Skip to main content
U.S. Department of Energy
Office of Scientific and Technical Information

Kinetic modeling of quartz cementation and porosity loss in deeply buried sandstone reservoirs

Journal Article · · AAPG Bulletin
OSTI ID:249780
 [1]
  1. Rogaland Research, Stavanger (Norway)

A mathematically simple kinetic model simulates quartz cementation and the resulting porosity loss in quartzose sandstones as a function of temperature history. Dissolved silica is considered to be sourced from quartz dissolution at stylotites or individual quartz grain contacts containing clay or mica, and diffuses short distances to sites of precipitation on clean quartz surfaces. The modeled sandstone volume is located between stylolites, and no quartz dissolution or grain interpenetration takes place within this volume. After quartz cementation starts, compactional porosity loss is typically minor, and porosity loss within the modeled sandstone volume is therefore considered to be equal to the volume of precipitated quartz cement. The quartz cementation process is modeled as a precipitation rate-controlled reaction where quartz precipitation rate per unit time and surface area can be expressed by an empirically determined logarithmic function of temperature. When the sandstone`s temperature history is known, precipitation rate per unit time and surface area can be expressed as a function of time, and the amount of quartz cement precipitated within a certain time interval can be calculated by multiplying the precipitation rate function with the surface area available for quartz precipitation and integrating with respect to time. Because quartz surface area will change as quartz cement precipitation proceeds, the calculations are performed for short time steps, and quartz surface area is adjusted after each time step. The total amount of quartz cement precipitated during a sandstone`s burial history and the corresponding porosity loss are found by taking the sum of the increments of quartz cement precipitated during each time step.

OSTI ID:
249780
Journal Information:
AAPG Bulletin, Journal Name: AAPG Bulletin Journal Issue: 5 Vol. 80; ISSN 0149-1423; ISSN AABUD2
Country of Publication:
United States
Language:
English

Similar Records

A model for the effect of illitization on porosity and quartz cementation of sandstones
Journal Article · Sun Oct 31 23:00:00 EST 1993 · Journal of Sedimentary Petrology · OSTI ID:142163

Precipitation rates for quartz cement in sandstones determined by fluid-inclusion microthermometry and temperature-history modeling
Journal Article · Thu Mar 31 23:00:00 EST 1994 · Journal of Sedimentary Research - Section A; (United States) · OSTI ID:7233621

A combined diffusion/kinetic/thermodynamic framework for the prediction of porosity reduction in sedimentary basin sandstones over geologic timeframes
Conference · Tue Dec 31 23:00:00 EST 1991 · Geological Society of America, Abstracts with Programs; (United States) · OSTI ID:5578787