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Updated: Jun 28, 2026

Expression of Cementitious Pore Solution and the Analysis of Its Chemical Composition and Resistivity Using X-ray Fluorescence
Published on: September 23, 2018
A geometric factor theory-based method for formation and cement density inversion in cased hole.
Mingjun Xie1, Belov Sergey2, Qiong Zhang1
1University of Electronic Science and Technology of China, China.
Accurate cased hole formation evaluation requires determining annular cement density. A unified inversion framework, validated by Geant4 simulations and field data, significantly improves cement and formation density measurements.
Area of Science:
- Petroleum Engineering
- Geophysics
- Nuclear Logging
Background:
- Uncertainties in cement sheath properties complicate formation density and porosity evaluation in cased holes.
- Nuclear logging tool responses are attenuated by casing and cement, with poor cementing conditions adding complexity.
- Accurate annular cement density determination is crucial for reliable cased hole formation evaluation.
Purpose of the Study:
- To establish a unified inversion framework for determining annular cement density.
- To apply this framework to azimuthal cement density evaluation and simultaneous formation-and-cement density determination.
- To validate the methodology using high-fidelity simulations and field data.
Main Methods:
- Development of a unified geometric factor theory-based inversion framework.
- High-fidelity Monte Carlo modeling using the Geant4 toolkit to simulate logging tool responses.
- Application of the framework to two distinct logging scenarios: azimuthal and multi-detector density logging.
Main Results:
- The proposed methodology achieved a maximum cement density measurement error of 0.031 g/cm³.
- A mean absolute formation density inversion error below 0.025 g/cm³ was demonstrated.
- The framework successfully adapted to different tool configurations for distinct logging scenarios.
Conclusions:
- The unified inversion framework provides a robust solution for annular cement density determination.
- The methodology enhances the accuracy of formation density and porosity evaluations in cased holes.
- Accurate cement evaluation is critical for optimizing hydrocarbon recovery and reservoir management.
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