Analysis of Effects of Rock Physical Properties Changes from Freeze–Thaw Weathering in Ny-Ålesund Region: Part 2—Correlations and Prediction of Weathered Properties
From the examination of rock physical parameters’ changes of compressive strength, shore hardness, water absorption, P-wave velocity with increasing freeze–thaw cycles, correlations of these parameters were investigated. Rock samples were collected from Ny-Ålesund region in Norway. As compressive st...
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doaj-c80a3354cdfe410f8bc9e67f9bd486742020-11-25T03:36:35ZengMDPI AGApplied Sciences2076-34172020-05-01103392339210.3390/app10103392Analysis of Effects of Rock Physical Properties Changes from Freeze–Thaw Weathering in Ny-Ålesund Region: Part 2—Correlations and Prediction of Weathered PropertiesKeunbo Park0Bang Yong Lee1Kichoel Lee2Dongwook Kim3Division of Polar Climate Sciences, Korea Polar Research Institute, Incheon 21990, KoreaDivision of Polar Climate Sciences, Korea Polar Research Institute, Incheon 21990, KoreaDepartment of Civil and Environmental Engineering, Incheon National University, Incheon 22012, KoreaDepartment of Civil and Environmental Engineering, Incheon National University, Incheon 22012, KoreaFrom the examination of rock physical parameters’ changes of compressive strength, shore hardness, water absorption, P-wave velocity with increasing freeze–thaw cycles, correlations of these parameters were investigated. Rock samples were collected from Ny-Ålesund region in Norway. As compressive strength and shore hardness inherently have high uncertainties due to inhomogeneous rock composition and internal fissures and cracks, only the relationship between water absorption and P-wave velocity revealed high correlations, providing meaningful linear fitting equations. From the correlation analysis results and clear trends of increasing water absorption and decreasing P-wave velocity with increasing freeze–thaw cycle found in part one of the companion study, prediction equations of future changes of rock physical parameters are proposed using P-wave velocity or water absorption. In addition, future rock weathering grade changes with time can be predicted from estimation of water absorption or P-wave velocity change due to freeze–thaw cycles.https://www.mdpi.com/2076-3417/10/10/3392rock weatheringrock weathering gradefreeze–thaw cycleair temperatureP-wave velocitywater absorption |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Keunbo Park Bang Yong Lee Kichoel Lee Dongwook Kim |
spellingShingle |
Keunbo Park Bang Yong Lee Kichoel Lee Dongwook Kim Analysis of Effects of Rock Physical Properties Changes from Freeze–Thaw Weathering in Ny-Ålesund Region: Part 2—Correlations and Prediction of Weathered Properties Applied Sciences rock weathering rock weathering grade freeze–thaw cycle air temperature P-wave velocity water absorption |
author_facet |
Keunbo Park Bang Yong Lee Kichoel Lee Dongwook Kim |
author_sort |
Keunbo Park |
title |
Analysis of Effects of Rock Physical Properties Changes from Freeze–Thaw Weathering in Ny-Ålesund Region: Part 2—Correlations and Prediction of Weathered Properties |
title_short |
Analysis of Effects of Rock Physical Properties Changes from Freeze–Thaw Weathering in Ny-Ålesund Region: Part 2—Correlations and Prediction of Weathered Properties |
title_full |
Analysis of Effects of Rock Physical Properties Changes from Freeze–Thaw Weathering in Ny-Ålesund Region: Part 2—Correlations and Prediction of Weathered Properties |
title_fullStr |
Analysis of Effects of Rock Physical Properties Changes from Freeze–Thaw Weathering in Ny-Ålesund Region: Part 2—Correlations and Prediction of Weathered Properties |
title_full_unstemmed |
Analysis of Effects of Rock Physical Properties Changes from Freeze–Thaw Weathering in Ny-Ålesund Region: Part 2—Correlations and Prediction of Weathered Properties |
title_sort |
analysis of effects of rock physical properties changes from freeze–thaw weathering in ny-ålesund region: part 2—correlations and prediction of weathered properties |
publisher |
MDPI AG |
series |
Applied Sciences |
issn |
2076-3417 |
publishDate |
2020-05-01 |
description |
From the examination of rock physical parameters’ changes of compressive strength, shore hardness, water absorption, P-wave velocity with increasing freeze–thaw cycles, correlations of these parameters were investigated. Rock samples were collected from Ny-Ålesund region in Norway. As compressive strength and shore hardness inherently have high uncertainties due to inhomogeneous rock composition and internal fissures and cracks, only the relationship between water absorption and P-wave velocity revealed high correlations, providing meaningful linear fitting equations. From the correlation analysis results and clear trends of increasing water absorption and decreasing P-wave velocity with increasing freeze–thaw cycle found in part one of the companion study, prediction equations of future changes of rock physical parameters are proposed using P-wave velocity or water absorption. In addition, future rock weathering grade changes with time can be predicted from estimation of water absorption or P-wave velocity change due to freeze–thaw cycles. |
topic |
rock weathering rock weathering grade freeze–thaw cycle air temperature P-wave velocity water absorption |
url |
https://www.mdpi.com/2076-3417/10/10/3392 |
work_keys_str_mv |
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