Computational Fluid Dynamics I ME 598     Engine Emissions     3 Credit Hours. CourseProfile (ATLAS), MECHENG 538. Effects of hardening and friction, temperature, strain rate and anisotropy. (3 credits) Instruction Mode: In-Person – Synchronous, Online – Synchronous Fundamental concepts and methods of fluid mechanics; inviscid flow and Bernoulli theorems; potential flow and its application; Navier-Stokes equations and constitutive theory; exact solutions of the Navier-Stokes equations; boundary layer theory; integral momentum methods; introduction to turbulence. Application to problems of bending, torsion, plane strain and plane stress, technological problems. Boundary value and eigenvalue problems are particularly stressed for linear and nonlinear elasticity, analytical dynamics, vibration of structures, wave propagation, fluid mechanics and other applied mechanic topics. Automotive and other applications considered. Prerequisite: MECHENG 311. The student must be admitted to the Ph.D. candidacy status. Perturbation Methods for Fluids Prerequisite: MECHENG 520. (YR). Typical power producing cycles and refrigerators. The students will gain knowledge of the following: fundamentals of powder and particulate materials (metals and ceramics), various metallic and non-metallic powder synthesis/production techniques, diverse techniques of powder characterization, and the principles and methods of homogenization, compaction, and sintering. The student will submit a final report. This course may be used as part of the IVHS certification program. Prerequisite: Math 216 or Physics 240. Green’s tensor; variational, Galerkin and Hamilton’s equations. Prerequisite: senior or graduate standing. Get Free Umich Mehcanical Engineering Course Location now and use Umich Mehcanical Engineering Course Location immediately to get % off or $ off or free shipping Introduction to Dynamics and Vibrations COURSE NUMBER: ME 482 : COURSE TITLE: ... BULLETIN DESCRIPTION: Introduction of advancements in machining. (YR). Prerequisite: MECHENG 360. Atomistic Computer Modeling of Materials Restriction(s): Cannot enroll if Level is Can enroll if Major is , Mechanical Engineering-NCFD, Mechanical Engineering, ME 514     Advanced Mechanics of Materials     3 Credit Hours. The ME Core courses consist of five categories: Design and Manufacturing, Mechanics and Materials, Dynamics and Controls, Thermal Sciences, and Laboratories and Technical Communication. Design for economical production, Taguchi methods, design for assembly; case studies. Evaluation of strength under steady and fatigue loadings. CourseProfile (ATLAS), MECHENG 574. Basic vehicle dynamics in the performance and handling modes are discussed. (3 credits) Review of energy methods, Betti’s reciprocal theorem; elastic, thermoelastic and elastoplastic analysis of axisymmetric thick cylinders and rotating discs; bending of rectangular and circular plates, including asymmetric problems; beams on elastic foundations; axisymmetric bending of cylindrical shells; torsion of prismatic bars. and Comp. CourseProfile (ATLAS), MECHENG 559 (MFG 559). Contact Mechanics (F,W,S), Restriction(s): Can enroll if Level is or DoctorateCan enroll if Major is, ME 980     Pre-Cand Dissertation Research     1 to 9 Credit Hours, Full Title: Pre-Candidate Dissertation Research Mathematical Methods in Mechanical Engineering Accounting (ACC) African & African- Amer Studies (AAAS) Anthropology (ANTH) Arab American Studies (AAST) Art History (ARTH) Automotive Engineering (AENG) Automotive Systems & Mobility (ASM) Automotive Systems Engineering (ASE) Bioengineering (BENG) Biological Science (BIOL) Business Administration (BA) Business Economics (BE) Kinetic and thermal scales and spectra. Instructor: Professor Euisik Yoon. Prerequisite: permission of instructor. Effects of damping. Prerequisite: MECHENG 335. CourseProfile (ATLAS), MECHENG 450. Axisymmetric torsion. A comprehensive treatment of the theory of the mechanics of deformable media. Rotational flow; Stability, Kelvin-Helmholtz and Rayleigh-Taylor instabilities. CourseProfile (ATLAS), MECHENG 555 (MFG 555). FEA in nonlinear problems; material and geometrical nonlinearities, total and updated Lagrangian formulations, solution techniques. CourseProfile (ATLAS), MECHENG 619. Instruction Mode: Hybrid, Online – Synchronous Principles of machine and mechatronic design and manufacturing. Prerequisite: MECHENG 360; preceded or accompanied by