首页> 外文期刊>The Science of the Total Environment >Radon mitigation by soil depressurisation case study: Radon concentration and pressure field extension monitoring in a pilot house in Spain
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Radon mitigation by soil depressurisation case study: Radon concentration and pressure field extension monitoring in a pilot house in Spain

机译:通过土壤减压缓解on的案例研究:西班牙一家试点房中Rad浓度和压力场扩展监测

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A one-year monitoring study was conducted in a pilot house with extremely high radon levels to investigate the ability and efficiency of radon mitigation by soil depressurisation (SD) both active and passive. The study included monitoring of radon concentration, pressure field extension (PEE) under the slab and some atmospheric parameters for different testing phases. Periods in which the house remained closed to foster radon accumulation were alternated with phases of active and passive soil depressurisation under different conditions. The behaviour of the radon concentration in the pilot house was analysed along with the influence of atmospheric variables, significant correlations were found for the radon concentration with atmospheric pressure, outdoor temperature and wind. From the PFE analysis it was proven that the pressure drop with distance from the suction point of the SD system is proportional to the depressurisation generated. A behaviour law was found for the permeability characterisation of the house based on the active SD performance and also, the relationship between wind velocity and extraction airflow during passive SD operation by means of a rotating cowl was obtained. Radon reductions in excess of 85% were achieved for the different testing phases in all cases. Finally, from the results it was postulated that a fan power of 20 W is sufficient to ensure radon reductions over 85% for dwellings with similar aggregate layer and soil permeability. (C) 2019 Elsevier BM. All rights reserved.
机译:在a含量极高的试验室中进行了为期一年的监测研究,以研究主动和被动土壤减压(SD)缓解ra的能力和效率。该研究包括监测concentration浓度,平板下的压力场扩展(PEE)以及不同测试阶段的一些大气参数。在不同条件下,房屋保持关闭以促进foster积累的时期与主动和被动土壤减压阶段交替进行。分析了飞行员室内the浓度的行为以及大气变量的影响,发现the浓度与大气压力,室外温度和风之间存在显着相关性。从PFE分析可以证明,距SD系统吸入点的距离的压降与产生的降压成正比。根据主动SD的性能,找到了房屋渗透率特性的行为规律,并通过旋转的风罩获得了被动SD操作过程中风速与抽风量之间的关系。在所有情况下,不同测试阶段的减少率均超过85%。最后,从结果中推测,对于具有类似骨料层和土壤渗透性的住宅,20 W的风扇功率足以确保将ra减少率超过85%。 (C)2019爱思唯尔BM。版权所有。

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