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首页> 外文期刊>Journal of Geoscience and Environment Protection >The Application of the Generalized Finite Difference Method (GFDM) for Modelling Geophysical Test
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The Application of the Generalized Finite Difference Method (GFDM) for Modelling Geophysical Test

机译:广义有限差分法(GFDM)在地球物理测试建模中的应用

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摘要

The possibility of using a nodal method allowing irregular distribution of nodes in a natural way is one of the main advantages of the generalized finite difference method (GFDM) with regard to the classical finite difference method. Moreover, this feature has made it one of the most-promising meshless methods because it also allows us to reduce the time-consuming task of mesh generation and the numerical solution of integrals. This characteristic allows us to shape geological features easily whilst maintaining accuracy in the results, which can be a source of great interest when dealing with this kind of problems. Two widespread geophysical investigation methods in civil engineering are the cross-hole method and the seismic refraction method. This paper shows the use of the GFDM to model the aforementioned geophysical investigation tests showing precision in the obtained results when comparing them with experimental data.
机译:使用节点方法以自然方式不规则分布节点的可能性是广义有限差分方法(GFDM)相对于经典有限差分方法的主要优点之一。而且,此功能使其成为最有希望的无网格方法之一,因为它还使我们能够减少网格生成和积分的数值解的费时工作。这种特性使我们能够轻松地塑造地质特征,同时保持结果的准确性,这在处理此类问题时可能引起人们极大的兴趣。在土木工程中,两种广泛的地球物理调查方法是跨孔方法和地震折射方法。本文显示了GFDM的使用,对上述地球物理调查测试进行了建模,当与实验数据进行比较时,显示出所获得结果的精度。

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