MECHENG 461. In addition to measurement of mechanical properties, resistance to heat, wear, and corrosion is discussed. Viscously damped systems. Vibration of multi-degree-of-freedom systems. (3 credits) Students must satisfactorily complete 6 credit hours in ME 699, but these hours may be spread over more than one term. CourseProfile (ATLAS), MECHENG 457. Robot Kinematics and Dynamics CourseProfile (ATLAS), MECHENG 560 (MFG 562). (YR). (YR). Energy and power densities previously unattainable in environmentally-friendly energy technologies have been achieved through use of novel materials. CourseProfile (ATLAS), MECHENG 631. CourseProfile (ATLAS), MECHENG 527. Mechanisms Design CourseProfile (ATLAS), MECHENG 516. A report and an oral presentation are required. Minimum weight design. Analytical synthesis of programmable and compliant mechanisms. (YR). Student(s) work under the direction of Mechanical Engineering faculty. Dynamics of thermal instrumentation and heat exchangers. Estimation and prediction methods for vector stochastic signals and systems. Prerequisite: MECHENG 424, (BIOMEDE 424). This course covers fundamental thermo-fluid principles and advanced topics in thermal management of conventional and electric drive vehicles (EDVs). Student must complete a dissertation and defend his/her thesis in front of a committee of at least 2 faculty members. Practical application of solid/structural mechanics is considered to design automotive bodies for global bending, torsion, vibration, crashworthiness, topology, material selection, packaging and manufacturing constraints. Prerequisite: MECHENG 320. Overview of tissue adaptation and the interaction between tissue mechanics and physiology. (YR). Solution methods for model equations and the Euler and the Navier-Stokes equations. (AY). Instruction Mode: Hybrid – Synchronous, Online – Synchronous Feedback control design and analysis for linear dynamic systems with emphasis on mechanical engineering applications; transient and frequency response; stability; system performance; control modes; state space techniques; digital control systems. Application of course techniques to engine research projects. ME 791     Adv Guided Research     1 to 6 Credit Hours, Independent study and research work on the material related to the doctoral research project under the guidance of the faculty advisor. Fundamentals of turbulent flows; the basic equations and the characteristic scales, statistical description of turbulence. Machining Dynamics and Mechanics (MFG 454) or MECHENG 501. CourseProfile (ATLAS), MECHENG 617. (YR). Minimum grade of “C” required for enforced prerequisites. Assembly sequence. Four credit-hour election requires prototyping of project. Design and operating characteristics of different types of engines. Minimum grade of “C” required for enforced prerequisites. Prerequisite: EECS 562 or MECHENG 548. Dissertation/Pre-Candidate (3 credits) Prerequisite: MECHENG 320. advised Prerequisite: MECHENG 540, (AEROSP 540) or MECHENG 543, or equivalent. Graded S-U. Energy Generation and Storage Using Modern Materials Type synthesis — creative design of mechanisms; graph theory. (YR). Introduction to linear feedback control techniques. Viscous flow fundamentals; vorticity dynamics; solution of the Navier-Stokes equations in their approximate forms; thin shear layers and free surface flows; hydrodynamic stability and transition to turbulence; fundamental concepts of turbulence; the turbulent boundary layer; introduction to turbulence modeling. Smart Materials and Structures CourseProfile (ATLAS), MECHENG 566 (AUTO 566). Design and Manufacturing III (Students should work on project approximately 10 hours/week for 3 credits. Advised Co-requisite: MECHENG 461 or equivalent. Instruction Mode: Hybrid – Synchronous, Online – Synchronous A mechanical engineering design project by which the student is exposed to the design process from concept through analysis to layout and report. Graduate standing or special permission. (3 credits) Theoretical principles and practical techniques for controlling mechatronic systems are taught in the context of advanced manufacturing applications. CourseProfile (ATLAS), MECHENG 661. Graduate standing or permission of instructor. (YR). Graduate standing or special permission. CourseProfile (ATLAS), MECHENG 571 (ESENG 505). (3 credits) Prerequisite: MECHENG 311. Student(s) work under the direction of mechanical engineering