Temperature effect on rock properties – an example of granite, andesite and sandstone

New method of drilling narrow vertical boreholes by controlling hydrogen combustion assumes that rocks melt and radial fractures are formed within the rock under high temperatures and pressures at the interaction of the rock and the flame. To verify the range of formed radial fractures in different...

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Main Authors: Pavol Rybár, Štefan Nižník, ¼ubomír Štrba, Marek Vojtko, Mário Molokáè, Ladislav Hvizdák, Lucia Domaracká
Format: Article
Language:English
Published: Technical University of Kosice 2015-07-01
Series:Acta Montanistica Slovaca
Subjects:
Online Access:http://actamont.tuke.sk/pdf/2015/n1/1rybar.pdf
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spelling doaj-5d5d7461900f46ecb4b2dce4cdd6273a2020-11-24T22:20:54ZengTechnical University of Kosice Acta Montanistica Slovaca1335-17882015-07-012011910.3390/ams20010001ams20010001Temperature effect on rock properties – an example of granite, andesite and sandstonePavol Rybár0Štefan Nižník1¼ubomír Štrba2Marek Vojtko3Mário Molokáè4Ladislav Hvizdák5Lucia Domaracká6Faculty of Mining, Ecology, Process Control and Geotechnology, Technical University of Košice, Letná 9, 042 00 Košice, SlovakiaFaculty of Metallurgy, Technical University of Košice, Letná 9, 042 00 Košice, SlovakiaFaculty of Mining, Ecology, Process Control and Geotechnology, Technical University of Košice, Letná 9, 042 00 Košice, SlovakiaFaculty of Metallurgy, Technical University of Košice, Letná 9, 042 00 Košice, SlovakiaFaculty of Mining, Ecology, Process Control and Geotechnology, Technical University of Košice, Letná 9, 042 00 Košice, SlovakiaFaculty of Mining, Ecology, Process Control and Geotechnology, Technical University of Košice, Letná 9, 042 00 Košice, SlovakiaFaculty of Mining, Ecology, Process Control and Geotechnology, Technical University of Košice, Letná 9, 042 00 Košice, SlovakiaNew method of drilling narrow vertical boreholes by controlling hydrogen combustion assumes that rocks melt and radial fractures are formed within the rock under high temperatures and pressures at the interaction of the rock and the flame. To verify the range of formed radial fractures in different rock types, it is needed to know in detail rock and mineral properties before and after melting process of the rock(s). Rocks extend due to the heat and contract with cold. As the rocks consist of minerals with different thermal expansion, the rock extension and contraction differs in different directions. Temperature changes cause the stress between mineral grains, resulting in microfracture formations. Rock samples of granite, andesite and sandstone were pounded into fraction less than 10 microm, melted and cooled under specific conditions, and analysed using REM and EDAX. Cooled granite melt contains shear fractures evolved across the sample due to the tensile stress in the quartz grains occurring in pounded sample. No fractures were observed in cooled melt of andesite. Cooling of melted sandstone grains resulted in evolution of highly porous material with no microfractures.http://actamont.tuke.sk/pdf/2015/n1/1rybar.pdfrock propertiestemperature impactmeltingcoolingfracture formation
collection DOAJ
language English
format Article
sources DOAJ
author Pavol Rybár
Štefan Nižník
¼ubomír Štrba
Marek Vojtko
Mário Molokáè
Ladislav Hvizdák
Lucia Domaracká
spellingShingle Pavol Rybár
Štefan Nižník
¼ubomír Štrba
Marek Vojtko
Mário Molokáè
Ladislav Hvizdák
Lucia Domaracká
Temperature effect on rock properties – an example of granite, andesite and sandstone
Acta Montanistica Slovaca
rock properties
temperature impact
melting
cooling
fracture formation
author_facet Pavol Rybár
Štefan Nižník
¼ubomír Štrba
Marek Vojtko
Mário Molokáè
Ladislav Hvizdák
Lucia Domaracká
author_sort Pavol Rybár
title Temperature effect on rock properties – an example of granite, andesite and sandstone
title_short Temperature effect on rock properties – an example of granite, andesite and sandstone
title_full Temperature effect on rock properties – an example of granite, andesite and sandstone
title_fullStr Temperature effect on rock properties – an example of granite, andesite and sandstone
title_full_unstemmed Temperature effect on rock properties – an example of granite, andesite and sandstone
title_sort temperature effect on rock properties – an example of granite, andesite and sandstone
publisher Technical University of Kosice
series Acta Montanistica Slovaca
issn 1335-1788
publishDate 2015-07-01
description New method of drilling narrow vertical boreholes by controlling hydrogen combustion assumes that rocks melt and radial fractures are formed within the rock under high temperatures and pressures at the interaction of the rock and the flame. To verify the range of formed radial fractures in different rock types, it is needed to know in detail rock and mineral properties before and after melting process of the rock(s). Rocks extend due to the heat and contract with cold. As the rocks consist of minerals with different thermal expansion, the rock extension and contraction differs in different directions. Temperature changes cause the stress between mineral grains, resulting in microfracture formations. Rock samples of granite, andesite and sandstone were pounded into fraction less than 10 microm, melted and cooled under specific conditions, and analysed using REM and EDAX. Cooled granite melt contains shear fractures evolved across the sample due to the tensile stress in the quartz grains occurring in pounded sample. No fractures were observed in cooled melt of andesite. Cooling of melted sandstone grains resulted in evolution of highly porous material with no microfractures.
topic rock properties
temperature impact
melting
cooling
fracture formation
url http://actamont.tuke.sk/pdf/2015/n1/1rybar.pdf
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