Site Assessment for Astroparticle Detector Location in Evaporites of the Polkowice-Sieroszowice Copper Ore Mine, Poland

The aim of the work was to evaluate the possibilities of excavating a chamber for the Glacier detector, a cylinder with a 74 m diameter and 38 m height filled with 100 kT of liquid argon, in the Polkowice-Sieroszowice copper ore mine in the Legnica-Glogow Copper Area (LGOM). Two potential locations...

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Main Authors: Jaroslaw Slizowski, Zenon Pilecki, Kazimierz Urbanczyk, Elzbieta Pilecka, Leszek Lankof, Rafal Czarny
Format: Article
Language:English
Published: Hindawi Limited 2013-01-01
Series:Advances in High Energy Physics
Online Access:http://dx.doi.org/10.1155/2013/461764
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spelling doaj-b0fadf0fd21849a693983c8d5a1e1fb92020-11-24T22:55:24ZengHindawi LimitedAdvances in High Energy Physics1687-73571687-73652013-01-01201310.1155/2013/461764461764Site Assessment for Astroparticle Detector Location in Evaporites of the Polkowice-Sieroszowice Copper Ore Mine, PolandJaroslaw Slizowski0Zenon Pilecki1Kazimierz Urbanczyk2Elzbieta Pilecka3Leszek Lankof4Rafal Czarny5Mineral and Energy Economy Research Institute, Polish Academy of Sciences, Wybickiego 7, 31-261 Krakow, PolandMineral and Energy Economy Research Institute, Polish Academy of Sciences, Wybickiego 7, 31-261 Krakow, PolandMineral and Energy Economy Research Institute, Polish Academy of Sciences, Wybickiego 7, 31-261 Krakow, PolandMineral and Energy Economy Research Institute, Polish Academy of Sciences, Wybickiego 7, 31-261 Krakow, PolandMineral and Energy Economy Research Institute, Polish Academy of Sciences, Wybickiego 7, 31-261 Krakow, PolandMineral and Energy Economy Research Institute, Polish Academy of Sciences, Wybickiego 7, 31-261 Krakow, PolandThe aim of the work was to evaluate the possibilities of excavating a chamber for the Glacier detector, a cylinder with a 74 m diameter and 38 m height filled with 100 kT of liquid argon, in the Polkowice-Sieroszowice copper ore mine in the Legnica-Glogow Copper Area (LGOM). Two potential locations were analyzed in a rock salt layer more than 100 m thick at the depth of 1000 m and in the anhydrite layer of about 100 m thick at the depth of 650 m, both lying above the copper ore deposit. The numerical analyses, based on geological, geophysical, and geomechanical research, were carried out to determine the behavior of the system of the chamber and surrounding rock mass. Two creep laws have been adopted for rock salt in the numerical models, Norton and Lubby2. Their coefficients have been adjusted for in situ measurements of the mine galleries convergence starting from the results of laboratory tests. Displacement and stresses of the rock salt in the chamber vicinity are much greater for the Lubby2 law. The displacements indicated at the chamber contour are the reason that the alternative location in the anhydrite layer was more advantageous.http://dx.doi.org/10.1155/2013/461764
collection DOAJ
language English
format Article
sources DOAJ
author Jaroslaw Slizowski
Zenon Pilecki
Kazimierz Urbanczyk
Elzbieta Pilecka
Leszek Lankof
Rafal Czarny
spellingShingle Jaroslaw Slizowski
Zenon Pilecki
Kazimierz Urbanczyk
Elzbieta Pilecka
Leszek Lankof
Rafal Czarny
Site Assessment for Astroparticle Detector Location in Evaporites of the Polkowice-Sieroszowice Copper Ore Mine, Poland
Advances in High Energy Physics
author_facet Jaroslaw Slizowski
Zenon Pilecki
Kazimierz Urbanczyk
Elzbieta Pilecka
Leszek Lankof
Rafal Czarny
author_sort Jaroslaw Slizowski
title Site Assessment for Astroparticle Detector Location in Evaporites of the Polkowice-Sieroszowice Copper Ore Mine, Poland
title_short Site Assessment for Astroparticle Detector Location in Evaporites of the Polkowice-Sieroszowice Copper Ore Mine, Poland
title_full Site Assessment for Astroparticle Detector Location in Evaporites of the Polkowice-Sieroszowice Copper Ore Mine, Poland
title_fullStr Site Assessment for Astroparticle Detector Location in Evaporites of the Polkowice-Sieroszowice Copper Ore Mine, Poland
title_full_unstemmed Site Assessment for Astroparticle Detector Location in Evaporites of the Polkowice-Sieroszowice Copper Ore Mine, Poland
title_sort site assessment for astroparticle detector location in evaporites of the polkowice-sieroszowice copper ore mine, poland
publisher Hindawi Limited
series Advances in High Energy Physics
issn 1687-7357
1687-7365
publishDate 2013-01-01
description The aim of the work was to evaluate the possibilities of excavating a chamber for the Glacier detector, a cylinder with a 74 m diameter and 38 m height filled with 100 kT of liquid argon, in the Polkowice-Sieroszowice copper ore mine in the Legnica-Glogow Copper Area (LGOM). Two potential locations were analyzed in a rock salt layer more than 100 m thick at the depth of 1000 m and in the anhydrite layer of about 100 m thick at the depth of 650 m, both lying above the copper ore deposit. The numerical analyses, based on geological, geophysical, and geomechanical research, were carried out to determine the behavior of the system of the chamber and surrounding rock mass. Two creep laws have been adopted for rock salt in the numerical models, Norton and Lubby2. Their coefficients have been adjusted for in situ measurements of the mine galleries convergence starting from the results of laboratory tests. Displacement and stresses of the rock salt in the chamber vicinity are much greater for the Lubby2 law. The displacements indicated at the chamber contour are the reason that the alternative location in the anhydrite layer was more advantageous.
url http://dx.doi.org/10.1155/2013/461764
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