faculty. Introduction to Solid Mechanics Minimum grade of “C” required for enforced prerequisites. Computer graphics; transformations; clipping and windowing; graphics systems; data structures; command languages; display processors. (YR). Computer projects and homework. CourseProfile (ATLAS), MECHENG 995. (YR). ME 567     Reliability Consid in Design     3 Credit Hours. Class schedules and … The course is to establish a working familiarity with the key engineering elements in the design and control of electro-mechanical systems in general and automotive systems in particular. CourseProfile (ATLAS), MECHENG 513 (Auto 513, MFG 513). (3 credits) Geometric Dimensioning and Tolerancing. The courses offered by the Mechanical Engineering department can be found in three places: (1) the Rackham Graduate School website, (2) the College of Engineering website, and (3) the ME Department website. (3 credits) Lagrange's equation of motion will be introduced and utilized in the analysis of multiple-mass systems. Instruction Mode: Online – Synchronous Energy formulation for nonconservative gyroscopic systems. An introduction to the theory of hydrodynamic stability with applications to stability of thermal flows, rotating and curved flows, wallbounded and free shear flows. The student will submit a report on the project and give an oral presentation to a panel of faculty members at the close of the term. (MacroSE 517) Mechanics of Polymers I (3 credits) Survey of methods for solving hyperbolic, elliptic, and parabolic problems. Review of the fundamental concepts and current work in nonlinear theory of hydrodynamic stability. Introduction to analysis of environmental impact of materials selection. (3 credits) Laser Materials Processing Advanced treatment of dynamic structural theories. ME 538     Vehicle Thermal Management     3 Credit Hours. Environmental effects on mechanical behavior are also included. LSA course guide > Additional information. The nature of solid surfaces, contact between solid surfaces, rolling friction, sliding friction and surface heating due to sliding; wear and other types of surface attrition are considered with reference to practical combinations of sliding materials, effect of absorbed gases, surface contaminants and other lubricants on friction, adhesion and wear; tire and brake performance. Flow prediction. (3 credits) ME 552     Sustainable Energy Systems     3 Credit Hours. Dissertation work by doctoral student not yet admitted to status as candidate. Machining dynamics. Power Electronics – EECS 418. Project work. Elements of quantum mechanics, statistical mechanics and kinetic theory, as applied to engineering thermodynamics. The defense of the dissertation, that is, the final oral examination, must be held under a full-term candidacy enrollment. Intermediate Dynamics CourseProfile (ATLAS), MECHENG 585 (MFG 585). Prerequisite: MECHENG 350. COURSE NUMBER: ME 452 : COURSE TITLE: ... BULLETIN DESCRIPTION: Process, tools, and methods for enhancing the ease of manufacturing and assembly for product design. Fundamentals of plasticity; stress-strain relations, yield criteria and the general behavior of metals and nonmetals beyond proportional limit in the light of experimental evidence. Minimum Grade of “C-” required for enforced prerequisite. Taguchi methods. Manufacturing System Design All of these profile links are PDF file downloads. Fundamentals of acoustical waves, sound propagation and intensity, instruments for vibration and noise, HVAC system noise, automobile and aircraft noise, noise control techniques. Prerequisite: MECHENG 240. Periodic convection. Prerequisite: MECHENG 432 or equivalent. Advanced Vibrations of Structures Use of FE codes. Thermoelasticity. The mathematical tools required to describe spatial motion of a rigid body will be presented in full. Introduction to structural-acoustic coupling. Specific topics include automotive structures, suspension steering, brakes and driveline. Emphasis on the interaction between proper modeling and computation. Kinematics of motion generalized coordinates and speeds, analytical and computational determination of inertia properties, generalized forces, Gibb’s function, Routhian, Kanes’s equations, Hamilton’s principle, Lagrange’s equations holonomic and nonholonomic constraints, constraint processing, computational simulation. (3 credits) The topics include: principles of energy conservation, heat transfer, and fluid