COURS TURBOMACHINES HYDRAULIQUES PDF

Abstract, In this course, one acquires an understanding of the basic neutronics . Literature, P. HENRY: Turbomachines hydrauliques – Choix illustré de. 53 cours, corrigés d’examens et 13 livres pour les élèves ingénieurs de génie mécanique. 19, 9, Turbomachines et Machines hydrauliques, 1 cours. 10 janv. II/ Fonctionnement général des turbomachines ; paramètres et variables spécifiques Une pompe est destinée à fournir de l’énergie hydraulique à un fluide, sous forme cours des itérations sur la vitesse du son locale.

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Ingéniorat en mécanique

Tokamak and Stellarator 7 Waves in plasma 8 Wave-particle interactions 9 Heating and non inductive current drive by radio frequency waves 10 Heating and non inductive current drive by neutral particle beams 11 Material science and technology: The subject of cpurs master’s thesis, as well as the project plan and roadmap, are proposed by teh tutor and further elaborated with the student. Explain the principles of therapeutic radiation physics including X-rays, electron beam physics, radioactive sources, use of unsealed sources and Brachytherapy.

The behaviour of materials in nuclear reactors determines the reliability and safety of nuclear power plants NPPs. For each chapters the theoretical basis are first established and then practical solutions are discussed with the help of recent design examples. Students will be well acquainted with analytical and modeling methodologies for damage assessment and residual life determination and with the behavior of high burnup fuel.

Advanced analytical and modeling tools will be introduced for characterization and understanding of irradiation damage, turbomwchines, environment effects, etc. Materials for advanced future nuclear plants will be discussed.

Different means of control. Experimental methods for the control and analysis of nuclear components and materials in operating NPPs will be presented.

Catalog Record: Machines hydrauliques | Hathi Trust Digital Library

Only for Nuclear Enginering MSc. Conservation principles energy, mass, momentum. Legal framework, project management and operations methods and tools, cost estimation approaches and methods, nuclear calculations and on-site radiological characterization and inventorying, state-of-the-art technologies for decontamination and dismantling, safety considerations, state-of-the-art practice for radioactive waste treatment, packaging and transport, interface with radioactive waste management and disposal.

Tritium production 13 Licensing a fusion reactor: Tutors propose the subject of the project, elaborate the project plan, and define the roadmap together with their students, as well as monitor the overall execution. Physical basic understanding of severe accident phenomenology: The main objective of the week internship is to expose master’s students to the industrial work environment within the field of nuclear energy. Low and high Temperature superconductor – Properties of material under irradiation 12 Some nuclear aspects of a fusion reactor: Slides, videos and other documents are available on moodle http: We will examine key features and limitations of these machines as used in accelerator driven sciences like high energy physics, materials and life sciences.

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The course will additionally include student visits to relevant nuclear sites in Switzerland and Germany. Fernandez MoguelB.

Insights acquired from recent experimental programs into high burnup fuel behavior under hypothetical accident conditions RIA, LOCA will be presented. Aim of this course is to provide the students with an overview of the multidisciplinary issues that have to be addressed for the successful decommissioning of NPPs.

It covers the several steps of detection, yhdrauliques the detectors, instrumentations and measurements methods commonly used in the nuclear field. Describe how to use radiotherapy equipment both for tumour localisation, planning and treatment. The course will highlight the hydrauiques needs from different points of view.

An introductory course in the basic concepts of radiation detection and interactions and energy deposition by ionizing radiation in matter, radioisotope production and its applications in medicine, industry and research.

Students therefore have to enroll at EPFL. To acquire hands-on experience with the running of large computer codes in relation to the static analysis of nuclear reactor cores and the multi-physics simulation of nuclear power plant NPP dynamic behaviour.

Nuclear Safety 2nd sem. The system technology of the most important thermal and fast reactor types is introduced. During this period, students have the opportunity to be involved in on-going projects at the host institution. Quantum mechanics, electrodynamics and special relativity Recommended courses: Methods and Tools”, G. In this course, one acquires an understanding of the basic neutronics interactions occurring in a nuclear fission reactor and, as such, the conditions for establishing and controlling a nuclear chain reaction.

Explain the use of radiation in industrial and research applications.

Human visual characteristics and their quantification, Bayesian cost and Ideal model observer, Anthropomorphic model observers, Detection experiments rating, M-AFC, yes-no Physics of positron emission tomography PET Physics of resonance magnetic imaging. By the end of the course, the student must be able to: For more information about the curriculum and courses see: Present the basic and common notions needed for describing atomic, nuclear and elementary particle physics.

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Deep understanding of the processes associated with core degradation and fuel melting in case of sustained lack of Core Cooling Systems, potential threats to the containment integrity, release and transport of active and inactive materials, the function of the containment, countermeasures mitigating release of radioactive material into the environment accident management measures, back-fitting and extended designassessment of timing and amounts of released radioactive material source term.

Life extension and the understanding of fuel behavior under high burn-up conditions is of central importance for current-day NPPs.

151-2021-00L Hydraulic Turbomachines (EPFL)

This makes use of the technical and social skills acquired during the master’s programme. Link between medical diagnostic and statistical hypothesis testing, Sensitivity, specificity, prevalence, predictive values Physics of radioscopy Model observers in medical imaging: The thesis is aimed at enhancing the student’s capability to work independently toward the solution of a theoretical or applied problem.

The course deals with the important challenges for materials structural and fuel for current and advanced nuclear power plants.

The goal of the lecture is to present the principles of the energy conversion for conventional and renewable energy resources and to explain the most important parameters that define the energy conversion efficiency, resources implications and economics of the energy conversion technologies. Basic knowledge of electricity and magnetism, and of simple concepts of fluids. Explain the basic physics principles that underpin radiotherapy, e.

Nuclear and particle physics Important concepts to start the course: Explain the cour and practice of radiation protection, dose limits, screening and protection mechanisms.

No enrolment to this course at ETH Zurich. Overview, history and fundamentals Transverse particle dynamics linear and nonlinear Longitudinal particle dynamics Linear accelerators Circular accelerators Acceleration and RF-technology Beam diagnostics Accelerator magnets Injection and extraction hydrzuliques Synchrotron radiation.