Meng Engine Systems Course - [ IntensePotential.com ].pdf

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college of engineering master of engineering in engine systems delivered at a distance via the internet engine research center dear engineering colleague as a professor in the university of wisconsin madison s engine research center and a faculty member in our master of engineering in engine systems degree i am pleased to recommend this graduate degree program to you the engine systems degree provides a unique opportunity for engineering professionals working with internal combustion engines and those interested in leadership roles in the engine industry as a web based degree it allows engineers from anywhere in the world to work together sharing thoughts and ideas and bringing their various backgrounds to bear on problem analysis and solution the degree is specifically designed for professional engineers allowing integration of your studies with your career the instructional approach has been developed at the university of wisconsin madison and has already garnered several awards for excellence in distance education your faculty are drawn from the university s engine research center the powertrain control research laboratory and from throughout the engine industry companies represented among the faculty and guest lecturers include toyota general motors harley davidson general electric southwest research ford cummins and honeywell airresearch the varied faculty background provides a blend of fundamental science and practical application all of the courses were developed specifically for web based delivery and are available only to off campus participants the emphasis of the program is on immediate applica tion our students see practical benefits as each course is completed the faculty and staff of the engine research center here at the university of wisconsin madison are excited to be part of this new educational endeavor we look forward to the opportunity to work with you as we explore together the future of internal combustion engine development sincerely rolf d reitz wisconsin distinguished professor department of mechanical engineering master of engineering in engine systems the master of engineering in engine systems mees degree uses distance learning methods to offer an innovative curriculum specific to internal combustion engines this degree program offers many advantages for engineers seeking to become successful technical leaders of engine development projects all too often technical leadership is expected of people having relatively little experience over the broad array of technical disciplines required in engine development wisconsin s engine systems curriculum addresses this condition and therefore i wholeheartedly support it thomas w asmus senior research executive retired daimlerchrysler corporation engines remain crucial to the world economy the reciprocating piston internal combustion engine continues to be one of the most important energy conversion devices for a variety of applications from automobiles and motorcycles to heavy trucks farm and construction machinery from lawn and garden equipment to pleasure boats and large ocean going ships while many alternatives have been suggested none has yet approached the combination of efficiency and cost effectiveness required in these important applications the piston engine will remain crucial to the world economy for many years to come 1 virtually every subject in the mechanical engineering curriculum finds application in the engine these subjects have been joined recently by topics from electronics and chemical engineering to be a successful engineering leader you need a foundation in each of these subjects and be able to integrate and apply this knowledge to engine development projects that meet market demands to answer the need for broad based technical knowledge the mees curriculum incorporates topics from a wide variety of disciplines including thermal sciences design and mechanics electronics and control applications and service and manufacturing the program also addresses critical project management and computer problem solving skills that will help you to be more efficient and effective and ensure project success engine development involves a variety of engineering disciplines we have a desire to offer our best engineers a growth opportunity to learn best practices in engine design through interaction with their peers in the industry i can personally attest to the excellence of courses offered by the university of wisconsin in engine design and development brian price technical director romax technology 2 3 mees courses are problem based and application oriented providing knowledge that you can use immediately in your current projects while preparing you for future leadership roles throughout the program you ll work and share learning with class members all practicing engineers from around the engine industry in addition you will work in a small team that over the course of the program will create an engine design for the team s chosen application a results oriented program focused on engine design the university of wisconsin madison is world renowned in engine research as a graduate student in the mees program you ll be part of a tradition of excellence at one of america s top universities the engine research center at the university of wisconsin madison is the largest academic research center devoted to internal combustion engine research in the united states and among the largest in the world for more than 50 years uw madison has been synonymous with leadership in engine research in this master of engineering program the engine research center has teamed up with the university s powertrain control research laboratory and leaders from throughout the engine industry to offer a unique learning opportunity the department of engineering professional development contributes expertise in offering continuing engineering education courses and successful distance delivered master of engineering degrees the mees students bring invaluable industrial experience and immediately interpret the fundamental principles in terms of their application to the product the class discussion forums are quite lively with interesting postings from which we all learned rolf reitz wisconsin distinguished professor of mechanical engineering 4 location job responsibilities travel demands and family needs often stand in the way of pursuing graduate education to overcome these barriers we ve designed a program that allows you to earn a top quality master s degree from your location using times available in your schedule the master of engineering