Seismic monitoring of strength in stabilized foundations by P-wave reflection and downhole geophysical logging for drill borehole core
(2023) In Journal of the Mechanical Behavior of Materials 32(1).- Abstract
Evaluating the subground properties during the initial stage of a construction of building is important in order to estimate the suitability of soil quality to the technical requirements of bearing capacity, resistance to stress, and strength. This study presented the evaluation of the geotechnical properties of soil intended for the construction of Max IV facility of Lund University, performed in fieldwork and laboratory. The in situ methods included drilling boreholes, core sampling and assessment, crosshole measurements, and borehole logging. The laboratory-based measurements were performed at Swedish Geotechnical Institute and combined seismic measurements of drill cores, determination of the uniaxial compressive strength (UCS), and... (More)
Evaluating the subground properties during the initial stage of a construction of building is important in order to estimate the suitability of soil quality to the technical requirements of bearing capacity, resistance to stress, and strength. This study presented the evaluation of the geotechnical properties of soil intended for the construction of Max IV facility of Lund University, performed in fieldwork and laboratory. The in situ methods included drilling boreholes, core sampling and assessment, crosshole measurements, and borehole logging. The laboratory-based measurements were performed at Swedish Geotechnical Institute and combined seismic measurements of drill cores, determination of the uniaxial compressive strength (UCS), and examination of material property: sieve analysis and natural moisture content. UCS was evaluated with regard to velocities of elastic P-waves. The synchronous light test by X-ray diffraction was performed for qualitative analysis of mineral composition of samples. The study applied integrated approach of the diverse geophysical methods to solve practical tasks on the evaluation of foundation strength and geotechnical parameters. This study demonstrated the benefits of integrated seismic and geophysical methods applied to soil exploration in civil engineering for testing quality of foundation materials.
(Less)
- author
- Lindh, Per LU and Lemenkova, Polina
- organization
- publishing date
- 2023-01-01
- type
- Contribution to journal
- publication status
- published
- subject
- keywords
- elastic wave, seismicity, X-ray diffraction
- in
- Journal of the Mechanical Behavior of Materials
- volume
- 32
- issue
- 1
- article number
- 20220290
- publisher
- De Gruyter
- external identifiers
-
- scopus:85162753873
- ISSN
- 0334-8938
- DOI
- 10.1515/jmbm-2022-0290
- language
- English
- LU publication?
- yes
- id
- ce345a2c-fac1-4d89-b771-81634b6d1497
- date added to LUP
- 2023-10-13 15:16:59
- date last changed
- 2023-10-13 15:16:59
@article{ce345a2c-fac1-4d89-b771-81634b6d1497, abstract = {{<p>Evaluating the subground properties during the initial stage of a construction of building is important in order to estimate the suitability of soil quality to the technical requirements of bearing capacity, resistance to stress, and strength. This study presented the evaluation of the geotechnical properties of soil intended for the construction of Max IV facility of Lund University, performed in fieldwork and laboratory. The in situ methods included drilling boreholes, core sampling and assessment, crosshole measurements, and borehole logging. The laboratory-based measurements were performed at Swedish Geotechnical Institute and combined seismic measurements of drill cores, determination of the uniaxial compressive strength (UCS), and examination of material property: sieve analysis and natural moisture content. UCS was evaluated with regard to velocities of elastic P-waves. The synchronous light test by X-ray diffraction was performed for qualitative analysis of mineral composition of samples. The study applied integrated approach of the diverse geophysical methods to solve practical tasks on the evaluation of foundation strength and geotechnical parameters. This study demonstrated the benefits of integrated seismic and geophysical methods applied to soil exploration in civil engineering for testing quality of foundation materials.</p>}}, author = {{Lindh, Per and Lemenkova, Polina}}, issn = {{0334-8938}}, keywords = {{elastic wave; seismicity; X-ray diffraction}}, language = {{eng}}, month = {{01}}, number = {{1}}, publisher = {{De Gruyter}}, series = {{Journal of the Mechanical Behavior of Materials}}, title = {{Seismic monitoring of strength in stabilized foundations by P-wave reflection and downhole geophysical logging for drill borehole core}}, url = {{http://dx.doi.org/10.1515/jmbm-2022-0290}}, doi = {{10.1515/jmbm-2022-0290}}, volume = {{32}}, year = {{2023}}, }