1. "A Correlation Between Dynamic and Static Pile Load Test Results",: Eng. & Tech. Journal, Vol.27, No.15, 2009. 2. "Behavior of Modeling Piled-Raft System in Sandy Soil under Vertical Load " Published paper in the 2nd International Conference on Buildings, Construction and Environmental Engineering- BCEE2, 17-18 October 2015 Beirut, Lebanon. 3. "Theoretical Verification for Full-Scale Tests of Piled Raft Foundation", Conference: International Congress and Exhibition" Sustainable Civil Infrastructures: Innovative Infrastructure Geotechnology" : Advances in Analysis and Design of Deep Foundations pp 200-212, At: Springer, Cham, July 2017. 4. "Full Scale Model Static Tests with Analysis of Piled Raft Foundation in Sandy Soil under Vertical Load". (Sent). March 2020 IOP Conference Series Materials Science and Engineering 737DOI: 10.1088/1757-899X/737/1/012102Conference: 4th International Conference on Buildings, Construction and Environmental Engineering 7-9 October 2019, Istanbul, Turkey At: Istanbul, 2019. 5. "Behavior of grouting pile in sandy soil" March 2020 IOP Conference Series Materials Science and Engineering 737 ,Conference: 4th International Conference on Buildings, Construction and Environmental Engineering 7-9 October 2019, Istanbul, Turkey At: Istanbul License CC BY 3.0 6. "Assessment of load capacity of piles and conclusion of a new criterion using static load tests , "(Journal of Physics: Conference Series , 2021, 1973(1), 012205). 7. "The behavior of piled raft foundation in loose sandy soil" , Journal of Physics: )Conference Series, 2021, 1973(1), 012208( 8. "The Behavior of Piled Raft System in Sandy Soil Subjected to Vertical Load by using Dynamic Load Tests" (The 2nd Al-Muthanna International Conference on Engineering Science and Technology (MICEST) 2022). 9. "Analysis of Piled Raft Foundation with Different Piles Length, Dimensions and Type of Load using Field Tests and 3D- Analyses". (The 2nd Al-Muthanna International Conference on Engineering Science and Technology (MICEST) 2022). 10. "Analysis of Static Tests of Field Results of Precast Driven Piles". AIP Conference Proceedings, 2023, 2839(1), 030014 11. "The Conduct of Piled Raft System in Sandy Soil Exposed to Vertical Load by Using Dynamic Load Tests". AIP Conference Proceedings, 2023, 2806(1), 040013. 12. "Analysis of Piled Raft Foundation With Different Piles Length, Dimensions and Types of Load Using Field Tests and 3D- Analyses". AIP Conference Proceedings, 2023, 2806(1), 040019. 13. "Evaluation of gene expression programming to predict the local scour depth around a bridge pier" Journal of Engineering Science and Technology (JESTEC), Volume 16, Issue 2, April 2021 ,1232 – 1243. 14. "The effect of climate change on groundwater recharge in unconfined aquifers in the western desert of Iraq" (Groundwater for Sustainable Development Volume 16, February 2022, 100700 15. "Evaluation of Gene Expression Programming and Artificial Neural Networks in Py Torch for the Prediction of Local Scour Depth around a Bridge Pier". Results in Engineering Volume 13, March 2022, 100353 16. "Three-Dimensional Numerical Modeling of Train-Induced Vibration with Special References to Track Irregularities and Soil Stiffness". Transportation Infrastructure Geotechnology, 2025, 12(1), 3 17. "Analysis of squeezing-induced failure in a water tunnel and measure of rehabilitation: A case study of Tishreen tunnel", Syria. Deep Underground Science and Engineering., 2024 18. "Geogrid reinforcement for improving bearing capacity and stability of square foundations". Open Engineering., 2024, 14(1), 20240021 19. "Studying the lateral displacement of retaining wall supporting sandy soil under dynamic loads". Open Engineering., 2024, 14(1). 20. "Optimum hydraulic design of cut-off under hydraulic structures using the simulation–optimization method". Modeling Earth Systems and Environment, 2023, 9(1), pp. 493–505 21. "Projections of precipitation and temperature in Southern Iraq using a LARS-WG Stochastic weather generator". Physics and Chemistry of the Earth, 2022, 128, 103224. 22. "Application of the Coupled Simulation–optimization Method for the Optimum Cut-off Design Under a Hydraulic Structure". Water Resources Management., 2022, 36(12), pp. 4619–4636
|