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Processes controlling porosity and permeability in volcanic reservoirs from the Austral and Neuquen basins, Argentina

机译:控制阿根廷南部和内乌肯盆地火山岩储层孔隙度和渗透率的过程

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摘要

Volcanic rocks develop primary and secondary porosity and permeability, depending on both their lithology and the sequence of processes involved in their formation. Primary processes (welding, deuteric crystal dissolution, gas release, flow fragmentation, and crystal shattering) may lead to high porosity and permeability, the best example of which is a nonwelded ignimbrite with well-developed gas-pipe zones. Secondary processes (different types of alteration), however, tend to decrease primary porosity. However, certain secondary processes, such as dissolution and hydraulic fracturing, may contribute to enhance total porosity and permeability. These conclusions were developed through a systematic review of reservoir quality in volcanic rocks, integrating lithology and process interpretation with petrophysical data. The said information was taken from selected cores of volcanic rocks from the Serie Tobífera unit in the Austral Basin and the Precuyano unit in the Neuquén Basin, Argentina.
机译:火山岩具有主要和次要的孔隙度和渗透率, 取决于岩性和形成过程的顺序。主要过程(焊接,氘代 晶体溶解,气体释放,流动碎裂和晶体 破碎)可能导致高孔隙率和渗透率, 最好其中一个例子是具有发达的 气管区的非焊接着火体。但是,次级过程(不同类型的蚀变) 往往会降低初级孔隙率。但是,某些 二次过程,例如溶解和水力压裂, 可能有助于提高总孔隙度和渗透率。这些 结论是通过对火山岩储层 的质量进行系统评价,并将岩性和过程 解释与岩石物理数据相结合而得出的。所述信息 取自澳大利亚盆地Serie Tobífera单元和Neuquén盆地Precuyano 单元选定的火山岩心,阿根廷。

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  • 来源
    《AAPG Bulletin》 |2007年第1期|115-129|共15页
  • 作者单位

    Consejo Nacional de Investigaciones Cientificas y Tecnicas-Servicio Geologico Minero Argentino (CONICET-SEGEMAR), Avda. Julio A. Roca 651, Ciudad de Buenos Aires, Argentina psruog@minproduccion.gov.ar patySruoga@yahoo.com.ar;

    Universidad de Buenos Aires-Consejo Nacional de Investigaciones Cientificas y Tecnicas (UBA-CONICET), Depto. de Geología, Pabellón 2, Ciudad Universitaria, Ciudad de Buenos Aires, Argentina nora@gl.fcen.uba.ar;

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