Recent construction project management graduate with excellent research, technical and problem-solving skills. Detail-oriented and able to learn new concepts quickly. Possessing a solid foundation in Occupational Safety, Health, and Environment, highlighted by the prestigious NEBOSH International General Certificate, I bring a comprehensive understanding of risk analysis, workplace safety, auditing and quantity surveying. Complemented by certifications in fire safety, risk assessment, and safety management, I offer proficiency in industry-standard software tools including AutoCAD, Revit Architecture, STAAD Pro, MS Excel, and MS Project. Experienced in designing, visualizing, and managing projects with precision and efficiency. Throughout my academic and professional journey, I have demonstrated excellence, problem-solving capabilities, and adaptability to diverse environments. With a proactive and goal-oriented approach, I excel in challenging situations and continuously strive for success. My determination and resilience contribute to my effectiveness as a project leader. Currently seeking a Graduate role, I am prepared to apply my expertise, dedication, and leadership skills to contribute to the success of a dynamic organization. Eager to embark on a new professional chapter, I am committed to making a meaningful impact while continuously enhancing my knowledge and abilities.
Full UK driving license, Citb test passed
Postgraduate Thesis: Adoption of Artificial Intelligence in construction SMEs: A case study of successful implementation in Indian construction SMEs, A comprehensive analysis was conducted to assess the impact of AI implementation on geographical factors, focusing specifically on the Indian region. Identified the positive outcomes of successful AI integration while proactively addressing the drivers and barriers to overcome potential challenges in the process.
Undergraduate Thesis: Investigation of Flexural Behavior in Ternary Blended Concrete Beams with Steel Fibers, This research project aimed to explore the application of two additional cementitious materials (DIATOMITE and MARBLE POWDER) as substitutes in ternary blended concrete, along with the incorporation of steel fibres to enhance strength. The study focused on analyzing the flexural properties of M30 grade ternary blended concrete. The impact of supplementary cementitious materials and fibres on the strength and durability aspects of the concrete was thoroughly examined.
Additional Project: Biogas Plant Design for an Institutional Building, A biogas plant design was developed for the college building, accommodating approximately 9000 students. The design involved the anaerobic digestion of sludge from the water treatment plant and kitchen waste from the canteen. The fixed dome design was created using ETABS software, and subsequent analysis was performed. A model of the biogas plant was constructed using ferro cement.