HTME

COURSE OVERVIEW

MECHANICAL ENGINEERING
OVERVIEW
COURSE TITLE : ME0960 : Combustion Techniques & Burners in Furnaces, Boilers & Unit Efficiencies
COURSE DATE : Mar 04 - Mar 07 2024
DURATION : 4 Days
INSTRUCTOR : Mr. Den Bazley Days
VENUE : Al Khobar, KSA
COURSE FEE : $ 4500
Request For Course Outline
OTHER SCHEDULED DATES
Date : Jun 24 - Jun 27 (4 Days) Location : Abu Dhabi, UAE Classroom Fee (US$) : $ 4500 Course Info
Date : Sep 23 - Sep 26 (4 Days) Location : Doha, Qatar Classroom Fee (US$) : $ 5000 Course Info

Course Description

This practical and highly-interactive course includes real-life case studies and exercises where participants will be engaged in a series of interactive small groups and class workshops. Power generation and most processes are dependent on combustion of fuels. The effectiveness of the combustion process has a major influence on plant efficiency, reliability, safety and emissions. This course will improve your understanding of combustion and heat transfer and assist you to obtain the best out of your plant. This course focuses on recent developments in burner design for process heating applications including boilers, furnaces, refinery operations, power plant and process plant. Particular emphasis is given to combustion aerodynamics and its influence on burner design, low NOx burner design and emission reduction techniques including reburn, SNCR, SCR and NOx storage techniques. These aspects are examined in relation to large natural gas burners, refinery burners, heavy fuel oil burners, flameless combustion, waste and bio-fuel firing, oxy-fuel firing and fluidized bed combustion. Large scale testing and the role of CFD in burner design are also covered.This course is particularly concerned with improving the energy and environmental performance and design of gas and oil-fired, high-temperature furnaces and boilers. The main aim of the course is to provide greater understanding of the principles and practices associated with efficient design and operation of this type of plant. Lectures will be presented initially on the appropriate fundamental and practical aspects of combustion and heat transfer which are necessary to provide an understanding of the thermal behaviour of fuel-fired furnaces and boilers. Recent concerns on the harmful effects of global climate change have highlighted the need for energy conservation so that efficient burner operation is a major feature of the course. Further, the course will provide a comprehensive insight into understanding the safety functions involved with ensuring a safe combustion process in boilers, furnaces, heaters and other fired process units. The concepts of Safety-Instrumented Burner Management Systems (SI-BMS) will be presented as the methodology to design a BMS to be compliant with latest codes and standards including NFPA 85, NFPA 86, FM 7605, ANSI/ISA 84, and IEC 61508, API 556, API 14C & BLRBAC. link to course overview PDF

TRAINING METHODOLOGY

This interactive training course includes the following training methodologies as a percentage of the total tuition hours

Lectures
Workshops & Work Presentations
Case Studies & Practical Exercises
Videos, Software & Simulators

In an unlikely event, the course instructor may modify the above training methodology before or during the course for technical reasons.

VIRTUAL TRAINING (IF APPLICABLE)

If this course is delivered online as a Virtual Training, the following limitations will be applicable

Certificates: Only soft copy certificates will be issued to participants through Haward’s Portal. This includes Wallet Card Certificates if applicable
Training Materials: Only soft copy Training Materials (PDF format) will be issued to participant through the Virtual Training Platform
Training Methodology: 80% of the program will be theory and 20% will be practical sessions, exercises, case studies, simulators or videos
Training Program: The training will be for 4 hours per day starting at 09:30 and ending at 13:30
H-STK Smart Training Kit: Not Applicable
Hands-on Practical Workshops: Not Applicable
Site Visit: Not Applicable
Simulators: Only software simulators will be used in the virtual courses. Hardware simulators are not applicable and will not be used in Virtual Training

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