Bachelor of Engineering (Renewable and Clean Energy)

Faculty of EDICT (Engineering,Design and ICT)
Programme Title (Arabic) البكالوريوس في الهندسة (الطاقة المتجددة والنظيفة)
Acronym / Abbreviation* BEng (Renewable and Clean Energy)
Nature Major
Programme Code ENT8035 Programme Duration 4 Year/Cycle Programme Level Level 8
Programme Credits 480 Award Category Bachelors
Effective From 2025/2026 Sem 1 as of ( August 2025 )
Owner School of Engineering
Professional Body
Professional Body Recognition Status Effective From Interim Date Professional Bodies Contact Person Evidence
Employability Skills Yes 04/01/2021        
Target Groups*
High School Graduates
International Students
People in Employment
Unemployed
Bahrain Polytechnic students from another programme
Qualification Completion Requirements Criteria

Awarded where candidates have met all of the requirements below:

  • Successful completion of, or exemption from, all courses listed in Schedule A;
  • Accumulation of at least 30 credits from courses in Schedule B;
  • Accumulation of at least 15 credits from courses from the National Requirements and National Requirements Arabic group of courses.
  • Accumulation of at least 45 credits from courses from the EDICTE and NEDICTE Elective Groups.
  • Achieve the Bahrain Polytechnic General Qualification Requirements as found in Policy A/AB/004, Naming and Awarding Qualifications;
  • Completion of courses to accumulate a total of 480 credits from any Bahrain Polytechnic Qualification;
  • Completion of 80 days of work experience.
 
Programme Overview*

The Bachelor of Engineering Programme in Renewable and Clean Energy offered at Bahrain Polytechnic is designed to meet the growing demand for skilled professionals in the renewable energy sector. This qualification is placed at NQF level 8, with an exit qualification of an Associate Degree in Engineering at NQF level 7.

The B.Eng. Renewable and Clean Energy qualification is developed through extensive interaction with the Bahrain Engineering environment and society, ensuring that graduates are work-ready and equipped with the necessary skills to drive the transition towards sustainable energy solutions. Graduates will acquire advanced technical knowledge in renewable energy technologies, specialized practical skills, and valuable employability skills, enabling them to contribute effectively to Bahrain’s transformation towards a knowledge-based and sustainable economy.

All B.Eng. Qualifications, including the Renewable and Clean Energy program, are delivered over a 4-year period consisting of 8 semesters. Students are expected to take 60 credits on average per semester, accumulating a total of 480 credits by the end of their studies. These 480 credits include 45 credits of Elective courses, 15 credits of National Requirements courses, 30 credits of English courses, and the remaining 390 credits from Core and Specialized Engineering Courses. Additionally, students must complete a total of 80 work placement days. All qualifications share a common 1st Year with foundational courses in Engineering Technology, providing students with the essential knowledge to succeed in their chosen specialization.

The uniqueness of the B.Eng. qualifications at Bahrain Polytechnic lies in the institution’s strong commitment to student-centred learning, specifically through the Problem-Based Learning (PBL) Methodology. This approach ensures that graduates acquire the necessary theoretical knowledge, practical skills, and employability skills to become enterprising and work-ready professionals for Bahrain’s society and economy. The PBL methodology involves designing assignments that motivate students to solve engineering design and analysis problems. Students engage in lab experiments, software practical assignments, design projects, controlled assignments such as theory tests, and provide rational justification for their work through technical reports, presentations, and posters. The theoretical knowledge is delivered through a balanced combination of lectures, tutorials, experimental work, project work, and one-to-one supervision with faculty members.

 
 
Entry and Selection*

General entry requirements such as secondary school achievements, English, and Mathematics are described in the Student Admission Policy A/AB/010. Specific entry requirements for this Programme, beyond those described in the Student Admission Policy, are as follows:

Achievement of AP5000 or AP4103, AP5101 OR AP5102, AP5201, AP5202, AP5307, AP5096, and one of the access courses related to their degree is required for entry into all Polytechnic degree level programmes. Students will need to complete their required Foundation courses within the period of one year. Based on the achieved GPA, which is reviewed regularly by Deans and approved at Academic Council, it will be determined if the student will be eligible for Diploma or Bachelor studies.

