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Measurement and prediction of indoor air quality using a breathing thermal manikin

机译:使用呼吸暖体假人测量和预测室内空气质量

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The analyses performed in this paper reveal that a breathing thermal manikin with realistic simulation of respiration including breathing cycle, pulmonary ventilation rate, frequency and breathing mode, gas concentration, humidity and temperature of exhaled air and human body shape and surface temperature is sensitive enough to perform reliable measurement of characteristics of air as inhaled by occupants. The temperature, humidity, and pollution concentration in the inhaled air can be measured accurately with a thermal manikin without breathing simulation if they are measured at the upper lip at a distance of < 0.01 m from the face. Body surface temperature, shape and posture as well as clothing insulation have impact on the measured inhaled air parameters. Proper simulation of breathing, especially of exhalation, is needed for studying the transport of exhaled air between occupants. A method for predicting air acceptability based on inhaled air parameters and known exposure-response relationships established in experiments with human subjects is suggested.
机译:本文进行的分析表明,可以模拟呼吸的热呼吸人体模型包括呼吸周期,肺通气速率,频率和呼吸模式,气体浓度,呼出空气的湿度和温度以及人体形状和表面温度,对对乘员吸入的空气特性进行可靠的测量。如果在上嘴唇与面部之间的距离小于0.01 m的情况下进行测量,则无需使用模拟呼吸,就可以使用人体模型准确地测量吸入空气中的温度,湿度和污染浓度。体表温度,形状和姿势以及衣服的隔热性能都会影响所测量的吸入空气参数。为了研究乘员之间呼出空气的运输,需要正确模拟呼吸,尤其是呼气。提出了一种基于吸入空气参数和在与人类受试者的实验中建立的已知暴露-反应关系来预测空气可接受性的方法。

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