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首页> 外文期刊>Indoor Air >Performance characteristics of a fan filter unit (FFU) in mitigating particulate matter levels in a naturally ventilated classroom during haze conditions
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Performance characteristics of a fan filter unit (FFU) in mitigating particulate matter levels in a naturally ventilated classroom during haze conditions

机译:风扇过滤器单元(FFU)的性能特征在雾度条件下缓解颗粒物质水平的缓解颗粒物水平

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摘要

The performance of a low-cost fan filter unit (FFU) in mitigating hazardous particulate matter (PM) levels in a naturally ventilated school classroom is presented. The FFU can be considered as a simplified mechanical ventilation and air-conditioning system without heating and cooling functions. The FFU improves indoor air quality through introduction of cleaned outdoor air to flush out internally generated heat and moisture and reducing infiltration by maintaining indoor pressurization. Indoor particle number concentrations were reduced between 85% and 95%. The particle removal performance (PRFFFU) of the FFU is determined and incorporated into the augmented façade penetration factor (P_(aug)). A case-specific recursive dynamic mass balance model is used to characterize the infiltration factor (FINF), deposition rate (K), and the penetration efficiency (P_(aug)) from continuously monitored indoor and outdoor mass concentration levels. Computed “P_(aug)” (0.07, 0.09, and 0.13) and “F_(INF)” (0.06, 0.08, and 0.11), respectively, for PM10, PM2.5, and PM1 suggest that exposure to PM was significantly reduced indoors. The effectiveness of the FFU for reduced “F_(INF)” and “P_(aug)” may be attributed to its superior filtration, dilution, and exfiltration mechanisms. In comparison with alternative PM mitigation solutions, the FFU is effective, affordable, and sustainable.
机译:提出了低成本风扇过滤器单元(FFU)在自然通风的学校教室中减轻危险颗粒物质(PM)水平的性能。 FFU可以被认为是简化的机械通风和空调系统,无需加热和冷却功能。 FFU通过引入清洁的室外空气来提高室内空气质量,通过维持室内加压来刷新内部产生的热量和水分并降低渗透。室内颗粒数浓度降低85%至95%。确定FFU的颗粒去除性能(PRFFFU)并结合到增强的外立穿透因子(P_(八))中。特定于特定的递归动态质量平衡模型用于表征渗透因子(FINF),沉积速率(k)和穿透效率(P_(八))从连续监测室内和室外质量浓度水平。 PM10,PM2.5和PM1分别计算“P_(八)”(0.07,0.09和0.13)和“F_(INF)”(0.06,0.08和0.11),表明暴露于PM的暴露显着降低在室内。 FFU对减少“F_(INF)”和“P_(AUG)”的有效性可归因于其优异的过滤,稀释和抗滤液机制。与替代PM缓解解决方案相比,FFU是有效的,价格实惠和可持续的。

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  • 来源
    《Indoor Air》 |2021年第3期|795-806|共12页
  • 作者单位

    Department of Building Centre for Integrated Building Energy and Sustainability in the Tropics (CiBEST) School of Design and Environment National University of Singapore Singapore City Singapore;

    Department of Building Centre for Integrated Building Energy and Sustainability in the Tropics (CiBEST) School of Design and Environment National University of Singapore Singapore City Singapore;

    Department of Building Centre for Integrated Building Energy and Sustainability in the Tropics (CiBEST) School of Design and Environment National University of Singapore Singapore City Singapore;

    Department of Building Centre for Integrated Building Energy and Sustainability in the Tropics (CiBEST) School of Design and Environment National University of Singapore Singapore City Singapore;

    Department of Building Centre for Integrated Building Energy and Sustainability in the Tropics (CiBEST) School of Design and Environment National University of Singapore Singapore City Singapore;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    augmented penetration factor; fan filter unit; mass balance model; penetration efficiency; PM exposure; smoke haze;

    机译:增强渗透因子;风扇过滤器单元;质量平衡模型;渗透效率;PM曝光;烟雾阴霾;

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