 
 
Selection and Criteria and Process*

Where there are more applicants who meet the programme entry criteria than can be accepted, the following shall be used:

Selection Criteria

  • Successful completion of the Foundation Programme at Bahrain Polytechnic and demonstration of a commitment to study.
  • Results from programme entry tests.
  • Work experience and prior educational achievement.

Selection Process

  • Applicants may be required to attend an interview.
 
 
Major Selection Criteria*

Where the number of applicants exceeds the available places the following criteria for selection apply:

  • First priority to students who have completed all courses in the common first year of the degree.
  • Second priority will be those with highest combined GPAs from EN6914 Mathematics for Engineers 2.
 
 
Accreditation / External Approval Requirements*

All engineering programs at Bahrain Polytechnic are accredited by the Institution of Engineering and Technology (IET). The new program, “Bachelor of Renewable Energy Technology,” will also be submitted for IET accreditation.

 
 
Attendance Requirements*

Attendance requirements are described in the policy Student Attendance A/AB/010.

 
 
Qualification Overview*

The Bachelor of Engineering (Renewable and Clean Energy) qualification is a robust program designed to meet the needs of the industry on national, regional, and international levels. This qualification provides a comprehensive foundation in renewable energy technologies and skills, enabling graduates to excel in various fields and industries locally and regionally. The program emphasizes sustainable energy systems, solar and wind energy technologies, energy storage, and energy efficiency, catering to the growing renewable energy sector and supporting industries.

Students gain advanced theoretical knowledge and specialized practical skills in areas such as renewable energy systems, solar and wind energy technologies, energy storage, energy efficiency, and sustainability. The program also covers essential engineering principles including mechanics (static and dynamic), thermodynamics, fluid mechanics, material science, and heat transfer. Students are introduced to software packages such as Matlab and LabView, and 3D modeling software like SolidWorks is integrated and extensively used throughout the program. In their final year, students have the option to undertake either a research-based project or an industry project related to renewable energy. These projects allow students to apply the skills and knowledge they have acquired during their three years of study at Bahrain Polytechnic.

 
 
Qualification Aim*

The aim of this program is to equip students with a comprehensive set of skills for employment as engineering technologists, as defined by the Sydney Accord, which includes competence in analyzing, solving, managing, and taking responsibility for broadly-defined engineering problems and activities.

The program will provide students with:

  • Theoretical and practical skills to solve engineering problems and design engineering systems in the broad area of renewable energy, including solar and wind energy technologies, energy storage, energy efficiency, and sustainability.
  • Essential skills for effective communication, analysis, teamwork, documentation, and evaluation of systems through courses in English language, mathematics, project management, ethics, and social responsibility.
 
 
Graduate Pathways and Destination*

This program prepares students for the following further learning, careers, and/or employment opportunities:

Renewable Energy major:

  • Solar Energy Engineer
  • Wind Energy Technician
  • Bioenergy Specialist
  • Energy Efficiency Consultant
  • Sustainable Energy Project Manager
  • Renewable Energy Systems Designer
  • Energy Storage Engineer
  • Environmental Impact Assessor
  • Smart Grid Engineer

Graduates from the Bachelor of Engineering program who wish to continue their studies may apply to any university for admission into their program. For an engineering technology degree, it is common practice for a university to first enroll the student into a post-graduate diploma program and, based on progress made, transfer them to a full Master’s program.

 

 
 
Other Information*

Employability Skills Generic Definition:

Communication

Communicate in ways that contribute to productive and harmonious relationships across employees and customers.

Team work

Work effectively independently and in collaboration with others.

Problem solving

Think critically and respond appropriately to changing needs within a growing and diversifying economy.

