Personalized air exhaust combined with mixing ventilation for environmental management and airborne droplets in a train cabin
Персонализованный вытяжной воздух в сочетании с перемешивающей вентиляцией для управления средой и воздушными каплями в салоне поезда
2025-03-01
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airborne dropletsenergy utilization efficiencymixing ventilationpersonalized exhausttrain cabin ventilation
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Abstract (AI)
The enclosed space and high passenger density in high-speed train cabins pose substantial challenges in providing a safe, healthy, and comfortable indoor environment, especially during pandemics such as COVID-19 and influenza. High ventilation rates, while beneficial in reducing pathogen transmission, may compromise airflow field quality and result in great energy consumption. Therefore, understanding the tradeoffs between transmission risk, thermal comfort, and energy saving is critical for devising cabin ventilation systems. As the primary method of regulating indoor environments, heating, ventilation, and air conditioning systems are central to this study, which proposes an improved personalized ventilation mode that combines personalized exhaust with various supply air strategies. The results indicate that the personalized exhaust mode considerably reduces the longitudinal spread of particles and rapidly decreases their concentration in the air. When paired with a higher proportion of airflow entering the cabin through sidewall air outlets, the airflow primarily diffuses upward. The proposed mode enhances thermal comfort, balances energy consumption and air quality, and delivers significant performance improvements, including a 22.4% increase in energy utilization efficiency and over a 23.3% reduction in suspended droplets. This study provides a theoretical foundation for optimizing high-speed train cabin ventilation systems in the post-pandemic era.
Key Findings
1
A personalized ventilation mode combining personalized exhaust with various supply air strategies was proposed for train cabins.
2
Increasing the proportion of airflow entering through sidewall air outlets causes the airflow to primarily diffuse upward.
3
The personalized exhaust mode considerably reduces longitudinal spread of particles and rapidly decreases airborne particle concentration.
4
The proposed mode enhances thermal comfort while balancing energy consumption and air quality in the cabin.
5
The proposed system achieved a 22.4% increase in energy utilization efficiency and over a 23.3% reduction in suspended droplets.
Research Object
High-speed train cabin ventilation system with personalized exhaust combined with mixing supply strategies
Research Subject
Effects of the personalized exhaust plus mixing ventilation on airborne droplet transmission, airflow distribution, thermal comfort, and energy efficiency in the train cabin
Publication Details
Publication Date
2025-03-01
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