Open Access
Issue |
E3S Web Conf.
Volume 427, 2023
International Conference on Geotechnical Engineering and Energetic-Iraq (ICGEE 2023)
|
|
---|---|---|
Article Number | 01014 | |
Number of page(s) | 10 | |
Section | Development in Geotechnical Engineering | |
DOI | https://doi.org/10.1051/e3sconf/202342701014 | |
Published online | 13 September 2023 |
- Harith A., Suhail K. Deterioration Mechanism of Stones in Iraqi Historical Building, Noor Publishing, Germany. 2017. [Google Scholar]
- John A., Francic D. Conservation of Building and Decorative Stone, Butterworth Heinmann. 1998. [Google Scholar]
- Harith E. Ali. Water Gypsum stone interaction in Mosul Dam, Harbin Gongye Daxue Xuebao/Journal of Harbin Institute of Technology. 2022;54(8):123–129. [Google Scholar]
- Sissakian, V., Al-Ansari N., Knutsson S. Karstification Effect on the Stability of Mosul Dam and its Assessment: North Iraq, Engineering Journal. 2014; 6(1): 84–92. [Google Scholar]
- Sissakian V., Adamo N., Al-Ansari N., Knutsson S., Laue J. Defects in Foundation Design due to Miss- Interpretation of the Geological Data: A Case Study of Mosul Dam, Engineering Journal, Scientific Research Publishing. 2017. [Google Scholar]
- Zeki A., Hazim A. Dissolution Rate of Gypsum Under Different Environments, Iraqi Journal of Earth Science. 2007;7(2):11–18. [CrossRef] [Google Scholar]
- Hadeer G.M. Lamination of Mosul City, West Bank, MSc. Thesis, College of Science, Mosul University, Iraq. 1988. [Google Scholar]
- Nabel K., Abideen A., Harith E., AlShaima A. Water Vapor Diffusion: A Control Factor in the Selection of Environmentally Friendly Waste Sites in Mosul City, Iraq, EASR Journal. 2022;49(3):327–339. [Google Scholar]
- National Center for Construction Lab. Soil Investigation for ALKADISYA Bridge (5th Mosul Bridge), Report No.64, Part 3. 1985. [Google Scholar]
- Geo-slope International Ltd. Sigma Modeling with SIGMA/W 2007, 4th Edition. Calgary, Alberta, Canada. 2010. [Google Scholar]
- Fredlund D.G., Rahardjo H. Soil Mechanics for Unsaturated Soils, John Wiley and Sons, Incorporation, USA. 1993. [CrossRef] [Google Scholar]
- Pham H., Fredlund D. Equations for the entire soil-water characteristic curve of a volume change soil, Canadian Geotechnical Journal. 2008;45(4):443–453. [CrossRef] [Google Scholar]
- Taghizadeh, M. H., and Vafaeiyan, M. Study on Effect of Water on Stability or Instability of The Earth Slopes, International Research Journal of Applied and Basic Science. 2014;8(9):1482–1487. [Google Scholar]
- Tareq H., Suhial I., Bayer J. Effect of static and dynamic loadings on unsaturated soil slope stability. 2020. AIP Conference Proceedings 2213, 020062 (2020); https://doi.org/10.1063/5.0000254. [Google Scholar]
- Tareq H., Suhial I., Bayer J. Effect of Rainfall and Dynamic loading conditions on Unsaturated Soil Slopes Stability, In Book: Modern Applications of Geotechnical Engineering and Construction. 2021. DOI: 10.1007/978-981-15-9399-4_6. [Google Scholar]
- Rouaiguia, A., and Dahim, M. A. Numerical Modeling of Slope Stability Analysis. International Journal of Engineering Science and Innovative Technology (IJESIT). 2013; 2(3). [Google Scholar]
- Noroozi, A. G., and Hajiannia, A. The Effect of Cohesion and Level of Ground Water on The Slope Instability Using Finite Element Method. International Journal of Scientific and Engineering Research. 2015;6(10):96–96. [Google Scholar]
- Siddappa, G., and Shanthakumar, M. C. Stability Analysis of Homogenous Earth Slopes. International Journal Conference on Geological and Civil Engineering (IPCBEE). 2014;62(12):60–64. [Google Scholar]
- Newton, B. J. Earth Retaining Structures Using Ground Anchors. 1st Edition, Structure Policy & Innovation. 2012. [Google Scholar]
- Karkush M., Jabbar A. Behavior of floating stone columns and development of porewater pressure under cyclic loading. Transportation Infrastructure Geotechnology. 2022 Apr;9(2):236–249. [CrossRef] [Google Scholar]
- Karkush M.O., Hussein A.A. Experimental investigation of bearing capacity of screw piles and excess porewater pressure in soft clay under static axial loading. In E3S Web of Conferences 2021 (Vol. 318, p. 01001). EDP Sciences. [CrossRef] [EDP Sciences] [Google Scholar]
- Karkush M., Jabbar A. An Effect of several patterns of floating stone columns on the bearing capacity and porewater pressure in saturated soft soil. Journal of Engineering Research. 2022;10(2B):84–97. [Google Scholar]
- Sabatini, P. J., Pass, D. G., and Bachus, R. C. Circular No.4 Ground Anchors and Anchored Systems. Report N.O. FHWA-IF-99-015, Office of Bridge Technology, Atlanta. 1999. [Google Scholar]
- Al-Shamaa M.F., Sheikha A.A., Karkush M.O., Jabbar M.S., Al-Rumaithi A.A. Numerical modeling of honeycombed geocell reinforced soil. In Modern Applications of Geotechnical Engineering and Construction: Geotechnical Engineering and Construction. 2021; 253–263. [CrossRef] [Google Scholar]
- Karkush M., Jabbar A. Improvement of soft soil using linear distributed floating stone columns under foundation subjected to static and cyclic loading. Civil Engineering Journal. 2019 Mar 19;5(3):702–711. [CrossRef] [Google Scholar]
- Bouali M.F., Karkush M.O., Bouassida M. Impact of wall movements on the location of passive Earth thrust. Open Geosciences. 2021 Jan 1;13(1):570–581. [CrossRef] [Google Scholar]
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