Initiative and enterprise

Apply resourcefulness, innovation and strategic thinking to a range of workplace situations.

Planning and organisation  

Plan and manage their working lives.

Self management

Demonstrate self discipline and adaptability, and be able to plan and achieve personal and professional goals.

Learning

Understand the need for and engage with continuous learning throughout the lifespan.

Technology Utilize information technology effectively and ethically in their personal and professional lives.
 
 

Programme Learning Outcomes

On successful completion of this programme the learner will be able to :

Description
Apply critical knowledge of mathematics, science, engineering fundamentals and an engineering specialisation to deal with defined and applied engineering procedures, processes, systems or methodologies.
Solve broadly-defined engineering problems reaching substantiated conclusions using analytical tools appropriate to their discipline or area of specialisation.
Demonstrate commitment to professional ethics, responsibilities and norms of engineering technology practice.
Demonstrate critical knowledge of the impact of engineering solutions in a societal context and the need for sustainable development.
Critically analyze the societal, health, safety, legal and cultural issues and the consequent responsibilities relevant to engineering technology practice.
Design solutions for broadly-defined engineering technology problems to meet specified needs with appropriate consideration for public health and safety, cultural, societal, and environmental considerations.
Apply standard investigation methods of broadly-defined problems to design and conduct experiments, and provide valid conclusions
Apply appropriate techniques, resources, and modern engineering tools, including prediction and modeling tools, to broadly-defined engineering activities, with an understanding of their limitations.
Practice as a professional using 21st century skills.
Demonstrate critical knowledge of management and business practices, such as risk and change management, and understand their limitations.
Solve practical problems in specific renewable energy engineering settings using sound analytical, industrial, laboratory, and time-management skills
Design renewable energy systems using knowledge of the functionality and operating principles of systems components, enabling technologies and relevant standards.
Analyze the operation and impacts of renewable and distributed energy systems to implement solutions improving their performance and integration into electricity systems.
Demonstrate critical understanding of working with computers and their best use in an engineering environment.
Work effectively in a team to complete the process of design, prototyping, and manufacture of products.

Semester Schedules

Year 1 / Semester 1

Core
Course Code Title
EN6000 Electrical Fundamentals
EN6990 Engineering Practice
EL6001 English for EDICT 3
EN6907 Mathematics for Engineers 1

Year 1 / Semester 2

Core
Course Code Title
EN6010 Engineering Computing Fundamentals
EL6002 English for EDICT 4
EN6914 Mathematics for Engineers 2
EN6903 Mechanical Fundamentals

Year 2 / Semester 1

Core
Course Code Title
EN6080 Alternating Current ( AC ) Circuit theory
EN7061 Analogue Electronic Circuits
NR National Requirements

Year 2 / Semester 2

Core
Course Code Title
ED7000 Applied Project
EN6002 Fundamentals of Renewable Energy
EN7704 Material and Energy Balances
EN7302 Sustainable and Renewable Energy Sources
EN7925 Thermofluids

Year 3 / Semester 1

Core
Course Code Title
EN7890 Energy Conversion and Storage Systems
EN7008 Power Electronics
EN8240 Solar Energy Systems
EN8010 Wind Energy Systems
Elective
Course Code Title
EDICTE EDICT Electives

Year 3 / Semester 2

Core
Course Code Title
EN7853 Engineering Economy and Cost Analysis
EN7230 Instrumentation and Automatic Control
Elective
Course Code Title
EDICTE EDICT Electives

Year 4 / Semester 1

Core
Course Code Title
EN8918 Applied and Process Heat Transfer
EN8905 Energy, Environment and Sustainability
EN8923 Engineering Project Management
EN8061 Power Systems
EN8913 Project Proposal

Year 4 / Semester 2

Core
Course Code Title
EN8914 Co-operative Learning Project
EN8911 Engineering Research Project
EN8890 Renewable Energy System Modelling and Analysis
Elective
Course Code Title
ELE1 Electives 1