Quantifying the role of hydrothermal alteration in creating geothermal and epithermal mineral resources: The Ohakuri ignimbrite (Taupo Volcanic Zone, New Zealand)

被引:64
作者
Heap, Michael J. [1 ]
Gravley, Darren M. [2 ]
Kenned, Ben M. [2 ]
Gilg, H. Albert [3 ]
Bertolett, Elisabeth [2 ]
Barker, Shaun L. L. [4 ]
机构
[1] Univ Strasbourg, Inst Phys Globe Strasbourg, Geophys Expt, EOST,UMR 7516,CNRS, Strasbourg, France
[2] Univ Canterbury, Dept Geol Sci, Christchurch, New Zealand
[3] Tech Univ Munich, Lehrstuhl Ingenieurgeol, Munich, Germany
[4] Univ Tasmania, CODES, Hobart, Tas, Australia
关键词
Geothermal; Epithermal; Hydrothermal alteration; Porosity; Permeability; Uniaxial compressive strength; PERMEABILITY EVOLUTION; FRACTURE PERMEABILITY; MECHANICAL-PROPERTIES; PHYSICAL-PROPERTIES; ALTERED ROCKS; FLUID-FLOW; SYSTEM; POROSITY; FAILURE; LAVAS;
D O I
10.1016/j.jvolgeores.2019.106703
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Hydrothermal fluids can alter the chemical and physical properties of the materials through which they pass and can therefore modify the efficiency of fluid circulation. The role of hydrothermal alteration in the development of geothermal and epithermal mineral resources, systems that require the efficient hydrothermal circulation provided by fracture networks, is investigated here from a petrophysical standpoint using samples collected from a well exposed and variably altered palaeo-hydrothermal system hosted in the Ohakuri ignimbrite deposit in the Taupo) Volcanic Zone (New Zealand). Our new laboratory data show that, although quartz and adularia precipitation reduces matrix porosity and permeability, it increases the uniaxial compressive strength, Young's modulus, and propensity for brittle behaviour. The fractures formed in highly altered rocks containing quartz and adularia are also more planar than those formed in their less altered counterparts. All of these factors combine to enhance the likelihood that a silicified rock-mass will host permeability-enhancing fractures. Indeed, the highly altered silicified rocks of the Ohakuri ignimbrite deposit are much more fractured than less altered outcrops. By contrast, smectite alteration at the margins of the hydrothermal system does not significantly increase strength or Young's modulus, or significantly decrease permeability, and creates a relatively unfractured rock-mass. Using our new laboratory data, we provide permeability modelling that shows that the equivalent permeability of a silicified rock-mass will be higher than that of a less altered rock-mass or a rock-mass characterised by smectite alteration, the latter of which provides a low-permeability cap required for an economically viable hydrothermal resource. Our new data show, using a petrophysical approach, how hydrothermal alteration can produce rock-masses that are both suitable for geothermal energy exploitation (high-permeability reservoir and low-permeability cap) and more likely to host high-grade epithermal mineral veins, such as gold and silver (localised fluid flow). (C) 2020 Elsevier B.V. All rights reserved.
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页数:12
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