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Comparison of Capture Efficiencies Measured by Tracer Gas and Aerosol Tracer Techniques

机译:示踪气体和气溶胶示踪技术测量捕集效率的比较

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摘要

The capture efficiency of an exhaust device was evaluated using a tracer gas (helium diluted in air), and an aerosol tracer of varying particle size distributions. Helium concentrations were measured by mass spectrometry, and those of the aerosol were evaluated using optical and photometric particle counters in order to follow the temporal evolution of the concentrations. This experimental study confirms the theoretical results obtained from mathematical simulations (CFD), and from the simple study of the particle relaxation time and sedimentation velocity of particles. It demonstrates that the transfer of an aerosol to a square local exhaust system of 20×20 cm2 is nearly identical to that of a gas when all the following conditions are fulfilled:•diameter of particles less than about 30 Μm;•low initial particle emission velocity (of a few tens of cm/s);•direct capture and short transfer times between the source and the capture system (less than a few seconds).It is then possible to use the tracer gas technique to measure the capture efficiency of an aerosol if the above-mentioned conditions are fulfilled.
机译:使用示踪气体(氦气稀释在空气中)和粒径分布变化的气溶胶示踪剂评估了排气装置的捕集效率。通过质谱仪测量氦气浓度,并使用光学和光度颗粒计数器评估气溶胶的氦气浓度,以跟踪浓度的时间变化。该实验研究证实了从数学模拟(CFD)以及简单研究颗粒弛豫时间和颗粒沉降速度所获得的理论结果。它表明,当满足以下所有条件时,气雾剂向20×20 cm2的方形局部排气系统的转移几乎与气体的转移相同:•粒径小于约30微米的颗粒;•初始颗粒排放低速度(几十厘米/秒);•直接捕获和源与捕获系统之间的转移时间短(少于几秒钟)。然后可以使用示踪气体技术测量气体的捕获效率。如果满足上述条件,则为气雾剂。

著录项

  • 来源
    《Indoor Air》 |1998年第1期|47-60|共14页
  • 作者单位

    Thermal Transfer and Ventilation Department Institut National de Recherche et de SÉAcuritÉ Vandoeuvre France;

    Thermal Transfer and Ventilation Department Institut National de Recherche et de SÉAcuritÉ Vandoeuvre France;

    Thermal Transfer and Ventilation Department Institut National de Recherche et de SÉAcuritÉ Vandoeuvre France;

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

    Capture efficiency; Aerosol; Tracer; Helium;

    机译:捕集效率;气溶胶;捕集剂;氦气;

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