Mukhtiar Ali Soomro | Soil-structure interaction | Excellence in Research Award

Prof. Dr. Mukhtiar Ali Soomro | Soil-structure interaction | Excellence in Research Award

Professor | China University of Mining and Technology | China

Prof. Dr. Mukhtiar Ali Soomro is a geotechnical engineering researcher with a strong publication record in soil–structure interaction, tunnelling, piled foundations, deep excavations, and ground deformation analysis. His research integrates advanced numerical modelling, centrifuge testing, and analytical approaches to investigate the response of piles, piled rafts, embankments, and masonry structures under complex loading and excavation conditions. He has published extensively in high-impact international journals such as Tunnelling and Underground Space Technology, Computers and Geotechnics, Canadian Geotechnical Journal, and Geomechanics and Engineering. His work contributes significantly to safer and more sustainable underground and foundation engineering practices.

Citation Metrics (Scopus)

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Citations 931

Documents 44

h-index
16

View Scopus Profile View ORCID Profile View Google Scholar Profile .

Featured Publications


Three-Dimensional Centrifuge Modelling of Pile Group Responses to Side-by-Side Twin Tunnelling


– Tunnelling and Underground Space Technology, 2014 (Citations: 104)

Load Transfer Mechanism in Pile Group Due to Single Tunnel Advancement in Stiff Clay


– Tunnelling and Underground Space Technology, 2015 (Citations: 97)

IoT-Based Smart Garbage Monitoring & Collection System Using WeMos and Ultrasonic Sensors


– International Conference on Computing, Mathematics and Engineering, 2019 (Citations: 94)

Zahid Ur Rehman | Geotechnical Engineering | Best Researcher Award

Dr. Zahid Ur Rehman | Geotechnical Engineering | Best Researcher Award

Dr. Zahid Ur Rehman is a distinguished researcher and academic in the field of Mining Engineering, specializing in rock mechanics, tunnel design, and numerical modeling for geotechnical analysis. His scholarly contributions emphasize the study of rock mass behavior under varied loading conditions, focusing on the stability and safety of underground structures in complex geological environments. Through extensive research on the Lowari Tunnel and Kohat Tunnel projects in Pakistan, Zahid Ur Rehman has developed advanced modeling techniques using FEM and DEM approaches to predict deformation, stress distribution, and support system performance. His work integrates theoretical and empirical methods to optimize tunnel support systems, enhance slope stability, and mitigate risks associated with rock bursts and collapses. Beyond tunnel engineering, his studies extend to dimension stone mining, ore reserve estimation, explosive engineering, and sustainable mineral extraction. His collaborative publications explore artificial intelligence applications for rock mass characterization, risk assessment in mining operations, and the environmental management of mineral industries. Zahid Ur Rehman has supervised multiple undergraduate projects investigating geotechnical variability, squeezing potential, and predictive modeling in tunnel environments, demonstrating a commitment to fostering research innovation. His proficiency with tools such as RocLab, RS2, and Matlab strengthens his expertise in simulation and modeling for ground support design. Additionally, his involvement with the Society of Mining Engineers and Pakistan Engineering Council highlights active engagement in professional development and academic leadership. His academic output, including journal articles and a co-authored book chapter on slope engineering, contributes significantly to advancing mining and geotechnical sciences. Zahid Ur Rehman has 92 citations across 11 research documents with an h-index of 6, reflecting substantial influence and research impact in the mining engineering discipline.

Profile: Scopus | ORCID
Featured Publications

Jan, M. S., Hussain, S., Zahra, R. E., Emad, M. Z., Khan, N. M., Rehman, Z. U., Cao, K., Alarifi, S. S., Raza, S., Sherin, S., et al. (2023). Appraisal of different artificial intelligence techniques for the prediction of marble strength. Sustainability.

Hussain, S., Khan, N. M., Emad, M. Z., Naji, A. M., Cao, K., Gao, Q., Rehman, Z. U., Raza, S., Cui, R., Salman, M., et al. (2022). An appropriate model for the prediction of rock mass deformation modulus among various artificial intelligence models. Sustainability.

Gul, A., Shahzada, K., Alam, B., Badrashi, Y. I., Khan, S. W., Khan, F. A., Ali, A., & Rehman, Z. U. (2020). Experimental study on the structural behavior of cast in-situ hollow core concrete slabs. Civil Engineering Journal (Iran).

Hussian, S., Mohammad, N., Rehman, Z. U., Khan, N. M., Shahzada, K., Ali, S., Tahir, M., Raza, S., & Sherin, S. (2020). Review of the geological strength index (GSI) as an empirical classification and rock mass property estimation tool: Origination, modifications, applications, and limitations. Advances in Civil Engineering.

