A new method for the empirical conversion of logging data to clay mineral fraction in the Nankai accretionary prism

被引:0
作者
Suguru Yabe
Rina Fukuchi
Yohei Hamada
Gaku Kimura
机构
[1] National Institute of Advanced Industrial Science and Technology (AIST),Geological Survey of Japan
[2] Dia Consultants Co.,Geoengineering Headquarters
[3] Ltd.,Department of Marine Environment and Resources
[4] Institute for Extra-cutting-edge Science and Technology Avant-garde Research,undefined
[5] Kochi Institute for Core Sample Research,undefined
[6] Japan Agency for Marine-Earth Science and Technology,undefined
[7] Tokyo University of Marine Science and Technology,undefined
来源
Earth, Planets and Space | / 72卷
关键词
Clay mineral fraction; Logging while drilling; Natural gamma ray log; Accretionary prism; Nankai Trough;
D O I
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摘要
Sediment lithology, especially the clay mineral fraction, is basic geologic information, which is important for understanding faulting and evolutionary process of the accretionary prism. During scientific drilling, the clay mineral fraction is measured using X-ray diffraction analyses of samples from the acquired cores. However, coring in an accretionary prism is sometimes difficult, which hinders the acquisition of clay mineral fraction data. This study details the development of a new method used to empirically estimate the clay mineral fraction from the electrical resistivity and natural gamma ray logs obtained from the Kumano section of the Nankai Tough, where multiple scientific drilling expeditions have been conducted. This method is composed of two steps. First, porosity is estimated using electrical resistivity logs. In order to compensate for the effect of porosity, the natural gamma ray logs are then normalized using (1 − porosity). Second, the normalized natural gamma ray logs are converted into clay mineral fractions using an empirical conversion function. This empirical function was determined by comparing all available normalized natural gamma ray logs and clay mineral fractions data collected from the Kumano section of the Nankai Trough. As a byproduct of the porosity estimations, thermal conductivity and temperature depth profiles were also estimated for all of the logging sites. As electrical resistivity logs and natural gamma ray logs are essential measurements made during scientific drilling, this new method can be applied to future drilling expeditions in the Nankai Trough. Although the empirical conversion function established in this study is valid only at the Kumano section of the Nankai trough, the same procedure can be applicable to other subduction zones to establish local empirical conversion functions if enough data are available. The clay mineral fraction depth profile estimated using this method can provide useful information for various geological studies, including sedimentology and structural geology of the shallow accretionary prism.[graphic not available: see fulltext]
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  • [31] Frederik MCG(2019)Simultaneous estimation of in situ porosity and thermal structure from core sample measurements and resistivity log data at Nankai accretionary prism Earth Planets Space undefined undefined-undefined
  • [32] Guèrin G(undefined)undefined undefined undefined undefined-undefined
  • [33] Hamahashi M(undefined)undefined undefined undefined undefined-undefined
  • [34] House BM(undefined)undefined undefined undefined undefined-undefined
  • [35] Jeppson TN(undefined)undefined undefined undefined undefined-undefined
  • [36] Kachovich S(undefined)undefined undefined undefined undefined-undefined
  • [37] Kenigsberg AR(undefined)undefined undefined undefined undefined-undefined
  • [38] Kuranaga M(undefined)undefined undefined undefined undefined-undefined
  • [39] Kutterolf S(undefined)undefined undefined undefined undefined-undefined
  • [40] Mitchison FL(undefined)undefined undefined undefined undefined-undefined