Solar ventilation wall for alleviating thermal and health risks of formaldehyde and virus infection DOI
Guoyu Zhang, Hao Xie,

Niansi Li

и другие.

Indoor and Built Environment, Год журнала: 2025, Номер unknown

Опубликована: Апрель 15, 2025

The solar ventilation wall is a well-established passive system that can mitigate indoor formaldehyde pollution and virus infections, which could significantly impact health. This study introduced evaluated thermal purification composite utilizes energy to regulate conditions air quality. Steady-state experiments with simulated light sources assessed its efficiency degradation. After 2 h of ultraviolet (UV) exposure at 300, 500 800 W/m², temperatures rose by 2.5°C, 1.6°C 1.0°C, efficiencies 32.14%, 29.65% 26.49%. Thermal catalytic oxidation reduced from 600 ppb 207.1, 166.0 140.9 ppb, achieving degradation rates 50.7%, 60.1% 66.4%. Model validation showed the root mean square deviation for temperature, concentration clean delivery rate was below 5%, confirming reliability. Regional analysis identified radiation as primary factor. From December April, heating capacity volume across cities varied minimally, while UV disinfection SARS-CoV-2 achieved 96.22%–97.09% inactivation rate, demonstrating system's potential.

Язык: Английский

An optimization method coupling the response surface methodology and multi-objective particle swarm to enhance the performance of a novel water Trombe wall DOI
Tingsen Chen, Shuli Liu, Yihan Wang

и другие.

Applied Thermal Engineering, Год журнала: 2025, Номер unknown, С. 125785 - 125785

Опубликована: Янв. 1, 2025

Язык: Английский

Процитировано

3

Solar ventilation wall for alleviating thermal and health risks of formaldehyde and virus infection DOI
Guoyu Zhang, Hao Xie,

Niansi Li

и другие.

Indoor and Built Environment, Год журнала: 2025, Номер unknown

Опубликована: Апрель 15, 2025

The solar ventilation wall is a well-established passive system that can mitigate indoor formaldehyde pollution and virus infections, which could significantly impact health. This study introduced evaluated thermal purification composite utilizes energy to regulate conditions air quality. Steady-state experiments with simulated light sources assessed its efficiency degradation. After 2 h of ultraviolet (UV) exposure at 300, 500 800 W/m², temperatures rose by 2.5°C, 1.6°C 1.0°C, efficiencies 32.14%, 29.65% 26.49%. Thermal catalytic oxidation reduced from 600 ppb 207.1, 166.0 140.9 ppb, achieving degradation rates 50.7%, 60.1% 66.4%. Model validation showed the root mean square deviation for temperature, concentration clean delivery rate was below 5%, confirming reliability. Regional analysis identified radiation as primary factor. From December April, heating capacity volume across cities varied minimally, while UV disinfection SARS-CoV-2 achieved 96.22%–97.09% inactivation rate, demonstrating system's potential.

Язык: Английский

Процитировано

0