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首页> 外文期刊>The Journal of Chemical Physics >Amplitude effects on seismic velocities: How low can we go?
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Amplitude effects on seismic velocities: How low can we go?

机译:对地震速度的幅度效应:我们可以多么低?

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alpha-quartz is one of the most important SiO2 polymorphs because it is the basis of very common minerals, especially for seabed materials with geoscientific importance. The elastic characterization of these materials is particularly relevant when the properties governing phonon and sound propagation are involved. These studies are especially interesting for oil exploration purposes. Recently, we published a new method that constitutes to the best of our knowledge the first attempt to recreate longitudinal and transversal perturbations in a simulation box to observe their propagation through the crystal by means of a set of descriptors [D. Melgar et al., J. Phys. Chem. C 122, 3006-3013 (2018)]. The agreement with the experimental S- and P-wave velocities was rather excellent. Thus, an effort has been undertaken to deepen the particularities of this new methodology. Here, bearing in mind this encouraging initial methodology-development progress, we deepen our knowledge of the particularities of this new methodology in presenting a systematic investigation of the implementation of the perturbation source. This includes new ways of creating the perturbation, as well as analyzing the possible effects the perturbation amplitude could have on the resultant velocities. In addition, different force fields were tested to describe the interatomic interactions. The lack of dependence of the seismic velocities on the way the perturbation is created and the perturbation amplitude, and the good agreement with the experimental results are the main reasons that allow the definition of this new methodology as robust and reliable. These qualities are consolidated by the physical behavior of the calculated velocities in the presence of vacancies and under stress. The development of this method opens up a new line of research of calculating seismic velocities for geophysically relevant materials in a systematic way, with full control not only on the sample features (composition, porosi
机译:Alpha-Quartz是最重要的SiO2多晶型物之一,因为它是非常普遍的矿物质的基础,特别是对于具有地球科学的海底材料。当涉及声子和声音传播的特性时,这些材料的弹性表征特别相关。这些研究对于石油勘探目的特别有趣。最近,我们发表了一种新方法,该方法构成了我们所知,首次尝试在仿真箱中重新创建纵向和横向扰动,通过一组描述符观察它们通过晶体的传播[D.梅尔加等人。,J. phys。化学。 C 122,3006-3013(2018)]。与实验性S和P波速度的协议相当优异。因此,已经努力加深了这种新方法的特殊性。在这里,考虑到这一令人鼓舞的初步方法发展进步,我们深化了我们对这种新方法的特殊性的了解,在提出了对扰动来源实施的系统调查中。这包括创建扰动的新方法,以及分析可能对所得速度具有扰动幅度的可能效果。此外,测试了不同的力场以描述内部间相互作用。在创造扰动和扰动幅度的方式上缺乏震动速度以及与实验结果的良好协议是允许定义这种新方法的主要原因是强大可靠的主要原因。这些品质通过在存在空位和压力下的计算速度的物理行为来整合。这种方法的开发开辟了一种新的研究,可以以系统的方式计算地球物物相关材料的地震速度,不仅在样本特征上完全控制(组成,波罗索

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