Rock Physics And Phase Relations A Handbook Of Physical Constants Pdf

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The Rock Physics Handbook addresses the relationships between geophysical observations and the underlying physical properties of rocks.

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Magnetic mineralogy

Zong, Zhaoyun, and Man Jiang. Pressure is a significant factor affecting moduli and velocities of shale gas or oil reservoir. One novel iterative rock physical model building approach of shale is initially proposed in this study to analyze the effect of the pressure on shale by introducing the pore space stiffness theory into the procedure of model building.

Pore space stiffness theory holds that like the solid matrix of rocks, pores has its own stiffness which is related to the effective pressure. We implement plenty of numerical tests to analyze how the pressure affects the shale by rock physical modelling, and find out the most contributive factor to the moduli and velocities in shale.

The result shows that bulk modulus, shear modulus and elastic wave velocities increase significantly with the increase of effective pressure before the effective pressure achieving a critical value, and tend to be constant when the effective pressure goes beyond the critical pressure.

By comparing the effect of pressure, porosity, crack content, water saturation and minerals, we found that the most contributive mineral is clay, and porosity has the greatest impact on moduli and velocities of shale among other factors.

Sign In or Register. Advanced Search. Sign In. Skip Nav Destination Proceeding Navigation. Close mobile search navigation. Day 3 Tue, September 17, Previous Paper Next Paper. Article Navigation. Influencing factors analysis of the elastic properties of shale with rock physical model including pressure effects Zhaoyun Zong ; Zhaoyun Zong.

China University of Petroleum East China. This Site. Google Scholar. Man Jiang Man Jiang. Paper Number: SEG Published: September 15 You do not currently have access to this content. Sign in Don't already have an account? Personal Account. You could not be signed in. Please check your username and password and try again. Sign In Reset password. Pay-Per-View Access. Buy This Article. Annual Article Package — Buy Downloads. View Your Downloads. Latest Conference Proceeding Alert.

Two-stage rock-physics modeling of the elastic properties of organic-rich shales SEG Resources Terms of Use Privacy. Subscribe Subscribe. Close Modal. This site uses cookies. By continuing to use our website, you are agreeing to our privacy policy.

the rock physics handbook 3rd edition

Zong, Zhaoyun, and Man Jiang. Pressure is a significant factor affecting moduli and velocities of shale gas or oil reservoir. One novel iterative rock physical model building approach of shale is initially proposed in this study to analyze the effect of the pressure on shale by introducing the pore space stiffness theory into the procedure of model building. Pore space stiffness theory holds that like the solid matrix of rocks, pores has its own stiffness which is related to the effective pressure. We implement plenty of numerical tests to analyze how the pressure affects the shale by rock physical modelling, and find out the most contributive factor to the moduli and velocities in shale. The result shows that bulk modulus, shear modulus and elastic wave velocities increase significantly with the increase of effective pressure before the effective pressure achieving a critical value, and tend to be constant when the effective pressure goes beyond the critical pressure. By comparing the effect of pressure, porosity, crack content, water saturation and minerals, we found that the most contributive mineral is clay, and porosity has the greatest impact on moduli and velocities of shale among other factors.

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This paper presents an application of rock physics templates constructed with the use of the granular effective medium theory and the shale model to estimate the elastic properties of the Silurian and Ordovician shale formations from the Baltic Basic, Poland. The author uses available logging data from three nearby wells and their petrophysical interpretation to distinguish various lithologies and to determine average matrix mineral composition of each lithology group, essential in further rock physics modelling. Anisotropy estimation and investigation of the relation between various petrophysical parameters precede the rock physics modelling. These two lithology groups present own trends, which are related to increasing kerogen and carbonate minerals contents, respectively. The trends are the subject of rock physics modelling. Granular effective medium rock physics templates are constructed for each lithology group. The rock physics analyses reveal that the elastic properties of strongly compacted shales, including shales with organic matter, might be successfully described by the lower modified Hashin—Shtrikman bound, which is useful in compaction trend modelling.


PDF | On Jan 1, , C Clauser and others published Rock Physics and Phase Relations. A Handbook of Physical Constants | Find, read and cite all the.


A comparison of rock physics models for fluid substitution in carbonate rocks

Optimizing the performance of wet drum magnetic separators. Anglo American Technical Division. The difference in the magnetic properties of minerals is the basis for magnetic separation.

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rock physics & phase relations: a handbook of physical constants

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Ebook Rock Physics Phase Relations A Handbook Of Physical Constants

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The purpose of this Handbook is to provide, in highly accessible form, selected critical Rock Physics and Phase Relations: A Handbook of Physical Constants.


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  1. Mercer J.

    This study aims to preparation, identify the content, and determine the type of iron oxide on the magnetic material from Iron Sand Lansilowo.

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