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首页> 外文期刊>Indoor and built environment >A study of diurnal and short-term variations of indoor radon concentrations at the University of Michigan, USA and their correlations with environmental factors
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A study of diurnal and short-term variations of indoor radon concentrations at the University of Michigan, USA and their correlations with environmental factors

机译:美国密歇根大学室内ra浓度的昼夜变化及其与环境因素的关系研究

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Measurements of indoor radon concentrations and environmental parameters were collected continuously on an hourly basis over a three-month period (April 2012 to June 2012). These were performed both in a well-ventilated ground floor laboratory and in the unventilated basement directly below it in a two-storey building at the University of Michigan, USA. The diurnal variations of indoor radon concentration were investigated along with their correlations to the environmental parameters. The results showed that in the laboratory with typical air exchange, the highest radon values appeared in the early morning while lower values emerged in the afternoon. A similar time-course was followed by radon concentrations in the basement with stagnant air. The day-average radon concentrations in the laboratory ranged from 27 +/- 2 Bq m(-3) to 54 +/- 5 Bq m(-3), with the overall mean of 37 +/- 6 Bq m(-3) over the three-month data collection period. The overall basement average, 900 +/- 92 Bq m(-3) is significantly higher than the population-weighted world average value of 39 Bq m(-3). For the ground-level laboratory, the indoor humidity, outdoor temperature and indoor-outdoor temperature difference were positively correlated with indoor radon. The indoor radon negatively correlated with outdoor barometric pressure, wind speed and indoor-outdoor barometric pressure differences. However, for the unventilated basement, the only statistically significant correlation of indoor radon concentration was a positive one with hourly rainfall.
机译:在三个月的时间内(2012年4月至2012年6月),每小时一次连续收集室内ra浓度和环境参数的测量值。这些都是在通风良好的地下实验室以及位于美国密歇根大学两层高的大楼正下方的不通风地下室中进行的。研究室内ra浓度的日变化及其与环境参数的相关性。结果表明,在具有典型空气交换的实验室中,最高ra值出现在清晨,而较低值出现在下午。在类似的时间过程中,地下空气中的ra浓度也处于停滞状态。实验室中的日平均ra浓度范围从27 +/- 2 Bq m(-3)到54 +/- 5 Bq m(-3),总体平均值为37 +/- 6 Bq m(-3) )在三个月的数据收集期内。总体地下室平均值900 +/- 92 Bq m(-3)大大高于人口加权世界平均值39 Bq m(-3)。对于地面实验室,室内湿度,室外温度和室内外温差与室内ra呈正相关。室内ra与室外气压,风速和室内室外气压差呈负相关。然而,对于不通风的地下室,室内ra浓度的唯一具有统计学意义的相关性是每小时降雨与正ra值呈正相关。

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