Tahir, M., Rehman, Z. U., Husain, S., Muhammad, N., Nazir, M., Sadiq, M., & Hussain, I. (2020). Up-gradation of black shale of Chimiari region of Pakistan by flotation scheme. Journal of Himalayan Earth Sciences.

Jibin Sun – Geotechnical Engineering – Best Researcher Award

Jibin Sun - Geotechnical Engineering - Best Researcher Award

Research Associate | Tianjin University | China

Dr. Jibin Sun has established a strong research foundation in geotechnical and civil engineering, focusing on the stability, performance, and safety of underground and foundation structures. His work addresses critical challenges in tunneling engineering, including progressive failure mechanisms, local failure impacts on adjacent structures, and the effects of contact loss under shield tunnel inverts. Through both experimental and numerical studies, he has contributed to advancing knowledge in tunnel safety, ground-structure interaction, and pile behavior under cyclic loading in dry sand. His studies integrate innovative modeling techniques such as Eulerian finite element methods and Coupled Eulerian–Lagrangian simulations, demonstrating a balance of theoretical analysis and applied engineering solutions. Jibin Sun’s research outputs, published in high-impact journals like Tunnelling and Underground Space Technology, Acta Geotechnica, Géotechnique, and Engineering Failure Analysis, showcase his consistent focus on addressing complex geotechnical problems with practical relevance for infrastructure safety and resilience. Recognition through awards such as the Tianjin Science and Technology Progress Award and the Excellent Doctoral Dissertation Award of Tianjin University highlights the value and influence of his contributions. Supported by prestigious funding programs, his ongoing work continues to expand the frontiers of geotechnical engineering, particularly in underground construction and failure mechanism analysis, positioning him as an impactful contributor to the field. 342 Citations by 288 documents, 20 Documents, 9 h-index View.

Profile: Scopus
Featured Publications: 
  1. Experimental study of the effects of contact loss under a shield tunnel invert. (2024). Cited by 2.

  2. Coupled Eulerian-Lagrangian simulation of progressive failure in shield tunnels induced by developing contact loss. (2024). Cited by 8.

Zhiliang Wang – Geotechnical Engineering – Best Researcher Award

Prof. Zhiliang Wang | Geotechnical Engineering | Best Researcher Award

Professor | Kunming University of Science and Technology | China

Prof. Zhiliang Wang has established a strong research foundation in civil and geotechnical engineering, focusing extensively on tunnel and underground engineering, soil behavior, and numerical simulation methods. His research contributions address safety evaluation of tunnels, mitigation of hazards associated with special soils, and the development of multi-field coupling models for geotechnical applications. By integrating theoretical modeling with experimental studies, Zhiliang Wang has advanced understanding of soil stabilization mechanisms, long-term settlement issues in peat soils, and fracture propagation in rock mass. His works also highlight the application of lattice Boltzmann methods for simulating fluid flow, heat transfer, and seepage in complex soil and rock structures, bridging the gap between computational approaches and practical engineering challenges. Through projects supported by the National Natural Science Foundation of China and industry collaborations, he has contributed innovative solutions for freezing processes in soils, shield tunneling effects, and soil-structure interaction in underground construction. His publications in high-impact journals cover a wide range of topics, from sustainable approaches such as incorporating clay and manufactured sand in soil stabilization to advanced simulations of thermal and hydraulic processes in soils. Zhiliang Wang’s research outcomes not only enhance engineering safety and efficiency but also align with sustainability goals by addressing energy-efficient and environmentally friendly practices in geotechnical engineering. His active involvement in teaching courses like tunnel engineering and numerical simulation further strengthens the link between academic research and practical application, inspiring future professionals in the field. With 366 citations by 339 documents, 65 documents, and an h-index of 11, Zhiliang Wang’s scholarly impact reflects his significant role in shaping modern research and innovations in underground engineering and soil mechanics.

Profile: Scopus
Featured Publications: 
  1. Effect of random microcracks on macroscopic crack propagation in rock. (2024). Cited by 2.

  2. A numerical simulation of high-temperature rock hydraulic fracturing based on coupled thermo-mechanical peridynamics. (2024). Cited by 1.

  3. Study on the seepage and heat transfer effect of rough fractures in hot matrix considering dynamic thermophysical properties of fluid. (2024). Cited by 2.

