Analisis Aliran Udara dan Kenyamanan Termal di Laboratorium Perpindahan Panas dan Massa menggunakan Metode Computational Fluid Dynamics (CFD)

Jason Prathana Liawan, Harto Tanujaya, Steven Darmawan
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引用次数: 3

Abstract

Air circulation and thermal comfort are some of many factors that affects user’s behavior in indoor activity, particularly in learning activity. With appropriate air quality and thermal comfort, it is easier for students to focus on the learning process. In addition, better air circulation can also benefit to the health of the people inside the building, for instance, according to WHO (World Health Organization), appropriate airflow may reduce the spread of SARS-CoV-2 which lately has caused a COVID-19 pandemic. However, air circulation and distribution have not a concern yet due to existing room condition and advanced technology that is needed, in L 609 classroom and Heat & Mass Transfer Laboratory, in this research. CFD method implementation for this case is used to show existing air circulation condition and necessary recommendations to get better air circulation. CFD simulation is done 3 dimensionally with 44344 nodes tetrahedral mesh on 2 configuration room condition, which are classified based on air input from AC, door gap, and with or without window opening. Based on CFD simulation results, the 2nd configuration with window opening indicate the best configuration with air velocity around 0,8 m/s dan room temperature 295,8 – 302,1 K. With window opening, the air flow condition met the ANSI/ASHRAE 55 and hoped to reduce COVID-19 spreading.
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利用计算流体动力学方法(CFD)分析热位移实验室的空气流动和热舒适性
空气流通和热舒适是影响室内活动,特别是学习活动中用户行为的诸多因素之一。有了适当的空气质量和热舒适,学生更容易专注于学习过程。此外,更好的空气流通也有利于建筑物内人员的健康,例如,根据世界卫生组织(世卫组织)的说法,适当的空气流通可以减少最近引起COVID-19大流行的SARS-CoV-2的传播。然而,由于现有的房间条件和所需的先进技术,在l609教室和Heat &质的传递实验室,在这项研究中。采用CFD方法实现了该案例,显示了现有的空气循环状况,并提出了改善空气循环的必要建议。采用44344节点四面体网格在2种配置房间条件下进行了三维CFD仿真,并根据空调空气输入、门间隙、开窗和不开窗进行了分类。CFD模拟结果表明,当空气流速为0.8 m/s,室温为295、8 ~ 302、1 K时,打开窗的第二种配置为最佳配置。开窗后,空气流动状况符合ANSI/ASHRAE 55标准,希望减少COVID-19的传播。
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