Intelligent and Sustainable Civil Engineering Program
The program prepares civil engineers to design and manage sustainable infrastructure using advanced engineering knowledge, intelligent technologies, and data-driven approaches while addressing environmental, economic, and societal challenges.
Duration of Study
Four Years
Degree
Bachelor of Intelligent and Sustainable Civil Engineering
Credit Hours
144 Hours
Program Highlights
The Intelligent and Sustainable Civil Engineering Program is an interdisciplinary program designed to prepare highly qualified civil engineers capable of addressing modern infrastructure challenges through the integration of engineering fundamentals, sustainability principles, and intelligent technologies.
The program adopts a holistic educational approach that combines academic knowledge with practical, industry-oriented skills, enabling students to design, analyze, and manage civil engineering systems efficiently. It covers advanced topics in structural design (reinforced concrete and steel), infrastructure engineering, and site investigation, alongside comprehensive training in laboratory, office, and field practices.
A distinctive feature of the program is its focus on sustainable and smart infrastructure systems, where students gain expertise in areas such as water and wastewater networks, transportation systems, environmental management, and urban infrastructure planning. The curriculum emphasizes minimizing environmental impact, optimizing resource utilization, and supporting long-term sustainable development.
In addition, the program integrates modern intelligent tools and technologies, including machine learning, data analysis, image processing, and deep learning, empowering students to apply data-driven solutions in civil engineering applications such as structural health monitoring, smart transportation, and infrastructure optimization.
Graduates of the program are equipped to manage the full life cycle of engineering projects—from planning and design to construction, operation, and maintenance—while considering economic, environmental, and social impacts. They are prepared to contribute effectively to the development of smart, resilient, and sustainable communities, in alignment with global engineering trends.
Skill Development
The Intelligent and Sustainable Civil Engineering Program is designed to develop a comprehensive set of technical, analytical, and professional skills, preparing graduates for the evolving demands of the civil engineering industry.
Students will acquire strong engineering design and analysis skills in structural systems, infrastructure, and geotechnical applications, enabling them to solve complex engineering problems efficiently. The program emphasizes hands-on experience through laboratory work, field training, and real-world projects, ensuring the development of practical engineering competencies.
In addition, students will gain proficiency in modern digital and intelligent tools, including programming, data analysis, machine learning, and deep learning, which are essential for developing smart, data-driven engineering solutions.
The program also focuses on enhancing:
- Project management and planning skills, including scheduling, cost estimation, and resource management
- Quality control and construction supervision skills
- Problem-solving and critical thinking abilities
- Teamwork, communication, and leadership skills
Furthermore, students will develop a strong understanding of sustainability principles, enabling them to design environmentally responsible and resource-efficient infrastructure systems.
By the end of the program, graduates will be equipped to integrate engineering knowledge, intelligent technologies, and sustainable practices to deliver innovative and efficient solutions for modern infrastructure challenges.
Academic Reference Standards:
According to the National Academic Reference Standards (NARS-2018), the competencies for graduates from Badya University and all engineering programs; graduates must be able to
Graduates are equipped with Comprehensive set of Competences for an Intelligent and Sustainable Civil Engineering Program should be satisfied. These competences align with modern engineering education, emphasizing sustainability, digital transformation, artificial intelligence, smart infrastructure, and professional practice.
Graduates of the Intelligent and Sustainable Civil Engineering Program will be able to:
- Apply Engineering Fundamentals
o Apply mathematics, physics, engineering sciences, and computational methods to analyze and solve complex civil engineering problems.
- Design Sustainable Infrastructure
o Design safe, resilient, economical, and environmentally sustainable buildings, transportation systems, water resources, geotechnical structures, and infrastructure projects.
- Utilize Digital Engineering Technologies
o Employ advanced digital tools including Building Information Modeling (BIM), Digital Twins, Geographic Information Systems (GIS), computational modeling, and simulation software throughout the project lifecycle.
- Integrate Artificial Intelligence
o Apply Artificial Intelligence (AI), machine learning, data analytics, and optimization techniques to improve planning, design, construction, structural health monitoring, and asset management.
- Develop Smart Infrastructure
o Design and manage intelligent infrastructure systems incorporating sensors, Internet of Things (IoT), automation, remote monitoring, and smart city technologies.
- Promote Sustainability
o Integrate sustainability principles, circular economy concepts, renewable energy applications, climate adaptation, and carbon reduction strategies into engineering projects.
- Apply Green Construction Practices
o Select sustainable materials, efficient construction methods, and resource management strategies that minimize environmental impact while maximizing lifecycle performance.
- Manage Engineering Projects
o Plan, organize, and manage engineering projects considering quality, safety, cost, scheduling, procurement, and risk management using modern project management methodologies.
- Conduct Engineering Research
o Design experiments, analyze engineering data, evaluate results, and apply scientific research methodologies to solve emerging civil engineering challenges.
- Solve Complex Engineering Problems
o Identify, formulate, and solve multidisciplinary engineering problems using critical thinking, systems engineering approaches, and innovative solutions. 11. Ensure Professional Ethics
o Practice engineering responsibly with integrity while considering ethical, legal, environmental, and societal responsibilities.
- Communicate Effectively
o Communicate technical information effectively through professional reports, engineering drawings, presentations, and digital collaboration platforms.
- Work in Multidisciplinary Teams
o Collaborate effectively with architects, planners, environmental specialists, contractors, policymakers, and other engineering disciplines.
- Employ Smart Construction Technologies
o Utilize automation, robotics, drones, remote sensing, additive manufacturing, and advanced construction technologies to improve productivity and safety.
- Support Resilient Communities
o Design infrastructure capable of withstanding natural hazards, climate change impacts, and urban growth while enhancing community resilience. 16. Practice Lifelong Learning
o Continuously update professional knowledge and technical skills to adapt to emerging technologies, international standards, and future engineering challenges.
- Apply International Standards
o Design and evaluate engineering systems in accordance with national regulations and international codes and standards while considering local community needs.
- Lead Innovation and Entrepreneurship
o Develop innovative engineering solutions, demonstrate entrepreneurial thinking, and contribute to sustainable economic and technological development.
These competences prepare graduates to become highly qualified civil engineers capable of leading the transformation toward smart, sustainable, resilient, and digitally enabled infrastructure while addressing global challenges related to urbanization, climate change, resource efficiency, and technological innovation.
Admission
Requirements
Academic Prerequisites
- Egyptian Thanaweya Amma: Must hold a Mathematics “رياضة” certificate.
- American Diploma: 8 subjects, including Mathematics, Physics, Chemistry, English, plus SAT/ACT/EST scores.
- Canadian Diploma: 8 subjects from Grades 11 & 12, including Mathematics, Physics, Chemistry, English.
- French Baccalaureate: 7 subjects, including Mathematics, Physics, Chemistry, English.
- IGCSE: 8 O-Level subjects plus 1 AL/AS Mathematics, including Mathematics, Physics, Chemistry, English, and other approved subjects.
- International Baccalaureate: Mathematics and Physics at Higher Level, plus English; minimum 24 points.
- Nile Certificate (CNISE): 7 L1 subjects, including Arabic, English, Chemistry, Physics, Mathematics, plus L2/L3 Mathematics.
- Abitur: 7 subjects, including Mathematics, Physics, Chemistry, English.
- الدبلوم الفني المعتمد من وزارة التعليم العالي والبحث العلمي
Learn more about our admissions process
How to apply
Gain a clear understanding of every stage—from application to offer acceptance and arriving on campus.
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