Wave Velocity in Sandstone and Mudstone under High Temperature and Overpressure in Yinggehai Basin

Author:

Liu Zichun,Du Xiangdong,Zhu Zhenyu,Li Xin

Abstract

Wave velocity under different pressure and temperature (PT) conditions plays an important role in the exploration of oil and gas reservoirs. We obtained the mineral composition and porosity of 20 underground sandstone and mudstone samples in Yinggehai Basin via X-ray diffraction and porosity measurements. Using high-frequency ultrasound, the P- and S-wave velocities of four samples under high temperature and overpressure conditions were found to vary significantly, owing to the material composition and porosity. According to the comparison between the experimental conclusion and the well-logging data, the genesis of false bright spot and dark spot gas reservoirs in the study area was analyzed. The variation in P-wave velocity under different temperature and pressure conditions was explained with the PT coefficient. The traditional pressure–velocity and temperature–velocity prediction methods were improved and applied to well-logging data. Herein, the velocity of P- or S-waves of sand and mudstone under high temperature and overpressure via rock physics experiments and the genesis of false bright spot and dark spot gas reservoirs in the Yinggehai Basin was observed. Overall, the results serve as a theoretical basis for seismic exploration in the study area.

Funder

National Nature Science Foundation Project

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

Reference39 articles.

1. An Analysis of Flat Spot Features on a Gas-Water Interface in the Middle-Deep Overpressure zone, Yinggehai Basin;Pan;China Offshore Oil Gas,2014

2. Key Challenges and Strategies for the Success of Natural Gas Exploration in Mid-Deep Strata of the Yinggehai Basin;Pei;Acta Pet. Sin.,2011

3. Fine Description and Prediction of Seismic Attributes of HPHT Gas Reservoir in the Yinggehai Basin;Zhou;Nat. Gas Ind.,2013

4. Identification of Low Velocity Mudstone in the Middeep Overpressure zone, Yinggehai Basin;Pei;Oil Geophys. Prospect.,2016

5. The effect of high temperature and high confining pressure on compressional wave velocities in quartz-bearing and quartz-free igneous and metamorphic rocks

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