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Response of a heat and moisture exchanger containing CaCl2 to the periodic change of flow direction

机译:含有CaCl 2 的热和水分交换剂的响应到流动方向的周期性变化

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摘要

The characteristics of a medical heat and moisture exchanger with filter (HMEF) that contained polyurethane sponges and CaCl_(2) were investigated experimentally and model analysis was performed. Variations in the temperature and humidity were measured. Saturated air at 37 °C simulating exhalation and dry air at 26 °C simulating inhalation were fed alternatively through the HMEF in opposite directions. The period was set as 256 s, 64 s, 16 s and 4 s. When the period was long (256 and 64 s), the polyurethane sponges and CaCl_(2) played an important role in condensation and evaporation of water and the amplitudes of the temperature variation was so large that it overshot the input condition. When the period was shortened (4 s), the amplitudes of the temperature and humidity variations decreased and the relative humidity of the patient side of the HMEF gradually reached that of the exhalation conditions. This suggests that the characteristic times of condensation and evaporation were longer than that of the respiration (τ_(b) = 4 s). In other words, the unsteady effect is important for the condensation and vaporization mechanism of HMEF. The mechanism was supported by the model analysis. In addition, comparing the results of the experiments and model analysis elucidated the effect of the connecting pipe, which corresponds to the dead space effect in clinical use.
机译:实验研究了含有聚氨酯海绵和CaCl_(2)的过滤器(HMEF)的医用热量和水分交换剂的特性,并进行模型分析。测量温度和湿度的变化。在37°C的饱和空气模拟26°C的呼气和干燥空气在相反方向上通过HMEF替代地通过HMEF进行喂食。该期间设定为256秒,64秒,16秒和4秒。当期间长(256和64秒)时,聚氨酯海绵和CaCl_(2)在凝结和蒸发水中发挥了重要作用,温度变化的幅度如此大,即它会过度地过度输入条件。当缩短时段(4秒)时,温度和湿度变化的幅度降低,HMEF的患者侧的相对湿度逐渐达到呼气条件的相对湿度。这表明缩合和蒸发的特征时间比呼吸值(τ__(b)= 4s)长。换句话说,不稳定的效果对于HMEF的冷凝和蒸发机制很重要。模型分析支持该机制。此外,比较实验结果和模型分析的结果阐明了连接管的效果,这对应于临床用途的死空间效应。

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