A Web-based Consolidated Geotechnical Site Investigation (CoGSI) of Sarawak Soils
محورهای موضوعی : AdvertisingNorazzlina M.Sa’don 1 , Abdul Razak Abdul Karim 2 , Bong Chih How 3 , Linda Wong Lin Juan 4
1 - Faculty of Engineering (FEng), Universiti Malaysia Sarawak, 94300 Kota Samarahan, Sarawak, Malaysia
2 - Faculty of Engineering (FEng), Universiti Malaysia Sarawak, 94300 Kota Samarahan, Sarawak, Malaysia
3 - Faculty of Computer Science and Information Technology (FCSIT), Universiti Malaysia Sarawak, 94300 Kota Samarahan, Sarawak, Malaysia
4 - Faculty of Computer Science and Information Technology (FCSIT), University Malaysia Sarawak, Sarawak, Malaysia
کلید واژه: Web-based, Soil-database, data entry, OpenStreetMap, spatial data,
چکیده مقاله :
A web-based Consolidated Geotechnical Site Investigation (CoGSI) of the Sarawak Soils is aim to presents a well-organized, systematic and easy to access digital geotechnical database. This database system was developed to allow users to search, view, and digitally download boreholes of the available Sarawak subsurface information with data entry functionality. This CoGSI provides many opportunities to explore the data, and web-based can be accessed anywhere through the computer and smart phones with internet access, where all SI information is stored in a digital format and function as a database management system. This will ensure that the CoGSI database can be used by the engineering community, especially practitioners and academics by making the data freely available in digital form. The user-friendly digitized CoGSI database would be valuable contributor for future planning of infrastructure developments; making preliminary design estimates for earthwork/foundation assessment; and future decision making with early identification of potential areas for construction purposes, which will produce an economic and safe design
Bakkali, S., & Amrani, M. (2008). About the use of spatial interpolation methods to denoising Moroccan resistivity data phosphate “Disturbances” map. Acta Montanistica Slovaca, 13(2), 216-222.
Chang, Y.S and Park, H.D. (2004). Development of a web-based geographis information system for the management of borehole and geological data. Computer & Geoscience, 30, pp. 887-897.
Clayton, C.R.I. (2015). Urban Site Investigation. Engineering Geology for Tomorrow’s Cities, Engineering Geology Special Publication, 22, pp. 125-141.
Coronna, S. (2006). Geotechnical data management issues for transportation authorities. 6th Transportation Specialty Conference, Toronto, Ontario, 2-4 June 2006.
Goldworthy, J. S., Jaksa, M. B., Kaggwa, W. S., Fenton, G. A., Griffiths, D. V., and Poulos, H. G. (2004). Cost of failures due to limited site investigations. Proceedings of International Conference on Structural and Foundations Failures. 2-4 Aug, Singapore, pp.398-409.
Kunapo, J., Dasari, R.G., Phoon, K.K., and Tan, T.S. (2005). Development of Web-GIS based Geotechnical Information System. Journal of Computing in Civil Engineering. Vol. 19, pp. 323-327.
Lee, F., Tan, T., Karunarathe, G.P., and Lee, S. (1990). Geotechnical data management system. Journal of Computing in Civil Engineering. 4(3), pp. 239-254.
Mitas, L., & Mitasova, H. (1999). Spatial interpolation. Geographical information systems: principles, techniques, management and applications, 1, 481-492.
Okunade, E. A. (2010). Design and implementation of a Web-Based geotechnical database management system for Nigerian Soils. Modern Applied Science. Vol. 4, No. 11, pp. 1913-1852.
Sahadan, J. and Busiai, S. (2003). Geotechnical site information system for Sarawak (GEOINFOS). 2nd International Conference on Advances in Soft Soil Engineering and Technology. 2-4 July 2003, Putrajaya, Malaysia.
Soilvision Systems Ltd. (2019). Soil database software. Saskatoon, Canada: SoilVision System Ltd. Retrieved 20 December 2019, archived from https://www.bentley.com/en/products/product-line/geotechnical-engineering-software/openground-cloud.