mechanics; vehicle thermal management system and components; electrification of vehicle thermal management system; EDV thermal management; battery thermal management in EDVs; and waste energy recovery. CourseProfile (ATLAS), MECHENG 311. Formulation of discrete boundary conditions. Prerequisite: MECHENG 320 or equivalent background in fluid mechanics and heat transfer. Independent Study of specified material in an area of Mechanical Engineering under the guidance of a member of the graduate faculty. Undamped system response. Advanced Fluid Mechanics I 561 equivalent. ME 576     Battery Sys Modeling & Ctrl     3 Credit Hours. Macromolecular Science and Engineering Courses; Contacts; Robotics Program. Analysis, synthesis, and optimization of linear, multilinear and nonlinear mechanical systems with the electronic analog computer. Prerequisite: MECHENG 535. Analysis of stress and strain, stress-strain relations, and the general equations of elasticity. Prerequisite: MECHENG 211, MECHENG 240, Math 216. (3 credits) Applications to computational fluid mechanics. Introduction to control of systems with undetermined or time varying parameters. Clapeyron relation, equation of state, thermodynamics of chemical reactions, availability. CourseProfile (ATLAS), MECHENG 568. CourseProfile (ATLAS), MECHENG 511. Flame instabilities and flame stretch; turbulent combustion. (3 credits) (4 credits) Prerequisite: MECHENG 211, MECHENG 240, MECHENG 250. Parallel and nearly parallel laminar (boundary layer) flows. Teams will use collaboration technology tools extensively. Instruction Mode: Online – Asynchronous Emphasis is on body concept for design using first order modeling of thin walled structural elements. Prerequisite: MECHENG 235. Entrepreneurship Courses; Contacts; Course Guides. Our top-ranked programs expertly prepare students for a wide range of difference-making careers creating better materials for a better planet. CourseProfile (ATLAS), MECHENG 476 (BIOMEDE 476). ME 591     Degradation of Materials     3 Credit Hours. (3 credits) Prerequisite: AEROSP 325 or preceded or accompanied by MECHENG 520. CourseProfile (ATLAS), MECHENG 390. CourseProfile (ATLAS), MECHENG 305. Full Course Title: Modeling of Engineering Materials This course will present the mathematical models and constitutive behavior of engineering materials subjected to mechanical and non-mechanical loads. Instruction Mode: Online – Synchronous Mechanical behavior and environmental degradation of polymeric-, metal- and ceramic-matrix composites; manufacturability of advanced engineering materials; use of composite materials in novel engineering designs. Theories based on crystal slip; variational theorems; range of validity of total deformation theories. Prerequisite: MECHENG 336, preceded or accompanied by MECHENG 320. CourseProfile (ATLAS), MECHENG 489. Strength of Materials Computer methods will be covered. Kinematical and dynamical equation formulation for rigid and flexible mechanical multi-body systems undergoing large overall motion and small elastic deformation. Pre: 2124, (MATH 2214 or MATH 2214H). Chaotic vortex motions. (3 credits) At least 24 credit-hours must be in courses 500-level or above. (3 credits) (3 credits) Two hour lecture and one hour lab. Laminar and turbulent flames. ME 699     Master's Thesis     1 to 6 Credit Hours. ME 543     Vehicle Dynamics     3 Credit Hours. (3 credits) (YR). CourseProfile (ATLAS), MECHENG 452 (MFG 452). Use of Materials and their Selection in Design Instruction Mode: In-Person – Synchronous, Online – Synchronous Advanced topics in conduction and convection including the presentation of several solution methods (semi-quantitative analysis, finite difference methods, superposition, separation of variables) and analysis of multi-mode heat transfer systems. (3 credits) A semester team-based design project is required. Energy principles, higher and lower pair joint parameterizations, space and dense equation formulation and solution techniques, numerical integration, generalized impulse and momentum, collisions and computational elastodynamics. Homogenization theory is used for multiple scale modeling. Prerequisite: candidate status in the mechanical sciences. CourseProfile (ATLAS), MECHENG 648. Prerequisite: MECHENG 520 or NAVARCH 520 or equivalent. Prerequisite: Chem 130 & 125 or Chem 210 & 211, and (Math 116 or Math 121 or Math 156.) Sci. 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