Applicants must be non-Chinese citizens with a valid passport and have been awarded a recognized Bachelor's degree.Your Chance to Get Admitted
This Master’s Degree program offered by the School of Energy and Power Engineering aims to provide a rigorous and specialized training program for candidates with interests in the fields of power engineering and thermal fluid science. It makes students the opportunity for having a solid and rewarding graduate study career that will lead to acquirement of sound foundation for pursuing higher academic degree programs and development of skills and ability in power engineering and thermal fluid science.
2. Length of Study
The full-time scheme lasts for two years, consisting of four academic semesters.
3. Program Description
Students must totally complete at least 32 credits, including 10 credits earned from thesis work.
The thesis is considered to be the centerpiece of a student's graduate study. The Master's thesis is essentially a research apprenticeship under the supervision of a faculty member, and as such is usually the major contributor to the student's professional maturation.
The courses are divided into three main categories, namely Communication Module, Math Basic Module and Basic Speciality Module.
6. Description of Curriculum
Numerical Heat Transfer and Fluid Flow (by Academician Tao, Wen-Quan)
Heat transfer and fluid flow problems are governed by a set of partial different equations. Because of the complexity of the governing equations, analytical solutions are only allowed for very simple cases, making it necessary to use numerical techniques and computers for most problems of practical interest. During the past four decades, numerical or computational heat transfer and fluid dynamics have emerged as important tool for both scientific research and engineering design. And with the fast development of computer hardware and solution techniques, their importance will become more and more obvious.
In this course the fundamental theories, methods and engineering applications of computational fluid dynamics and computational heat/mass transfer are comprehensively and systematically introduced. It has two parts, one is the basic theory and the other is a two-dimensional general computer program. Through the introductions of the principles of finite volume method（FVM）,its implementation and application examples about diffusion (heat conduction) and convective heat/mass transfer, the students can not only grasp the principles of FVM and but also know the details of their implementations well. The two-dimensional general computer program can be used for solving the problems of heat/mass conduction/diffusion and convection of incompressible fluid in three two-dimensional orthogonal coordinate systems. Through modification of user's subroutine source code, this program can also be used for solving many technical problems in engineering. The teaching of this course puts emphasis on applying physical concepts in the development of numerical methods, revealing the physical background of numerical methods, and training the ability of postgraduates for solving real engineering problems by using numerical methods. Through the learning of this course the students will have a sound background for understanding and applying related commercial software.
Stability, Bifurcation and Numerical Analysis for the Nonlinear Dynamic Systems (By Prof. Zhang Jiazhong)
There exists a very rich variety of nonlinear phenomena in energy and power engineering, and some relevant branches are both traditional and fundamental. With the examples in energy and power engineering, this course presents the main concepts and applications of nonlinear dynamics at an elementary level. For example, flow, singularity, stability, bifurcation, catastrophe, chaos, inertial manifolds, self-similarity and fractal dimension etc., will be introduced in detail to graduate students, and some explanations are given in an illuminative way.
The class is given in English, with 40 teaching hours.
After this course, the students could understand the new and advanced knowledge in nonlinear dynamics, and they can be motivated by the exciting natures of nonlinear phenomena and modernity of the concepts. In particular, they can eventually utilize concepts of nonlinear dynamics in their future careers, since the study of nonlinear dynamics is a fascinating question and is at the heart of understanding of many important problems in natural sciences.
Thermal Management and Cooling Technology of Electronic Packages and Data Centers
(by Professor Hou, Yu and Dr. Chen, Liang)
The power density in electronic devices has increased substantially with the miniaturization, increase of the transistor count, and operation speed in the past decades. Power dissipation limits the performance of electronics at multiple scales from mobile devices to massive data centers. With an ever-increasing demand on high-performance devices, thermal management has become a crucial factor in the design of electronics, from chips to data centers.
This course covers a comprehensive knowledge of the key cooling techniques and refrigeration technologies at multiple scales which spans from electronic package to data center. The thermal issues involved in the electronic devices and their effects on device performance/reliability are first discussed. At chip/package level, many cooling techniques have been developed for various applications from high-heat-dissipation devices to low-power devices. Understanding the fundamental heat transfer mechanism is of great importance for the thermal design of the electronic packages. Firstly, this course places a great deal of emphasis on understanding the basic heat transfer processes involved in various cooling techniques, e.g. heat conduction, thermal contact resistance, natural convection, forced convection, boiling, and condensation. Then the working principles and thermal design of various cooling techniques are discussed including the air cooling, cold-plates, micro-channel cooling, spray cooling, heat pipes, and thermal-electric cooling. Finally, topics on thermal management of data centers are discussed, including the energy-efficiency metrics, the airflow management in computer rooms, the energy-efficient mechanical refrigeration systems, and the natural cooling systems. In order to help the students gain more insights to the engineering design and practical application, an experiment on spray cooling and a project of numerical modeling a typical electronic package are scheduled in this course.
Applicants must be non-Chinese citizens with a valid passport and have been awarded a recognized Bachelor's degree.
Tuition Fee Master RMB 39,000 per year
RMB 78,000 in total (About $ 14,305)
Accommodation Fee West 13 Building Double Room RMB 65 to RMB 10,000 (Per person Per Day Within 5 months) Single Room RMB 100 to RMB 24,000 (Per person Per Day Within 5 months) West 8 Building Double Room RMB 45 to RMB 9,000 (10 months) West 7 Building Single Room RMB 100 to RMB 24,000 (10 months) Other Fees Application Fee RMB 500 Service Fee USD 50 Living Expense RMB 2,000 to RMB 2,500
- Application Materials
1. Application Form
Please upload your finished application form here.
2. Notarized Copies of Research Achievements
Applicants can submit published research papers, award certificates or other documents to prove their achievement and ability in academic research if any.
3. Photocopy of valid passport
With name, passport number & expiration date, and photo included
4. Highest degree certificate (notarized copy)
Documents in languages other than Chinese or English must be translated into Chinese or English and notarized. Prospective diploma winners must submit official proof of student status by their current school.
5. Academic transcripts
Applicants should submit the original transcripts in undergraduate or graduate period. Documents in languages other than Chinese or English must be attached with notarized Chinese or English translations.
6. A Study Plan or Research Proposal
Applicants must submit a written study plan or research proposal in English or Chinese, with a minimum of 800 words for Master degree and 1500 words for Doctoral degree.You can download a template or sample from here.
7. Letters of Recommendation
Two letters of recommendation (in Chinese or English) must be written for the applicant by professors or associate professors.
8. Certificate of English/Chinese Proficiency Level
HSK(above new HSK 5) and IELTS (above IELTS Band 5.5) transcript, or English Proficiency Certificate issued by applicant’s university.
For applicants who are in China: If you are an employee, you still need to provide employment separation certificate and your current residence permit. If you are a student, you need to provide transfer certificate, leaving certificate, certificate of attendance rate issued by previous school and your current residence permit.
- How to Apply
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- 1. Click “Apply Now” button on the right side of the page.
- 2. Fill in online application form. (About 10 minutes)
- 3. Upload required documents. (About 5 minutes)
- 4. Pay the application fee and CUCAS service fee (CUCAS is authorized to collect on the university’s behalf). (About 5 minutes)
- 5. Click “Submit” button.
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|·Starting Date :||Sep 10 , 2019|
|Teaching Language :||English|
|Application Deadline:||Jun 30 , 2019|
|Tuition :||RMB 39,000 Per Year|
|Application Fee:||USD 95 (Non-Refundable)|
|Service Fee:||USD 50 (Non-Refundable)|
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