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首页> 外文期刊>Environment International >AN INVESTIGATION OF FACTORS AFFECTING THE ENTRY OF RADON INTO STRUCTURES ON THE ISLAND OF GUAM
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AN INVESTIGATION OF FACTORS AFFECTING THE ENTRY OF RADON INTO STRUCTURES ON THE ISLAND OF GUAM

机译:关岛岛上AM进入结构的影响因素研究

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摘要

Factors affecting the entry of ~(222)Rn gas into structures on the Island of Guam were investigated during the summer of 1993. Research findings indicated that radon transport into buildings on Guam, and perhaps in other tropical areas, is driven by sub-grade soil pressure (positive with respect to atmospheric pressure) rather than interior buildings vacuums. Immediate and substantive increases in indoor radon concentrations were associated with environmental effects of wind and rain. Radon entry, and, hence, indoor radon concentrations, are significantly greater during the rainy season as opposed to the dry season. In the absence of mechanically induced interior vacuums in buildings, external environmental forces creating sub-slab pressures are the predominant factor in affecting radon entry in Guam. Indoor radon potentials can be correlated to the locations where the underlying geology is limestone. Furthermore, the radon source appears to be within the first few feet of the surface of these limestones rather than uniformly distributed throughout the limestone. The effects of seismic activity on radon entry are short-lived unless significant damage occurs to a structure. Radon entry during calm weather conditions may also be a function of the rising and falling of ocean tides.
机译:在1993年夏季,对影响〜(222)Rn气体进入关岛的建筑物的因素进行了研究。研究结果表明,sub气向关岛乃至其他热带地区的建筑物的迁移是由路基驱动的。土壤压力(相对于大气压力为正值)而不是室内建筑物的真空度。室内ra浓度的立即大量增加与风雨对环境的影响有关。与雨季相比,在雨季,entry的进入以及室内indoor的浓度显着增加。在建筑物中没有机械感应的内部真空的情况下,外部环境力会产生亚平板压力,这是影响ra进入关岛的主要因素。室内ra势可与潜在地质为石灰岩的位置相关。此外,ra源似乎在这些石灰石表面的前几英尺之内,而不是均匀分布在整个石灰石中。地震活动对ra进入的影响是短暂的,除非结构发生重大损坏。在平静的天气条件下entry的进入也可能是海潮上升和下降的函数。

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