in engine systems degree features interactive engaging and group based courses that are designed and tested for distance delivery the only times you will need to visit the university of wisconsin madison campus are during the week long summer residencies during the first two summers of the program you will meet on campus for one week with your instructors and fellow students to prepare for upcoming courses optional visits will be offered during later summers complete this degree from home work or on the road throughout the program you ll use the internet live webconferencing and software applications to complete assignments and group projects you ll use these tools to work in virtual teams solve problems and communicate engineering ideas and information thus you ll learn from the methods of this program as well as the content as you gain experience and confidence in the work environment of the future learn today as you will work tomorrow the classes have been excellent preparation for my new job they ve allowed me to quickly get acquainted with the many steps needed to understand develop validate and analyze testers of all kind h l ne cornils test engineering manager eaton corporation 5 as i approach the halfway point in the mees curriculum the value of the program is very apparent to me the general knowledge of base engine design emissions and combustion has been useful in my work in addition the exposure to engineers and ideas from other industries has been helpful in learning about different design philosophies and technologies braman wing engineer borg warner morse tec as a graduate student in the mees program you ll be participating in an innovative learning experience designed to help you gain the technical skill base required for effective leadership of major engine development projects upon completion of the mees degree you should be able to manage the complete development process for a new engine clearly articulate customer and application requirements for a given engine effectively integrate engine design with the various manufacturing processes including casting forging and machining select the combustion system fuel and engine system configuration that will best meet the needs of a particular application lay out a new engine design and identify the critical package dimensions resulting from particular design decisions effectively optimize each component sub system and system required in the engine design articulate the capabilities and limitations of each family of analysis tools and each rig and engine experimental technique typically used in engine development lead the development and optimization of the air handling and combustion systems for both diesel and spark ignition engines lead in defining and implementing the durability validation required for a completely new engine coordinate the nvh measurement and optimization for the new engine with total vehicle efforts to meet regulatory requirements and customer expectations integrate the design and development of the engine with the control systems required for fueling combustion aftertreatment and engine vehicle interaction learning objectives 6 who will benefit the mees program will benefit engineers involved in engine develop ment projects needing broad based technical knowledge and project leadership skills this degree is designed for early to mid career engi neers who are planning to continue working in a technical capacity and assuming new roles and responsibilities in leading projects engineers from companies that design and manufacture internal combustion en gines of all sizes from lawnmowers to diesel ship engines will benefit from this curriculum employers will benefit as staff members gain new critical skills and improve their effectiveness as engineering leaders mees students and their employers will value the immediate applicability of what they learn to their daily engineering responsibilities employers especially appreciate that their engineers can gain these skills with little or no ef fect on employees availability for assignments or travel mees distance learning environment the mees degree is built on the model of the very successful master of engineering in professional practice degree which has won major national awards for distance learning design and excellence following this model we ve designed each course in the mees curriculum to be part of an e learning environment that includes real world applications and team projects our goal is to offer high quality courses that give you the flexibility you need while providing opportunities to interact and network with other students and senior level faculty mees courses employ many different e learning tools to provide you with an effective and efficient learning experience a modern web based platform allows you to download course information post your assign ments and discuss course topics with other students and instructors presentations on cd rom study guides textbooks and other resources will supplement web based information and activities you will also participate in live webconferences that involve real time audio over phone lines and interactive web based visuals you ll take mees courses with others in your graduating class allowing you to develop relationships that maximize learning and project work the webconferences and online discussions will keep you in close contact and on pace with others i love working with engines mees fills an education niche that s just not available anywhere else it is a powerful way to move your career forward bruce dennert principal engineer concepts for powertrain engineering harley davidson motor company 7 the uw madison s college of engineering is committed to your success and completion of the mees degree we have built in dedi cated counseling as well as technical and learning support to help you through this program you ll benefit from n learning integrated with your job for immediate application n high level of support from program faculty and staff n quality courses designed for distance delivery n team based learning n limited class size a typical week in the mees program in the mees program you will complete the degree in four years taking one course each semester plus two summer courses in a typical week you ll have assignments that would include assigned readings problems to develop using desktop computer applications a live webconference discussion and online project work you ll have great flexibility within each week to complete course activities but most assignments are due by the end of the weekend so while the program is flexible it includes many regular check in times and structured support to help keep you on