last modified: 12/06/2002
This concerns a course [EvL1] |
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ECTS credit points: 3 |
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Faculty of Mechanical Engineering and Marine Technology |
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Section of Engineering Mechanics |
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Lecturer(s): Woerkom,
dr.ir. P.Th.L.M. van |
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Catalog data: Nonlinearities: engineering cases. Linearization; equivalent linearization; premature
linearization; descibing functions. Phase plane analysis. General perturbation theory: asymptotic expansions;
Poincaré; Lindstedt; two-variable; Duffing; Van der Pol. Stability theory: Routh-Hurwitz; Lyapunov; Mathieu; time delays; bifurcation; catastrophy. Nonlinear oscillations and chaos. |
Course year: |
MSc 1st year |
Semester: |
2A / 2B |
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Hours per week: |
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Other hours: |
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Assessment: |
Written report |
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Assessment period: |
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(see academic calendar) |
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Prerequisites (course codes): |
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Follow up (course codes): |
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Detailed description of topics: The course focuses on nonlinear behavior in
mechanical systems. Main line of presentation: possibilities and pitfalls of quick linearization;
phase plane geometrical analysis; general perturbation theory; stability
theory; chaos. Description of a selection of nonlinear phenomena
involving dry friction (description, utilization, compensation); rigid body angular
motion and control; galopping cables; ship roll, surge and sway in sea waves;
sound production (loudspeaker) and sound perception (human hearing); beam
buckling; metal cutting; PC printing; digital control; atomic force
microscope operating in tapping mode. |
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Course material: |
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References from literature:
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Remarks assessment, entry requirements, etc.: The course will be presented during alternate
years; please contact the teacher to assist you in planning. At the end of the course a take-home assignment will
be issued. It may be either theoretical in nature, or display a strong
numerical component. The assignment will be drafted in cooperation with the
individual students or with teams of students. |
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Learning goals: Provide insight in the fundamental aspects of
nonlinearities in mechanical systems. Review of some mathematical tools for
their analysis. Awareness of possible risks and benefits of nonlinearities in
real mechanical systems. |
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Computer use: |
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Laboratory project(s): |
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Design content: |
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[EvL1]Make choice: Course, Exercise, Practical,
Project, Assignment, Case study