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水的物理状态控制着辉长岩构成的断层的摩擦力。

Physical state of water controls friction of gabbro-built faults.

作者信息

Feng Wei, Yao Lu, Cornelio Chiara, Gomila Rodrigo, Ma Shengli, Yang Chaoqun, Germinario Luigi, Mazzoli Claudio, Di Toro Giulio

机构信息

Dipartimento di Geoscienze, Università degli Studi di Padova, Padua, Italy.

State Key Laboratory of Earthquake Dynamics, Institute of Geology, China Earthquake Administration, Beijing, China.

出版信息

Nat Commun. 2023 Aug 8;14(1):4612. doi: 10.1038/s41467-023-40313-x.

Abstract

Earthquakes often occur along faults in the presence of hot, pressurized water. Here we exploit a new experimental device to study friction in gabbro faults with water in vapor, liquid and supercritical states (water temperature and pressure up to 400 °C and 30 MPa, respectively). The experimental faults are sheared over slip velocities from 1 μm/s to 100 mm/s and slip distances up to 3 m (seismic deformation conditions). Here, we show with water in the vapor state, fault friction decreases with increasing slip distance and velocity. However, when water is in the liquid or supercritical state, friction decreases with slip distance, regardless of slip velocity. We propose that the formation of weak minerals, the chemical bonding properties of water and (elasto)hydrodynamic lubrication may explain the weakening behavior of the experimental faults. In nature, the transition of water from liquid or supercritical to vapor state can cause an abrupt increase in fault friction that can stop or delay the nucleation phase of an earthquake.

摘要

地震常沿着存在高温、高压水的断层发生。在此,我们利用一种新的实验装置,研究辉长岩断层在蒸汽、液态和超临界状态的水(水温及水压分别高达400°C和30MPa)作用下的摩擦情况。实验断层在1μm/s至100mm/s的滑动速度以及长达3m的滑动距离(地震变形条件)下发生剪切。在此,我们发现,在蒸汽状态的水作用下,断层摩擦力随滑动距离和速度的增加而减小。然而,当水处于液态或超临界状态时,摩擦力随滑动距离减小,与滑动速度无关。我们认为,弱矿物的形成、水的化学键合特性以及(弹性)流体动力润滑可能解释了实验断层的弱化行为。在自然界中,水从液态或超临界状态转变为蒸汽状态会导致断层摩擦力突然增加,从而可能阻止或延迟地震的成核阶段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b137/10409772/5d2f4bba2450/41467_2023_40313_Fig1_HTML.jpg

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