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Structural Controls on Crustal Fluid Redistribution and Hydrothermal Gold Deposits: A Review on the Suction Pump and Fault Valve Models

Journal

ECONOMIC AND ENVIRONMENTAL GEOLOGY
Volume 55, Issue 2, Pages 183-195

Publisher

KOREA SOC ECONOMIC & ENVIRONMENTAL GEOLOGY
DOI: 10.9719/EEG.2022.55.2.183

Keywords

Fault Reactivation; Hydrothermal Gold Deposit; Fluid Pressure; Suction Pump Model; Fault Valve Model

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This review introduces the suction pump and fault valve models as fluid circulation mechanisms causing hydrothermal gold deposits in the frameworks of fault mechanics. These models describe faulting-driven fluid flow and vein formation mechanisms, and provide a method to interpret the origins of hydrothermal gold deposits.
Hydrothermal gold deposits are evidence of intensive fluid flow through fault zones, and the resultant vein structures and textures reflect the fluid redistribution mechanism. This review introduces the suction pump and fault valve models as fluid circulation mechanisms causing hydrothermal gold deposits in the frameworks of the concepts of fault mechanics. The suction pump and fault valve models describe faulting-driven heterogeneous fluid flow and related vein formation mechanisms, accompanied by the cycles of (1) stress accumulation and fluid pressure build-up and (2) seismic rupture and stress/fluid pressure release. The models are available under different geological environments (stress conditions), and the vein structures and textures representing the mechanisms have similarities and differences. The suction pump and fault valve models must help better to interpret the origins of hydrothermal gold deposits in Korea and improve the efficiency of further exploration.

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