Mechanical properties of sandstone using non-destructive method
The understanding of physical and mechanical properties of rock is considered as critical in drilling, geo-engineering, and construction applications. As an example, the awareness of these rock parameters contributes to avoid or minimizing instability around the wellbore while drilling. The laborato...
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Saint-Petersburg Mining University
2020-03-01
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doaj-ac93e04c4d414e4cbe4d4bba757a28e22020-11-25T01:44:29ZengSaint-Petersburg Mining UniversityZapiski Gornogo Instituta2411-33362541-94042020-03-01241111311710.31897/PMI.2020.1.113Mechanical properties of sandstone using non-destructive methodHerimitsinjo RAJAOALISON0Albert ZLOTKOWSKI1Gérard RAMBOLAMANANA2AGH University of Science and Technology, Kraków, PolandAGH University of Science and Technology, Kraków, PolandInstitute and Observatory of Geophysics of Antananarivo, Antananarivo, MadagascarThe understanding of physical and mechanical properties of rock is considered as critical in drilling, geo-engineering, and construction applications. As an example, the awareness of these rock parameters contributes to avoid or minimizing instability around the wellbore while drilling. The laboratory experiment of understanding of these parameters can be done in two-different ways: static, where the sample subjects to destruction after the test and dynamic, known as non-destruction method. The non-destructive method using ultrasonic waves under a series of different stress conditions, starting from 7 to 56 MPa with incrementation of 7MPa, has been used in this paper in order to characterize the mechanical properties of dry Zbylutów sandstone at 20 and 80°C. The velocity of primary (P) and secondary (S) waves within these ranges has been recorded in order to understand the behavior of the mechanical properties. The results showed that the Young’s modulus, bulk modulus, shear modulus, and Lame’s constant of Zbylutów sandstone have a positive correlation with good coefficient correlation with the increased stress, while the Poisson’s ratio showed a negative correlation. Besides, the effect of temperature on the rock parameters is approved by the decrease of primary wave velocity in this two-different temperature range. Such results are necessary when preparing the appropriate mud weight for drilling process, which is related to wellbore instability.http://pmi.spmi.ru/index.php/pmi/article/view/8556/8886mechanical propertiesnon-destructive methodsandstonestressestemperature effect |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Herimitsinjo RAJAOALISON Albert ZLOTKOWSKI Gérard RAMBOLAMANANA |
spellingShingle |
Herimitsinjo RAJAOALISON Albert ZLOTKOWSKI Gérard RAMBOLAMANANA Mechanical properties of sandstone using non-destructive method Zapiski Gornogo Instituta mechanical properties non-destructive method sandstone stresses temperature effect |
author_facet |
Herimitsinjo RAJAOALISON Albert ZLOTKOWSKI Gérard RAMBOLAMANANA |
author_sort |
Herimitsinjo RAJAOALISON |
title |
Mechanical properties of sandstone using non-destructive method |
title_short |
Mechanical properties of sandstone using non-destructive method |
title_full |
Mechanical properties of sandstone using non-destructive method |
title_fullStr |
Mechanical properties of sandstone using non-destructive method |
title_full_unstemmed |
Mechanical properties of sandstone using non-destructive method |
title_sort |
mechanical properties of sandstone using non-destructive method |
publisher |
Saint-Petersburg Mining University |
series |
Zapiski Gornogo Instituta |
issn |
2411-3336 2541-9404 |
publishDate |
2020-03-01 |
description |
The understanding of physical and mechanical properties of rock is considered as critical in drilling, geo-engineering, and construction applications. As an example, the awareness of these rock parameters contributes to avoid or minimizing instability around the wellbore while drilling. The laboratory experiment of understanding of these parameters can be done in two-different ways: static, where the sample subjects to destruction after the test and dynamic, known as non-destruction method. The non-destructive method using ultrasonic waves under a series of different stress conditions, starting from 7 to 56 MPa with incrementation of 7MPa, has been used in this paper in order to characterize the mechanical properties of dry Zbylutów sandstone at 20 and 80°C. The velocity of primary (P) and secondary (S) waves within these ranges has been recorded in order to understand the behavior of the mechanical properties. The results showed that the Young’s modulus, bulk modulus, shear modulus, and Lame’s constant of Zbylutów sandstone have a positive correlation with good coefficient correlation with the increased stress, while the Poisson’s ratio showed a negative correlation. Besides, the effect of temperature on the rock parameters is approved by the decrease of primary wave velocity in this two-different temperature range. Such results are necessary when preparing the appropriate mud weight for drilling process, which is related to wellbore instability. |
topic |
mechanical properties non-destructive method sandstone stresses temperature effect |
url |
http://pmi.spmi.ru/index.php/pmi/article/view/8556/8886 |
work_keys_str_mv |
AT herimitsinjorajaoalison mechanicalpropertiesofsandstoneusingnondestructivemethod AT albertzlotkowski mechanicalpropertiesofsandstoneusingnondestructivemethod AT gerardrambolamanana mechanicalpropertiesofsandstoneusingnondestructivemethod |
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