  4. Numerical simulation of glass panel impact damage based on peridynamics. (2024). Cited by 1.

Bassam Al-Washali – Geotechnical Engineering – Best Researcher Award

Bassam Al-Washali - Geotechnical Engineering - Best Researcher Award

Shandong University - China

SUMMARY

Bassam Mohammed Al-Washali is a civil engineer and current Ph.D. candidate in Geotechnical Engineering at Shandong University. His research focuses on underground infrastructure, tunneling stability, and computational geotechnics. With practical experience in site supervision and structural design across multiple engineering consultancies in the Middle East, he brings both academic and field expertise to his work. His interdisciplinary skills allow him to contribute to complex, large-scale infrastructure projects. Bassam is also an active researcher in international collaborations, with published work on tunnel face stability and bridge dynamics. His academic and professional journey reflects dedication to solving modern engineering challenges.

EDUCATION

Bassam is pursuing his doctoral studies in Geotechnical Engineering at Shandong University under Professors Yao Zhanyong and Yao Kai. He holds a Master’s degree in Bridge and Tunnel Engineering from Jilin University, where his thesis addressed the structural response of cable-stayed bridges during cable failure. He also completed a bachelor’s in Civil Engineering from Thamar University, Yemen. His academic progression reflects strong foundations in structural mechanics and computational modeling. His educational trajectory supports a robust skillset in analyzing and designing infrastructure systems, with a focus on dynamic stability and safety under unexpected events such as structural failures or natural hazards.

PROFESSIONAL EXPERIENCE

Bassam has over five years of practical engineering experience in design, supervision, and construction project management. He has served as a civil engineer in firms including MAK Engineering Consultancy and MAJED AL-DALBAHI in Saudi Arabia. His responsibilities ranged from structural layout planning to on-site supervision of infrastructure projects. Earlier roles in Yemen included work as a site engineer and civil design engineer. This practical background in both international and local engineering environments enhances his technical judgment and understanding of applied geotechnical principles. Bassam’s professional history integrates well with his current academic focus on advanced engineering systems.

RESEARCH INTEREST

Bassam’s research spans several domains within civil and geotechnical engineering. His core interests include tunnel face stability, infrastructural risk assessment, computational geotechnics, and the structural dynamics of cable-stayed bridges. He investigates how to improve safety and efficiency in tunnel excavation using numerical simulations and shape optimization. His research also explores resilience in infrastructure systems under abnormal load conditions. Bassam actively contributes to national research programs, including undersea tunneling and offshore wind turbine foundation studies. His work aligns with global priorities in smart infrastructure, reliability-based design, and the integration of intelligent systems into traditional civil engineering frameworks.

AWARD AND HONOR

While specific awards are not detailed in the CV, Bassam’s academic and research involvement in nationally funded Chinese projects highlights his recognition as a valuable contributor. Being selected to participate in multi-million yuan research initiatives reflects trust in his technical ability and problem-solving skills. He has co-authored research papers in prestigious journals and holds co-inventorship on a Chinese utility patent, showcasing international academic credibility. His continued involvement in high-profile infrastructure research initiatives illustrates his growing influence and respect within the academic and engineering communities. These roles underscore his contributions to innovation in geotechnical and tunneling engineering.

RESEARCH SKILL

Bassam is proficient in a wide array of software used in civil and geotechnical modeling. He uses Abaqus and ANSYS APDL for finite element analysis, particularly for tunnel excavation and structural deformation simulations. He is trained in Primavera for project scheduling and uses design tools like ETABS, SAP2000, STAAD Pro, and AutoCAD for modeling and structural analysis. Additional competencies include Civil 3D, Robot Structural Analysis, and Microsoft Office tools. His research blends advanced computation with practical design experience, allowing him to perform dynamic structural evaluations and risk assessments that support safer, more efficient infrastructure systems.

PUBLICATIONS

Title: Structural Dynamic Analysis of Cable-Stayed Bridge Due to Cable Failure Under Unexpected Events

               Authors: B.M. Al-washali, Z. Yifeng, G. Xin, C. Xiaoxu, A.M. Al-washali

               Journal: International Journal of Scientific & Technology Research (IJSTR

Title: Numerical investigation on the effect of cutterhead shapes on tunnel face stability

                Authors: B.M. Al-Washali, K. Yao, U. Satchithananthan, Z. Yao, A.M. Tawfek, Y. Pan, ...

                Journal: Tunnelling and Underground Space Technology

CONCLUSION

Bassam Mohammed Al-Washali exemplifies the modern civil engineer: analytically skilled, globally experienced, and research-driven. With a strong academic foundation and hands-on industry exposure, he brings practical relevance to his research in tunneling, infrastructure resilience, and geotechnical safety. His participation in cutting-edge research projects and interdisciplinary collaborations positions him as a promising figure in infrastructure innovation. Bassam is poised to make lasting contributions to the fields of underground construction, bridge safety, and intelligent geosystems. His work not only solves technical problems but also aligns with global goals for safer, smarter, and more sustainable civil infrastructure.