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March 14, 2026Minerals0 citationsOpen Access

Mineralogical and Diagenetic Controls on Reservoir Quality in Mixed Sedimentary Systems: Neogene Youshashan Formation, Western Qaidam Basin

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YYYifan YangJWJiongfan WeiQLQi Li

Key Points

  • The aim is to quantify mineralogical and diagenetic influences on pore systems and flow characteristics in the Youshashan Formation.
  • Integrated whole-rock XRD and log-derived mineral profiles analysis
  • Thin-section and SEM petrography assessments
  • NMR T2 spectra evaluations
  • Mercury injection capillary pressure (MICP) tests
  • Water-drop test for screening pore connectivity
  • Algal limestones displayed greater average porosity (23.17%) and permeability (54.3 mD) compared to dolomitic rocks.
  • Dissolution-related and dolomitization-related pores significantly contribute to the pore space.
  • Water-drop behaviors serve as a rapid screening method for reservoir quality.
  • Higher dolomite content correlates with increased porosity but shows no consistent link to permeability.

Abstract

Reservoir quality in shallow lacustrine-mixed siliciclastic–carbonate systems is commonly governed by mineral assemblages and diagenetic modification. Here we investigate the Neogene Youshashan Formation (Oil Groups III–V) in the Nanyishan area, western Qaidam Basin, to quantify mineralogical and diagenetic controls on pore systems and flow. We integrate whole-rock XRD and log-derived mineral profiles with thin-section/SEM petrography, NMR T2 spectra, mercury injection capillary pressure (MICP), and a water-drop test. Dissolution-related pores and dolomitization-related intercrystalline pores dominate the pore space, whereas cementation and clay-related filling/coating locally restrict pore throats and connectivity. Algal limestones (average porosity 23.17% and permeability 54.3 mD; MICP r50 = 0.085 μm) show better reservoir quality than dolomitic rocks (average porosity 17.24% and permeability 15.13 mD; MICP r50 = 0.039 μm), consistent with more effective pore throat networks. In Oil Group III (Well NQ2-6-2), higher dolomite content is generally associated with higher porosity but shows no systematic relationship with permeability, highlighting the primacy of connected pore throats. Water-drop behaviors (beading, semi-beading, infiltration) provide a rapid, semi-quantitative screening indicator when interpreted together with pore throat metrics, and support a four-class reservoir-typing scheme (Types I–III and non-reservoir) for sweet-spot identification in mixed lacustrine reservoirs.

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Cite This Study

Yang et al. (2026) studied this question.

synapsesocial.com/papers/69b4fb8db39f7826a300bcb5https://doi.org/10.3390/min16030296
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