首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Specific variations of air temperature and relative humidity around the time of Michoacan earthquake M8.1 Sept. 19, 1985 as a possible indicator of interaction between tectonic plates
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Specific variations of air temperature and relative humidity around the time of Michoacan earthquake M8.1 Sept. 19, 1985 as a possible indicator of interaction between tectonic plates

机译:1985年9月19日M8.1地震前后,气温和相对湿度的特定变化可能是构造板块相互作用的指标

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The recent development of the Lithosphere-Atmosphere-Ionospbere (LAI) coupling model and experimental data of remote sensing satellites on thermal anomalies before major strong earthquakes have demonstrated that radon emanations in the area of earthquake preparation can produce variations of the air temperature and relative humidity. Specific repeating pattern of humidity and air temperature variations was revealed as a result of analysis of the meteorological data for several tens of strong earthquakes all over the world. The main physical process responsible for the observed variations is the latent heat release due to water vapor condensation on ions produced as a result of air ionization by energetic alpha-particles emitted by Rn-222. The high effectiveness of this process was proved by the laboratory and field experiments; hence the specific variations of air humidity and temperature can be used as indicator of radon variations before earthquakes. We analyzed the historical meteorological data all over the Mexico around the time of one of the most destructive earthquakes (Michoacan earthquake M8.1) that affected the Mexico City on September 19, 1985. Several distinct zones of specific variations of the air temperature and relative humidity were revealed that may indicate the different character of radon variations in different parts of Mexico before the Michoacan earthquake. The most interesting result on the specific variations of atmosphere parameters was obtained at Baja California region close to the border of Cocos and Rivera tectonic plates. This result demonstrates the possibility of the increased radon variations not only in the vicinity of the earthquake source but also at the border of interacting tectonic plates. Recent results on Thermal InfraRed (TIR) anomalies registered by Meteosat 5 before the Gujarat earthquake M7.9 on 26 of January 2001 supports the idea on the possibility of thermal effects at the border of interacting tectonic plates. (c) 2006 Elsevier B.V All rights reserved.
机译:大地震前的岩石圈-大气-电离层(LAI)耦合模型和遥感卫星关于热异常的实验数据的最新发展表明,地震准备区的ra辐射会产生气温和相对湿度的变化。通过对全球数十次强地震的气象数据进行分析,揭示了湿度和气温变化的特定重复模式。导致观测到的变化的主要物理过程是由于水汽凝结在离子上而产生的潜热释放,这些离子是由Rn-222发射的高能α粒子通过空气电离而产生的。实验室和现场实验证明了该方法的高效率。因此,空气湿度和温度的特定变化可以用作地震前ra变化的指标。我们分析了1985年9月19日影响墨西哥城的最具破坏性的地震之一(米却肯州M8.1级地震)前后整个墨西哥的历史气象数据。气温和相对湿度的特定变化有几个不同的区域揭示了湿度,这可能表明在米却肯州地震之前墨西哥不同地区的don变化特征不同。在靠近科科斯和里维拉构造板块边界的下加利福尼亚州地区,获得了有关大气参数特定变化最有趣的结果。该结果表明,不仅在震源附近而且在相互作用的构造板块的边界上,ra变化增加的可能性也很大。 Meteosat 5在2001年1月26日古吉拉特邦M7.9地震之前记录的热红外(TIR)异常的最新结果,支持了在相互作用的构造板块边界可能产生热效应的想法。 (c)2006 Elsevier B.V保留所有权利。

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