Dr Ali Abbas
Name | Dr Ali Abbas |
---|---|
Job title | Associate Professor in Engineering |
Email address | a.abbas@uel.ac.uk |
Research institute | Architecture, Computing & Engineering |
Research outputs
Constitutive Model for Plain and Fibre-Reinforced Lightweight Aggregate Concrete under direct Tension and Pull-out
Al-Naimi, H. K. and Abbas, A. A. 2025. Constitutive Model for Plain and Fibre-Reinforced Lightweight Aggregate Concrete under direct Tension and Pull-out. Fibers. 13 (7), p. Art. 84. https://doi.org/10.3390/fib13070084Experimental investigation of bio-concrete using eggshells as supplementary cementitious material
Abbas, A. and Jabr, E. 2025. Experimental investigation of bio-concrete using eggshells as supplementary cementitious material. Concrete Solutions 2025 – 9th International Conference on Concrete Repair, Durability & Technology. EDP Sciences. https://doi.org/10.1051/matecconf/202540913007Experimental investigation of seashell concrete with anti-corrosion agent enhancement
Abbas, A., Abdalla, K. and Saji, G. 2025. Experimental investigation of seashell concrete with anti-corrosion agent enhancement. Concrete Solutions 2025 – 9th International Conference on Concrete Repair, Durability & Technology. EDP Sciences. https://doi.org/10.1051/matecconf/202540914003Self-healing of concrete incorporating seashells as partial cement replacement
Abbas, A., Abdalla, K. and Sigdel, A. 2025. Self-healing of concrete incorporating seashells as partial cement replacement. Concrete Solutions 2025 – 9th International Conference on Concrete Repair, Durability & Technology. EDP Sciences. https://doi.org/10.1051/matecconf/202540914004Bioconcrete as an alternative sustainable construction material
Abbas, A., Abdalla, K., Chalklen, T., Kubisa, L. L., Tann, D., Ivankovic, D., Andersson, L. and Kazi, S. 2025. Bioconcrete as an alternative sustainable construction material. Concrete Solutions 2025 – 9th International Conference on Concrete Repair, Durability & Technology. EDP Sciences. https://doi.org/10.1051/matecconf/202540915001Effectiveness of Bacteria Based Self-healing Concrete for Enhanced Durability
Abbas, A., Abdalla, K., Tann, D., Joseph, B. and Daas, V. 2025. Effectiveness of Bacteria Based Self-healing Concrete for Enhanced Durability. 4th fib International Conference on Concrete Sustainability (ICCS2024). Springer Nature. https://doi.org/10.1007/978-3-031-80724-4_10Novel Self-healing Concrete with Anticorrosion Properties for High Durability
Abbas, A., Abdalla, K., Tann, D., Jacob, L. and Daas, V. 2025. Novel Self-healing Concrete with Anticorrosion Properties for High Durability. 4th fib International Conference on Concrete Sustainability (ICCS2024). Springer Nature. https://doi.org/10.1007/978-3-031-80724-4_9Machine Learning-Based Prediction of Compressive Performance in Circular Concrete Columns Confined with FRP
Dhakal, N., Abbas, A., Ahmed, H. and Sharif, S. 2023. Machine Learning-Based Prediction of Compressive Performance in Circular Concrete Columns Confined with FRP. 3ICT 2023: International Conference on Innovation and Intelligence for Informatics, Computing, and Technologies. University of Bahrain, Bahrain 20 - 21 Nov 2023 IEEE. https://doi.org/10.1109/3ICT60104.2023.10391832Artificial Intelligence Applications in Road Traffic Forecasting: A Review of Current Research
Khairi, S., Sharif, S., Apeagyei, A. and Abbas, A. 2023. Artificial Intelligence Applications in Road Traffic Forecasting: A Review of Current Research. 3ICT 2023: International Conference on Innovation and Intelligence for Informatics, Computing, and Technologies. University of Bahrain, Bahrain 20 - 21 Nov 2023 IEEE. https://doi.org/10.1109/3ICT60104.2023.10391677Predicting Shear Capacity of RC Beams Strengthened with NSM FRP Using Neural Networks
Guler, O., Ahmed, H., Abbas, A. and Sharif, S. 2023. Predicting Shear Capacity of RC Beams Strengthened with NSM FRP Using Neural Networks. 3ICT 2023: International Conference on Innovation and Intelligence for Informatics, Computing, and Technologies. University of Bahrain, Bahrain 20 - 21 Nov 2023 IEEE. https://doi.org/10.1109/3ICT60104.2023.10391555Rethinking social housing in terms of environmental sustainability: An empirical analysis
