Perez-Oregon Jennifer, Muñoz-Diosdado Alejandro, Rudolf-Navarro Adolfo Helmut, Angulo-Brown Fernando
Departamento de Física, Escuela Superior de Física y Matemáticas, Instituto Politécnico Nacional, UP Zacatenco, Mexico City 07738, Mexico.
Solid Earth Physics Institute, Physics Department, National and Kapodistrian University of Athens, Panepistimiopolis, Zografos, 157 84 Athens, Greece.
Entropy (Basel). 2020 Aug 7;22(8):868. doi: 10.3390/e22080868.
In 1980, Ruff and Kanamori (RK) published an article on seismicity and the subduction zones where they reported that the largest characteristic earthquake (Mw) of a subduction zone is correlated with two geophysical quantities: the rate of convergence between the oceanic and continental plates () and the age of the corresponding subducting oceanic lithosphere (). This proposal was synthetized by using an empirical graph (RK-diagram) that includes the variables Mw, and . We have recently published an article that reports that there are some common characteristics between real seismicity, sandpaper experiments and a critically self-organized spring-block model. In that paper, among several results we qualitatively recovered a RK-diagram type constructed with equivalent synthetic quantities corresponding to Mw, and . In the present paper, we improve that synthetic RK-diagram by means of a simple model relating the elastic ratio of a critically self-organized spring-block model with the age of a lithospheric downgoing plate. In addition, we extend the RK-diagram by including some large subduction earthquakes occurred after 1980. Similar behavior to the former RK-diagram is observed and its SOC synthetic counterpart is obtained.
1980年,拉夫和金森(RK)发表了一篇关于地震活动和俯冲带的文章,他们在文中报告称,俯冲带最大特征地震(Mw)与两个地球物理量相关:大洋板块和大陆板块之间的汇聚速率()以及相应俯冲大洋岩石圈的年龄()。该提议通过使用包含变量Mw、和的经验图表(RK图)进行了综合阐述。我们最近发表了一篇文章,报告了实际地震活动、砂纸实验和临界自组织弹簧块模型之间存在一些共同特征。在那篇论文中,在若干结果中,我们定性地恢复了一种RK图类型,该图是用与Mw、和相对应的等效合成量构建的。在本文中,我们借助一个简单模型改进了该合成RK图,该模型将临界自组织弹簧块模型的弹性比与岩石圈俯冲板块的年龄联系起来。此外,我们通过纳入1980年之后发生的一些大型俯冲地震来扩展RK图。观察到了与之前RK图类似的行为,并得到了其自组织临界合成对应物。