日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Fault rock heterogeneity can produce fault weakness and reduce fault stability

断层岩石的非均质性会导致断层薄弱,降低断层稳定性。

Bedford, John D; Faulkner, Daniel R; Lapusta, Nadia

A unified perspective of seismicity and fault coupling along the San Andreas Fault

圣安德烈亚斯断层沿线地震活动性和断层耦合的统一视角

Liu, Yuan-Kai; Ross, Zachary E; Cochran, Elizabeth S; Lapusta, Nadia

A Minireview on Brain Models Simulating Geometrical, Physical, and Biochemical Properties of the Human Brain.

模拟人脑几何、物理和生化特性的脑模型简述

Bouattour Yassine, Sautou Valérie, Hmede Rodayna, El Ouadhi Youssef, Gouot Dimitri, Chennell Philip, Lapusta Yuri, Chapelle Frédéric, Lemaire Jean-Jacques

Review of Neural Network Modeling of Shape Memory Alloys

形状记忆合金神经网络建模综述

Hmede, Rodayna; Chapelle, Frédéric; Lapusta, Yuri

Dynamic rupture initiation and propagation in a fluid-injection laboratory setup with diagnostics across multiple temporal scales

在流体注入实验室装置中,利用跨多个时间尺度的诊断方法,研究动态破裂的起始和扩展

Gori, Marcello; Rubino, Vito; Rosakis, Ares J; Lapusta, Nadia

Illuminating the physics of dynamic friction through laboratory earthquakes on thrust faults

通过实验室地震在逆冲断层上的应用,阐明动态摩擦的物理机制

Tal, Yuval; Rubino, Vito; Rosakis, Ares J; Lapusta, Nadia

Publisher Correction: Understanding dynamic friction through spontaneously evolving laboratory earthquakes

出版商更正:通过自发演化的实验室地震了解动态摩擦

Rubino, V; Rosakis, A J; Lapusta, N

Pressure shock fronts formed by ultra-fast shear cracks in viscoelastic materials

粘弹性材料中超快剪切裂纹形成的压力冲击波阵面

Gori, M; Rubino, V; Rosakis, A J; Lapusta, N

Understanding dynamic friction through spontaneously evolving laboratory earthquakes

通过自发演化的实验室地震了解动态摩擦

Rubino, V; Rosakis, A J; Lapusta, N

Repeating microearthquake sequences interact predominantly through postseismic slip

重复发生的微震序列主要通过震后滑动相互作用。

Lui, Semechah K Y; Lapusta, Nadia