Emekci, S. and Abbas, A. 2023. Rethinking social housing in terms of environmental sustainability: An empirical analysis. Građevinar. 75 (11), pp. 1083-1093. https://doi.org/10.14256/JCE.3814.2023Constitutive model for plain and fiber-reinforced lightweight concrete under compression
Al-Naimi, H. and Abbas, A. 2023. Constitutive model for plain and fiber-reinforced lightweight concrete under compression. Structural Concrete. 24 (6), pp. 7625-7647. https://doi.org/10.1002/suco.202200646Development of Low-Carbon Lightweight Concrete Using Pumice as Aggregate and Cement Replacement
Abbas, A., Mahadevan, M., Prajapati, S., Ayati, B. and Kanavaris, F. 2023. Development of Low-Carbon Lightweight Concrete Using Pumice as Aggregate and Cement Replacement. SynerCrete'23 - International RILEM conference on synergising expertise towards sustainability and robustness of cement-based materials and concrete structures. Milos, Greece 14 - 16 Jun 2023 Springer. https://doi.org/10.1007/978-3-031-33187-9_27Potential of Connected Fully Autonomous Vehicles in Reducing Congestion and Associated Carbon Emissions
Neufville, R., Abdalla, H. and Abbas, A. 2022. Potential of Connected Fully Autonomous Vehicles in Reducing Congestion and Associated Carbon Emissions. Sustainability. 14 (Art. 6910). https://doi.org/10.3390/su14116910Reducing embodied carbon dioxide of structural concrete with lightweight aggregate
Kanavaris, F., Gibbons, O., Walport, E., Shearer, E., Abbas, A., Orr, J. and Marsh, B. 2021. Reducing embodied carbon dioxide of structural concrete with lightweight aggregate. Proceedings of the ICE - Engineering Sustainability. 175 (2), pp. 75-83. https://doi.org/10.1680/jensu.21.00021Reducing the carbon footprint of lightweight aggregate concrete
Kanavaris, F., Gibbons, O., Walport, E., Shearer, E., Abbas, A., Orr, J. and Marsh, B. 2020. Reducing the carbon footprint of lightweight aggregate concrete. LowC3 2020. Online 05 - 06 Oct 2020 LowC3, University of Kentucky.Ductility of Steel-Fibre-Reinforced Recycled Lightweight Concrete
Al-Naimi, H. and Abbas, A. 2019. Ductility of Steel-Fibre-Reinforced Recycled Lightweight Concrete. COMPDYN 2019: 7th International Conference on Computational Methods in Structural Dynamics and Earthquake Engineering. Crete, Greece. 24 - 26 Jun 2019 Institute of Structural Analysis and Antiseismic Research. pp. 4009-4023 https://doi.org/10.7712/120119.7203.19035Behaviour of steel-fibre-reinforced concrete beams under high-rate loading
Abbas, A., Cotsovos, Demetrios M. and Behinaein, Pegah 2018. Behaviour of steel-fibre-reinforced concrete beams under high-rate loading. Computers and Concrete, An International Journal. 22 (3), pp. 337-353. https://doi.org/10.12989/cac.2018.22.3.337A simplified finite element model for assessing steel fibre reinforced concrete structural performance
Abbas, A., Syed Mohsin, Sharifah M. and Cotsovos, Demetrios M. 2016. A simplified finite element model for assessing steel fibre reinforced concrete structural performance. Computers and Structures. 173, pp. 31-49. https://doi.org/10.1016/j.compstruc.2016.05.017Statically-Indeterminate SFRC Columns under Cyclic Loads
Abbas, A., Mohsin, Sharifah, Cotsovos, Demetrios and Ruiz-Teran, Ana 2014. Statically-Indeterminate SFRC Columns under Cyclic Loads. Advances in Structural Engineering. 17 (10), pp. 1403-1418.Shear behaviour of steel-fibre-reinforced concrete simply supported beams
Abbas, A., Syed Mohsin, Sharifah M., Cotsovos, Demetrios M. and Ruiz-Teran, Ana M. 2014. Shear behaviour of steel-fibre-reinforced concrete simply supported beams. Proceedings of the ICE - Structures and Buildings. 167 (9), pp. 544-558.Seismic response of steel fibre reinforced concrete beam-column joints
Abbas, A., Syed Mohsin, Sharifah M. and Cotsovos, Demetrios M. 2014. Seismic response of steel fibre reinforced concrete beam-column joints. Engineering Structures. 59 (Feb14), pp. 261-283.5351
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