles, reviews, editorials, letters, and conference reports. AIMS Energy welcomes, but not limited to, the papers from the following topics: · Alternative energy · Bioenergy · Biofuel · Energy conversion · Energy conservation · Energy transformation · Future energy development · Green energy · Power harvesting · Renewable energy
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