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Determination of Cerro Blanco volcano deformation field using method of fundamental solutions

机译:基本解法确定塞罗布兰科火山变形场

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ABSTRACT According to geodetic research works, surface deformation in the form of uplift or subsidence in volcanic areas is either a sign of magma moving towards the opening of the volcano (inflation) or removal of the magma source (deflation). Using the new method of fundamental solutions (MFS) in this study, a deformation field for the surface of the volcano is calculated considering the effect of topography. MFS is a numerical technique for solving boundary value problems with known partial differential equations. This technique has not been used in volcanic deformation studies so far. Because of the simplicity and efficiency of the technique, it is also an effective tool for solving a wide range of problems in other fields of science and technology. To test the method, the displacement calculated using the MFS was compared with that of the interferometric synthetic aperture radar observations from the previous study in Cerro Blanco volcano. The volcano was in the deflation mode during this period at the rate of 1.2 cm/yr. The comparison showed a root-mean-square error (RMSE) in the order of 2 mm which represents a satisfactory agreement with the results of the observations, less than the RMSE of the analytical models considered.
机译:摘要根据大地测量研究工作,火山区中以隆起或沉降形式出现的地表变形是岩浆向火山口移动的标志(通货膨胀)或岩浆源的清除(通气)。在这项研究中,使用新的基本解法(MFS),考虑了地形的影响,计算了火山表面的变形场。 MFS是一种使用已知偏微分方程求解边值问题的数值技术。到目前为止,该技术尚未用于火山形变研究。由于该技术的简单性和效率,它还是解决其他科学技术领域中广泛问题的有效工具。为了测试该方法,将使用MFS计算的位移与先前在塞罗布兰科火山中进行的合成孔径雷达干涉观测结果进行了比较。在此期间,火山处于放气模式,速率为1.2厘米/年。比较结果显示,均方根误差(RMSE)约为2 mm,与观察结果相符,低于所考虑分析模型的均方根误差(RMSE)。

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