34 Followers Download An Introduction to the Finite Element Method By Reddy J N – An Introduction To The Finite Element Method, in its third edition, has the same conceptual approach to FEM as the previous versions. The ramifications of the Finite Element Method in various applications of engineering are examined with detailed mathematical explanations. All the basic concepts relating to FEM are discussed under An Introduction To The Finite Element Method.
2 j˙ a ˝ k ˝ $! ˆ $ $ ˙ ˙ ˝ $! $ a.) ˇ $ 1, ˙ -2! A ˝ $ ˝ ˝ ˙ 4 ˆ ˙ a #$ $ ˝ $ ˙ 99 7 a 2 9 $ ˆ! 5 ˆ ˙ ˙ e,˙ ˝ $˙ ˝$ $ ˙-& 5$ ˙ ˙4˙ 4 ˆ ˙ a! Reddy's has to be one of the finest books for learning the finite element method. The presentation is simple and follows a careful order that essential for understanding the implementation of the technique.
After the preliminaries are covered, the book explains variations and integral formulations. Next, finite element models as well as their applications are examined for one dimensional differential equations of the second order. There is also a chapter devoted to the computer implementation of FEM. Other practical scenarios are discussed, such as time-dependent situations, beams and frames, the flow of viscous incompressible fluids and the bending of elastic plates. FEM can be applied to all of the above situations.
The chief feature of An Introduction To The Finite Element Method is the wide repertoire of solved examples. There are some problems that are meant to be solved by hand, and some on the computer. Close to 30 per cent of the problems are new or have been revised from the previous edition. There are some that are in the form of a class project, which the professor can choose to do using commercial Finite Element Method packages. Various subjects across the engineering spectrum such as fluid mechanics, heat transfer and solid mechanics are covered. An Introduction to the Finite Element Method By Reddy J N – PDF Free Download. Reddy obtained his BE degree in Mechanical Engineering from Osmania University in Hyderabad, after which he went on to graduate from Oklahoma State University, Stillwater, Oklahoma, with an M.S.
In Mechanical Engineering. He then obtained a Ph.D in Engineering Mechanics from the University of Alabama. Reddy played a significant part in developing Finite Element Method. He is a revered member of the Mechanical Engineering fraternity, and is considered an exceptional teacher, having won a number of awards for the same. He is also a postdoctoral Fellow at the Texas Institute for Computational Mechanics, Austin. Book Details. Publisher: McGraw Hill Education.
Language: English. ISBN-10:. ISBN-13: 9850 Download Link. Disclaimer: EasyEngineering does not own this book/materials, neither created nor scanned.
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This course is intended for all those who want to learn FEA from an application standpoint. Currently, many users of FEA have limited understanding of theoretical foundation of this powerful method. The consequence is that quite often they use commercial codes inaccurately, and do not realize that their results may be flawed. The course is intended to address this limitation by making the student aware of the underlying mathematics in easy to understand format.
The course is open to all engineering students who have at the minimum successfully completed two years of their B. Tech (or equivalent) degrees. The course is also open to all professionals in industry who wish to learn fundamentals of FEA in a semi-formal but structured setting, and plan to use this knowledge in their workplace. INTENDED AUDIENCE: UGs, PGs, professionals in industry who want to learn about basics of sound and acoustics CORE/ELECTIVE: Elective UG/PG: Both UG/PG PREREQUISITES: Must be enrolled into a B. Program or equivalent and should have completed second year of his 4-year program INDUSTRY SUPPORT: Automotive, NVH, Acoustics, Railways, Power Generation and all industry that has to address issus related to noise.
Nachiketa Tiwari is an Associate Professor of Mechanical Engineering at IIT Kanpur. He has a PhD in engineering mechanics from Virginia Tech. His doctoral thesis involved nonlinear analysis of composite structures through FE, analytical and experimental methods. Tiwari also has deep understanding of fundamentals of FEA as he has used several tools in industry for over a dozen years for producing world class products. His current areas of research interest are composite structures, noise, vibrations, and product design. He has established Dhwani, an Acoustics Lab at IITK, which is one of the best in the country.
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COURSE LAYOUT: Week 1: Intro & concepts Week 2: Mathematical concepts Week 3: 1-D BVP problems of 2nd order Week 4: Applications: heat transfer/solid mechanics Week 5: Beams Week 6: Errors & convergence Week 7: Time dependent problems Week 8: Eigen value problems and closure SUGGESTED READING MATERIALS:. An Introduction to the Finite Element Method,by J. CERTIFICATION EXAM:.
The exam is optional for a fee. Date and Time of Exams: April 28 (Saturday) and April 29 (Sunday): Morning session 9am to 12 noon;.
Exam for this course will be available in one session on both 28 and 29 April. Registration url: Announcements will be made when the registration form is open for registrations. The online registration form has to be filled and the certification exam fee needs to be paid. More details will be made available when the exam registration form is published.