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首页> 外文期刊>Environmental Monitoring and Assessment >Influence of meteorological parameters on the soil radon (Rn~(222)) emanation in Kutch, Gujarat, India
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Influence of meteorological parameters on the soil radon (Rn~(222)) emanation in Kutch, Gujarat, India

机译:气象参数对印度古吉拉特邦库奇(Kutch)土壤soil(Rn〜(222))排放的影响

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摘要

The soil radon (Rn-222) and thoron (Rn-220) concentrations recorded at Badargadh and Desalpar observatories in the Kutch region of Gujarat, India, have been analyzed to study the sources of the radon emissions, earthquake precursors, and the influence of meteorological parameters on radon emission. Radon and meteorological parameters were recorded using Radon Monitor RMT 1688-2 at these two stations. We used the radon data during February 21, 2011 to June 8, 2011, for Badargadh and March 2, 2011 to May 19, 2011, for the Desalpar station with a sampling interval of 10 min. It is observed that the radon concentrations at Desalpar varies between 781 and 4320 Bq m(-3) with an average value of 2499 Bq m(-3,) whereas thoron varies between 191 and 2017 Bq m(-3) with an average value of 1433.69 Bq m(-3). The radon concentration at Badargadh varies between 264 and 2221 Bq m(-3) with an average value of 1135.4 Bq m(-3), whereas thoron varies between 97 and 556 Bq m(-3). To understand how the meteorological parameters influence radon emanation, the radon and other meteorological parameters were correlated with linear regression analysis. Here, it was observed that radon and temperature are negatively correlated whereas radon and other two parameters, i.e., humidity and pressure are positively correlated. The cross correlogram also ascertains similar relationships between radon and other parameters. Further, the ratio between radon and thoron has been analyzed to determine the deep or shallow source of the radon emanation in the study area. These results revealed that the ratio radon/thoron enhanced during this period which indicates the deeper source contribution is prominent. Incidentally, all the local earthquakes occurred with a focal depth of 1825 km at the lower crust in this region. We observed the rise in the concentrations of radon and the ratio radon/thoron at Badargadh station before the occurrence of the local earthquakes on 29th March 2011 (M 3.7) and 17th May 2011 (M 4.2). We clearly observed the radon level crossing the mean + 2*sigma level before the occurrence of these events. We conclude that these enhanced radon emissions are linked with alteration of the crustal stress/strain in this region as this observing station is near the epicenters of the earthquakes. We did not observe considerable variations in radon at the Desalpar station which is far from the earthquake location.
机译:对印度古吉拉特邦库奇地区Badargadh和Desalpar天文台记录的土壤soil(Rn-222)和tho(Rn-220)浓度进行了分析,以研究ra排放的来源,地震前兆以及地震的影响。 ra排放的气象参数。使用Radon Monitor RMT 1688-2在这两个站记录了和气象参数。我们在2011年2月21日至2011年6月8日的Badargadh和2011年3月2日至2011年5月19日的Desalpar站使用了used数据,采样间隔为10分钟。观察到,Desalpar的ra浓度在781和4320 Bq m(-3)之间变化,平均值为2499 Bq m(-3,),而在191和2017 Bq m(-3)之间变化平均值的1433.69 Bq m(-3)。 Badargadh的浓度在264和2221 Bq m(-3)之间变化,平均值为1135.4 Bq m(-3),而在97和556 Bq m(-3)之间变化。为了了解气象参数如何影响ra的散发,将linear和其他气象参数与线性回归分析相关联。在此,观察到ra与温度呈负相关,而ra与其他两个参数即湿度和压力呈正相关。交叉相关图还可确定ra与其他参数之间的相似关系。此外,已对ra与的比率进行了分析,以确定研究区域中e释放的深或浅来源。这些结果表明ra / ra比在此期间增加,表明更深的源贡献是突出的。顺便说一句,该地区下地壳的所有地震都发生在震源深度为1825 km的地方。我们观察到在2011年3月29日(M 3.7)和2011年5月17日(M 4.2)发生局部地震之前,Badargadh站的ra浓度和ra / tho之比升高。在这些事件发生之前,我们清楚地观察到crossing水平越过平均值+ 2 * sigma水平。我们得出的结论是,这些this气排放量的增加与该地区地壳应力/应变的变化有关,因为该观测站位于地震震中附近。我们在远离地震地点的Desalpar站没有观察到ra的明显变化。

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