track top quality library resources and support the uw madison academic libraries are among the best in the world as a distance learner at uw madison you will be able to access the libraries web sites and link to journal databases electronic books the campus online catalog and more than 8 000 electronic full text journals librarians at the kurt f wendt library home library for the mees program will help you locate and use library resources and will deliver articles and books to you they will help you find government documents and standards scan articles and book chapters not available electronically and assist with interlibrary loans these services will be available to you throughout the mees program our commitment to you the mees courses hit right on the mark already i can see the integrity of my decisions has improved as a result of what i have learned in mees mike mihelich manager design analysis group mercury marine 8 degree requirements the degree requires 27 graduate credits obtained by completing the 10 courses listed below and described on pages 9 16 you will take one course each semester and two summer courses you can expect to spend about 10 hours per course per week doing coursework and participating in group activities network skills for remote learners 1 credit engine performance and combustion 3 credits engine design i 3 credits engine application project 2 credits engine fluid dynamics 3 credits engine design ii 3 credits perspectives on engine modeling 3 credits engine systems and control 3 credits analysis of trends in engines 3 credits engine project management 3 credits summer residency requirement two summers during the program you will meet with your fellow students and instructors in a week long residency on the university of wisconsin madison campus scheduled for august these on cam pus sessions will conclude the summer coursework and lead you into your upcoming courses during these sessions you will develop a clear understanding of the program goals course requirements and university resources available to you as a distance student you will also build the relationships with faculty staff and students that will help you enjoy the program and maximize its benefits tuition and fees the tuition is based on university of wisconsin graduate tuitionand is adjusted annually the fee includes technology costs for internet course delivery live webconferencing and library use students use a toll free telephone line for the audio portion of webconferences stu dents also have free use of webconferencing facilities for group project work for mees courses please note that the per credit fee does not include travel and living expenses for summer residencies textbooks or course software check the mees web site for current rates mees engr wisc edu 9 network skills for remote learners 1 credit learning effectively in an online environment requires that you master the tools and techniques of information management and collaboration on your own desktop as well as over the network when you add the need to balance personal life work and education you have a challenging situation this course will get you up to speed with the course tools and procedures and enable you to improve your efficiency and effectiveness in electronic communication collaboration and research you will also examine your own learning goals to maximize the benefits of the mees program course topics setting up your learning environment installing updating and testing software getting started with course communications backing up your work troubleshooting your tools and applications security considerations home work and on the road information management e mail effectiveness and alternatives to e mail using a formal document management system professional web and library searching desktop efficiency and file management learning at a distance learning in online discussion forums succeeding as a distance learner juggling roles responsibilities and time making your life mission happen desktop skills and groupwork sharing data between applications effective webconferencing and building a group document mastering word processing templates and styles master of engineering in engine systems curriculum engine performance and combustion 3 credits course purpose there is much confusion as to what really governs and ultimately limits internal combustion engine performance there are fundamental theoretical limits imposed by thermodynamics and chemical kinetics there are regulatory limits invoked by emission noise and safety constraints then there are practical limits imposed by manufacturing capabilities and cost often these constraints compete with one another making intelligent choices about the directions to pursue in new designs approaches to achieve operational criteria or energy converters to achieve the requisite power requires a sound understanding of the fundamental operation of the engine this course is designed to provide that fundamental understanding as the energy conversion process is rooted in the chemical reaction occurring in the cylinder the combustion process will serve as the foundation of study the course starts with establishing the difference between heat engines and chemical processes from this basis the course proceeds to analyses for the important phenomena associated with the energy conversion process and how these processes are impacted by engine characteristics course objectives understand theoretical and practical limits of maximum engine performance analyze engine combustion phenomena from a fundamental thermo chemical perspective including effects of mixture preparation strategy in cylinder charge motion understand in cylinder pollutant formation mechanisms abatement strategies and aftertreatment systems and their implications identify coupling between a single control input and the remainder of the engine system compare and contrast mixture preparation strategies compare and contrast alternative energy conversion strategies topics heat engines versus chemical conversion processes thermodynamics of heat engines thermodynamics of chemical reactions fundamental limits of heat engines and chemical processes typical partitioning of fuel energy for engine applications thermodynamic equilibrium thermodynamic principles of equilibrium calculation of equilibrium composition adiabatic flame temperature heat release analysis time to reach equilibrium equilibrium concentration versus regulated emissions chemical reactions and chemical kinetics systems of chemical reactions chemical rate equations characteristics times chemical flow engine ignition and extinction fla
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