4.6 Article

A Coupled Thermal-Hydraulic-Mechanical Nonlinear Model for Fault Water Inrush

期刊

PROCESSES
卷 6, 期 8, 页码 -

出版社

MDPI
DOI: 10.3390/pr6080120

关键词

fault water inrush; coupled THM model; nonlinear flow in fractured porous media; numerical model; warning levels of fault water inrush

资金

  1. National Natural science Foundation of China [51274135]
  2. National High Technology Research and Development Program (863 Program) of China [2015AA016404-4]
  3. State Key Research and Development Program of China [2017YFC0804108]
  4. SDUST Research Fund [2018TDJH102]

向作者/读者索取更多资源

A coupled thermal-nonlinear hydraulic-mechanical (THM) model for fault water inrush was carried out in this paper to study the water-rock-temperature interactions and predict the fault water inrush. First, the governing equations of the coupled THM model were established by coupling the particle transport equation, nonlinear flow equation, mechanical equation, and the heat transfer equation. Second, by setting different boundary conditions, the mechanical model, nonlinear hydraulic-mechanical (HM) coupling model, and the thermal-nonlinear hydraulic-mechanical (THM) coupling model were established, respectively. Finally, a numerical simulation of these models was established by using COMSOL Multiphysics. Results indicate that the nonlinear water flow equation could describe the nonlinear water flow process in the fractured zone of the fault. The mining stress and the water velocity had a great influence on the temperature of the fault zone. The temperature change of the fault zone can reflect the change of the seepage field in the fault and confined aquifer. This coupled THM model can provide a numerical simulation method to describe the coupled process of complex geological systems, which can be used to predict the fault water inrush induced by coal mining activities.

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