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Professional Doctorate in Process Systems Engineering (MSc)


About This Professional Doctorate

Course Description

Process systems engineering deals with the design, operation, optimisation and control of all kinds of chemical, physical, and biological processes through the use of systematic computer-aided approaches. Its major challenges are the development of concepts, methodologies and models for the prediction of performance and for decision-making for an engineered system.

Who is it for?

Suitable for engineering and applied science graduates who wish to embark on successful careers as process systems engineering professionals. 

The course equips graduates and practising engineers with an in-depth knowledge of the fundamentals of process systems and an excellent competency in the use of state-of-the-art approaches to deal with the major operational and design issues of the modern process industry. The course provides up-to-date technical knowledge and skills required for achieving the best management, design, control and operation of efficient process systems. 

Why this course?

Process systems engineering constitutes an interdisciplinary research area within the chemical engineering discipline. It focuses on the use of experimental techniques and systematic computer-aided methodologies for the design, operation, optimisation and control of chemical, physical, and biological processes, e.g. from chemical and petrochemical processes to pharmaceutical and food processes. 

A distinguished feature of this course is that it is not directed exclusively at chemical engineering graduates. Throughout the years, the course has evolved from discussions with industrial advisory panels, employers, sponsors and previous students. The content of the study programme is updated regularly to reflect changes arising from technical advances, economic factors and changes in legislation, regulations and standards.

By completing this course, a diligent student will be able to: 

  • Evaluate the technical, environmental and economic issues involved in the design and operation of process plants and the current practice in process industries.
  • Apply effectively the knowledge gained to the design, operation, optimisation and control of process systems via proper methodologies and relevant software.
  • Apply independent learning, especially via the effective use of information retrieval systems and a competent and professional approach to solving problems of industrial process systems.
  • Apply and critically evaluate key technical management principles, including project management, people management, technology marketing, product development and finance.
  • Apply advanced approaches and use effectively related tools in more specialised subjects related to process industries (for example risk management, biofuels or CFD tools).
  • Integrate knowledge, understanding and skills from the taught modules in a real-life situation to address problems faced by industrial clients; creating new problem diagnoses, designs, or system insights; and communicating findings in a professional manner in written, oral and visual forms.
  • Define a research question, develop aim(s) and objectives, select and execute a methodology, analyse data, evaluate findings critically and draw justifiable conclusions, demonstrating self-direction and originality of thought.
  • To communicate his/her individual research via a thesis and in an oral presentation in a style suitable for academic and professional

Accreditation

This MSc degree is accredited by Institution of Mechanical Engineers (IMechE)

Course details

The taught programme for the MSc in Process Systems Engineering is delivered from October to February and is comprised of six compulsory taught modules. There are four optional modules to select the remaining two modules from.

Group project

The Group Project, which runs between February and April, enables you to put the skills and knowledge developed during the course modules into practice in an applied context while gaining transferable skills in project management, teamwork and independent research. The group project is usually sponsored by industrial partners who provide particular problems linked to their plant operations. Projects generally require the group to provide a solution to the operational problem. Potential future employers value this experience. This group project is shared across the MSc in Process Systems Engineering and other courses, giving the added benefit of gaining new insights, ways of thinking, experience and skills from students with other backgrounds

During the project you will develop a range of skills including learning how to establish team member roles and responsibilities, project management, and delivering technical presentations. At the end of the project, all groups submit a written report and deliver a presentation to the industrial partner. This presentation provides the opportunity to develop interpersonal and presentation skills within a professional environment.

It is clear that the modern engineer cannot be divorced from the commercial world. In order to provide practice in this matter, a poster presentation will be required from all students. This presentation provides the opportunity to develop presentation skills and effectively handle questions about complex issues in a professional manner.

Part-time students are encouraged to participate in a group project as it provides a wealth of learning opportunities. However, an option of an individual dissertation is available if agreed with the Course Director.

Individual project

The individual research project allows you to delve deeper into a specific area of interest. As our academic research is so closely related to industry, it is very common for our industrial partners to put forward real-world problems or areas of development as potential research topics.

The individual research project component takes place between April/May and August for full-time students. For part-time students, it is common that their research projects are undertaken in collaboration with their place of work under academic supervision; given the approval of the Course Director.

Individual research projects undertaken may involve designs, computer simulations, feasibility assessments, reviews, practical evaluations and experimental investigations.

Assessment

Taught modules 40%, Group project 20% (dissertation for part-time students), Individual Research Project 40%

Funding

To help students in finding and securing appropriate funding we have created a funding finder where you can search for suitable sources of funding by filtering the results to suit your needs. Visit the funding finder.


Visit the Process Systems Engineering (MSc) page on the Cranfield University website for more details!

(Student Profile)

Chukwudubem Nwana

Impressive international rankings for the course of study and its reputation as the only postgraduate institution in the EU attracted me to Cranfield University. Also, its collaboration with industry was an important factor.
It helped me to develop my knowledge of business operations and how this interfaces with engineering expertise. I now have options in the manufacturing and the energy industries, both of which are my preferred career choices.
I found the international environment, as well as the access to social and extracurricular activities and facilities such as tennis and Jujutsu classes, and trips to Cambridge and London, fantastic.


Chukwudubem Nwanah, Management Trainee (Supply Chain -manufacturing), Unilever Nigeria,
(MSc, Energy Systems and Thermal Processes, 2014, full-time)


(Scholarship)

Cranfield Postgraduate Loan Scheme (CPLS) - 20+ Awards

Cranfield University is now able to offer you a more affordable way to study an MSc with loans managed by Prodigy Finance.With a Cranfield Postgraduate Loan it is possible for you to take up your MSc studies with no repayments while you study. This will leave you free to concentrate on your course and enhance your career prospects.Launched in February 2014, the scheme is designed to support UK and EU students entering postgraduate study and is intended to attract those who may not otherwise progress to this level because of financial constraints.Loans of up to £15,000 are available (dependent on the tuition fees for your chosen course).If you are a UK student, loans are available for tuition fees and maintenance. EU students can apply for a loan covering only tuition fees.
Loans are repaid over a seven year period and repayments start six months after you complete your degree. As a not-for-profit scheme, funded by Cranfield and HEFCE, the loans are competitively priced (6.92% APR representative) and considerably more affordable than a standard career development loan.

Value of Scholarship(s)

Loans of up to £15,000 total

Eligibility

You can apply for a loan if you:• are domiciled in the UK or EU and qualify for ‘Home/EU’ fees and
• have an admissions offer to a Cranfield full-time, taught MSc course in a STEM (Science, Technology Engineering or Mathematics) subject

Application Procedure

If you already have an applicable course offer you can apply online through Prodigy Finance. You will need to provide Prodigy Finance with details of your offer from Cranfield. Your loan application will be considered and responded to within a few days.

If you are yet to secure an offer of a place you can register your interest in the scheme and we will keep you up-to-date.

Further Information

http://www.cranfield.ac.uk/loan?utm_campaign=commscpls&utm_source=fam&utm_medium=onlineprofile&utm_content=courselistingfunding



Entry Requirements

A first or second class UK Honours degree (or equivalent) in a engineering or applied science discipline. Other recognised professional qualifications or several-years relevant industrial experience may be accepted as equivalent; subject to approval by the Course Directors.


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