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Analogue modeling results showing fault network evolution during multiphase triaxial strain

Description: This data set includes the results of high-resolution digital image correlation (DIC) analysis and digital elevation models (DEM) applied to analogue modelling experiments (Table 1). Six generic analogue models are extended on top of a rubber sheet. In Series A, as extension velocity increases, the initial biaxial plane strain condition evolves into triaxial constrictional or intermediate strain. Models A1 and A2 are two-phase models and Model A3 is a three-phase model. Conversely, in Series B, as extension velocity decreases, the model starts with triaxial constrictional strain and ends up with biaxial plane or intermediate triaxial strain. Models B1and B2 are two-phase models and Model B3 is a three-phase model. Detailed descriptions of the experiments can be found in Liu et al. (2025) to which this data set is supplement. The data presented here are visualized as topography, the horizontal cumulative surface strain, and incremental profiles.

Global identifier:

Doi(
    "10.5880/GFZ.FPXO.2025.001",
)

Types:

Origins: /Wissenschaft/GFZ

Tags: Flugzeug ? Topographie ? Daten ? Modellversuch ? Modellierung ? Geowissenschaften ? EPOS ? Formation of the earth ? In Situ/Laboratory Instruments ? analogue modelling results ? analogue models of geologic processes ? anlogue modelling ? multi-scale laboratories ? multiphase triaxial and biaxial strain ? the evolution of fault networks ?

License: cc-by/4.0

Language: Englisch/English

Organisations

Issued: 2025-01-01

Time ranges: 2025-01-01 - 2025-01-01

Status

Quality score

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