窗组合式通风系统流动特性CFD分析

IF 1.8 Q3 MECHANICS Fluids Pub Date : 2023-11-02 DOI:10.3390/fluids8110294
Mok-Lyang Cho, Hyeon-Ji Choi, Seo-Jin Kim, Ji-Soo Ha
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引用次数: 0

摘要

在本研究中,我们分析通风模块的性能,以改善教育设施的空气质量。使用CFD,我们研究了窗户安装的通风模块的流量设计变量。采用计算分析的方法,分析了窗装式通风模块的各种流量设计特性,并对最佳工况进行了分析。首先,我们测量了教室内的二氧化碳浓度,并根据通风模块的进风速度、进风角度和室内温度条件,利用CFD分析了室内空气特性。根据教室空气质量管理标准,二氧化碳浓度必须控制在1000ppm以下。通风模块入流速度为2.0 m/s时,测得教室内二氧化碳浓度小于1000ppm。此外,为了防止外部细颗粒物通过通风模块流入,还设置了空气过滤器。审查了HEPA H14的适用性,将通风模块流出的细尘重量浓度设计为小于50 μg/m3。通过研究,提出了窗装式通风模块的流动设计条件,以降低教室内的二氧化碳浓度。本研究提出的通风系统流量特性分析,为改进教室通风系统提供了初步数据。
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Analysis of Flow Characteristics of Window-Combination-Type Ventilation System Using CFD
In this study, we analyze the performance of ventilation modules to improve air quality in educational facilities. Using (CFD), we examine the flow design variables of a window-mounted ventilation module. Using computational analysis, we analyze various flow design characteristics of window-mounted ventilation modules and review optimal conditions. First, we measure the carbon dioxide concentration in the classroom and use CFD to analyze the internal air characteristics according to the ventilation module’s inflow speed, inflow angle, and indoor temperature conditions. According to classroom air quality management standards, the concentration of carbon dioxide must be managed below 1000 ppm. When the ventilation module’s inflow velocity was 2.0 m/s, a carbon dioxide concentration of less than 1000 ppm was measured in the classroom. Additionally, an air filter was selected to prevent the inflow of external fine dust through the ventilation module. The suitability of HEPA H14 was reviewed to design the weight concentration of fine dust flowing from the ventilation module to be less than 50 μg/m3. Through research, flow design conditions for a window-mounted ventilation module were presented to reduce carbon dioxide concentration inside the classroom. The analysis of the ventilation system flow characteristics proposed in this study derived primary data for improving the classroom ventilation system.
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来源期刊
Fluids
Fluids Engineering-Mechanical Engineering
CiteScore
3.40
自引率
10.50%
发文量
326
审稿时长
12 weeks
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