摩擦による破裂や地震の核形成と進化
Shahar Gvirtzman1, David S Kammer2, Mokhtar Adda-Bedia3
1The Racah Institute of Physics, The Hebrew University of Jerusalem, Jerusalem, Israel.
Nature
|January 8, 2025
まとめ
新しい理論によって,地震の核化ダイナミクスの理解が進んでいます. この研究は,遅い,無地震断裂が急速な地震断裂に先行し,地震の開始を予測するための枠組みを提供することを明らかにしています.
科学分野:
- 物理学
- 地理学
- 材料科学
背景:
- 摩擦運動は 切断裂のような破裂によって引き起こされます
- これらの断裂は自然断層の地震に似ています
- これらの急速な破裂の核形成プロセスは,破裂力学では十分に理解されていません.
研究 の 目的:
- 摩擦破裂の核形成過程を完全に記述する.
- 断裂メカニズムを拡張し,有限なインタフェースの幅を組み込む.
- 地震の核化ダイナミクスを理解するための新しい枠組みを提供する.
主な方法:
- 摩擦インターフェースの実験調査.
- 理論的なモデリングにより 骨折力学が拡張される.
- 理論モデルに有限なインタフェース幅を組み込む.
主要な成果:
- 定義されたストレスの値でゆっくりと安定したクリープが発生します.
- トポロジカル・トランジションは 緩やかなクリープと急速な断裂を結びつける.
- 地震破裂に先立つゆっくりとした無地震破裂の実証
結論:
- 断裂核化を理解するには,有限なインターフェース幅が不可欠です.
- 急速な地震破裂の先駆けである
- 開発された理論は地震核形成の過程についての洞察を提供します.
関連する概念動画
Frictional Force
7.7K
When a body is in motion, it encounters resistance because the body interacts with its surroundings. This resistance is known as friction, a common yet complex force whose behavior is still not completely understood. Friction opposes relative motion between systems in contact, but also allows us to move. Friction arises in part due to the roughness of surfaces in contact. For one object to move along a surface, it must rise to where the peaks of the surface can skip along the bottom of the...
7.7K
Stress-Strain Diagram - Brittle Materials
2.1K
Brittle materials, including glass, cast iron, and stone, exhibit unique characteristics. They fracture without considerable change in their elongation rate, indicating that their breaking and ultimate strength are equivalent. Such materials also show lower strain levels at the point of rupture. The failure in brittle materials predominantly results from normal stresses, as evidenced by the rupture created along a surface perpendicular to the applied load. These materials do not display...
2.1K
Frictional Forces on Screws
1.1K
Screws are characterized by a helical ridge known as a thread wrapped around a cylindrical shaft. They are commonly used as fasteners to hold objects together or to transmit power and motion in machines. One type of screw that is particularly useful for transmitting power is the square-threaded screw.
A jack with a square-threaded screw is a mechanical device used to lift heavy loads by applying a force at its handle. When the force is applied, the screw turns, raising the load. The screw can...
A jack with a square-threaded screw is a mechanical device used to lift heavy loads by applying a force at its handle. When the force is applied, the screw turns, raising the load. The screw can...
1.1K
Dry Friction
340
Dry friction occurs between two solid surfaces in contact as they attempt to move relative to one another. In daily life, dry friction is encountered in various forms, such as when walking on the ground, sliding an object across a table, or rubbing hands together. Despite its ubiquity, the underlying mechanisms behind dry friction are not readily visible.
To illustrate this concept, imagine a wooden crate resting on a rough, non-uniform horizontal surface. When an external force is applied to...
To illustrate this concept, imagine a wooden crate resting on a rough, non-uniform horizontal surface. When an external force is applied to...
340
Tension Response at Adherens Junctions
2.6K
The adherens junctions that anchor cells together are multi-protein complexes that dynamically adapt to mechanical stimuli such as tensile forces and shear stress. Mechanosensory proteins in these junctions can sense such mechanical stimuli and undergo a shift in their conformation, resulting in an altered function — a process called mechanotransduction.
α-Catenin as a Mechanosensory Protein
The α-catenin of adherens junctions is an allosteric protein with three VH (vinculin...
α-Catenin as a Mechanosensory Protein
The α-catenin of adherens junctions is an allosteric protein with three VH (vinculin...
2.6K
Microcracking in Concrete
100
Microcracking in concrete refers to the tiny cracks that can form within the material even before any external load is applied. These microcracks typically occur at the interface between the coarse aggregate and the hydrated cement paste, often as a result of differential volume changes prompted by variations in stress-strain behavior, as well as thermal and moisture movement. Initially, these microcracks remain stable and do not grow substantially until the concrete is stressed to about 30...
100


