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Magnetohydrodynamic Electrical Power Generation

Magnetohydrodynamic Electrical Power Generation PDF Author: Hugo K. Messerle
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 224

Book Description
Magnetohydrodynamic Electrical Power Generation Hugo K. Messerle University of Sydney, Australia The global demand for energy continues to grow. Magnetohydrodynamic (MHD) conversion processes offer a highly efficient, clean and direct conversion of energy for power generation and propulsion. By converting the kinetic energy of a flowing fluid into electricity directly, MHD systems help address the problems of environmental pollution. At the same time MHD is particularly suitable for primary energy sources or fuels providing energy at temperatures extending far beyond those manageable by any conventional thermal conversion plant. It therefore offers a potentially more effective utilisation of fossil and nuclear fuels. The author covers all aspects of MHD power generation, including the design and operation of MHD conversion systems in practice. Features include: A comprehensive introduction to the principles behind the interaction of magnetic field and electric currents with electrically conducting fluids in the conversion of energy. Coverage of all aspects of generator configurations, as well as the disk generator, multi-phase converters, and propulsion systems. Study of the design for AC power generation, covering the control and power conditioning of the generator and the integration of such designs into existing power systems. Study of the use of MHD plant as part of a topping cycle combined with a steam and/or gas turbine or ternary cycle potentially leading to combined cycle efficiencies of up to 60%. Relevant worked examples in each chapter to assist the reader with self-study and the understanding of the topic. This text will appeal to advanced students in power engineering, physics and mechanics. Practising engineers and scientists is the field of power technology will find if an excellent practical reference and a basis for developing ideas on large scale MHD processes. Magnetohydrodynamic Electrical Power Generation forms a part of the Energy Engineering Learning Package. This innovative distance learning package has been established to train power engineers to meet today’s and tomorrow’s challenges in this exciting field. Organised by a team of distinguished, international academics, the modular course is aimed at advanced undergraduate and postgraduate students, as well as power engineers working in industry. World Solar Summit Process

Magnetohydrodynamic Electrical Power Generation

Magnetohydrodynamic Electrical Power Generation PDF Author: Hugo K. Messerle
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 224

Book Description
Magnetohydrodynamic Electrical Power Generation Hugo K. Messerle University of Sydney, Australia The global demand for energy continues to grow. Magnetohydrodynamic (MHD) conversion processes offer a highly efficient, clean and direct conversion of energy for power generation and propulsion. By converting the kinetic energy of a flowing fluid into electricity directly, MHD systems help address the problems of environmental pollution. At the same time MHD is particularly suitable for primary energy sources or fuels providing energy at temperatures extending far beyond those manageable by any conventional thermal conversion plant. It therefore offers a potentially more effective utilisation of fossil and nuclear fuels. The author covers all aspects of MHD power generation, including the design and operation of MHD conversion systems in practice. Features include: A comprehensive introduction to the principles behind the interaction of magnetic field and electric currents with electrically conducting fluids in the conversion of energy. Coverage of all aspects of generator configurations, as well as the disk generator, multi-phase converters, and propulsion systems. Study of the design for AC power generation, covering the control and power conditioning of the generator and the integration of such designs into existing power systems. Study of the use of MHD plant as part of a topping cycle combined with a steam and/or gas turbine or ternary cycle potentially leading to combined cycle efficiencies of up to 60%. Relevant worked examples in each chapter to assist the reader with self-study and the understanding of the topic. This text will appeal to advanced students in power engineering, physics and mechanics. Practising engineers and scientists is the field of power technology will find if an excellent practical reference and a basis for developing ideas on large scale MHD processes. Magnetohydrodynamic Electrical Power Generation forms a part of the Energy Engineering Learning Package. This innovative distance learning package has been established to train power engineers to meet today’s and tomorrow’s challenges in this exciting field. Organised by a team of distinguished, international academics, the modular course is aimed at advanced undergraduate and postgraduate students, as well as power engineers working in industry. World Solar Summit Process

The Liquid-metal Closed-cycle System of Magnetohydrodynamic Power Generation

The Liquid-metal Closed-cycle System of Magnetohydrodynamic Power Generation PDF Author: R. Y. Pei
Publisher:
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 80

Book Description


Magnetohydrodynamic Power Generation State-of-the-art (june 1968).

Magnetohydrodynamic Power Generation State-of-the-art (june 1968). PDF Author: Robert R. Barthelemy
Publisher:
ISBN:
Category :
Languages : en
Pages : 60

Book Description


Engineering Magnetohydrodynamics

Engineering Magnetohydrodynamics PDF Author: George W. Sutton
Publisher: Courier Dover Publications
ISBN: 0486450325
Category : Technology & Engineering
Languages : en
Pages : 571

Book Description
Suitable for advanced undergraduates and graduate students in engineering, this text introduces the concepts of plasma physics and magnetohydrodynamics from a physical viewpoint. The first section of the three-part treatment deals mainly with the properties of ionized gases in magnetic and electric fields, essentially following the microscopic viewpoint. An introduction surveys the concepts of ionized gases and plasmas, together with a variety of magnetohydrodynamic regimes. A review of electromagnetic field theory follows, including motion of an individual charged particle and derivations of drift motions and adiabatic invariants. Additional topics include kinetic theory, derivation of electrical conductivity, development of statistical mechanics, radiation from plasma, and plasma wave motion. Part II addresses the macroscopic motion of electrically conducting compressible fluids: magnetohydrodynamic approximations; description of macroscopic fluid motions; magnetohydrodynamic channel flow; methods of estimating channel-flow behavior; and treatment of magnetohydrodynamic boundary layers. Part III draws upon the material developed in previous sections to explore applications of magnetohydrodynamics. The text concludes with a series of problems that reinforce the teachings of all three parts.

Magnetohydrodynamic Energy Conversion

Magnetohydrodynamic Energy Conversion PDF Author: Richard J. Rosa
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 268

Book Description


Open-cycle Magnetohydrodynamic Electrical Power Generation

Open-cycle Magnetohydrodynamic Electrical Power Generation PDF Author:
Publisher:
ISBN:
Category : Electric power production
Languages : en
Pages : 744

Book Description


Magnetohydrodynamic Power Generation

Magnetohydrodynamic Power Generation PDF Author: James Lee Smith
Publisher:
ISBN:
Category : Magnetohydrodynamic generators
Languages : en
Pages : 40

Book Description


MHD high performance demonstration experiment

MHD high performance demonstration experiment PDF Author: Arnold Engineering Development Center
Publisher:
ISBN:
Category : Magnetohydrodynamic generators
Languages : en
Pages : 24

Book Description
The assembly of the magnet continued, the generator channel assembly was completed, and burner testing was resumed. Channel assembly operations were completed approximately two weeks ahead of schedule, even though the operation was approximately four weeks behind schedule at the start of the quarter. At the close of the quarter, seven of the nine upper coil pancakes had been installed and the eighth pancake was in position for final placement on the magnet. Burner testing was resumed; however, only one firing with the traversing pressure probe and electrode test assembly installed was performed.

MHD for Central Station Power Generation: a Plan for Action

MHD for Central Station Power Generation: a Plan for Action PDF Author: United States. Panel on Magnetohydrodynamics
Publisher:
ISBN:
Category : Electric power production
Languages : en
Pages : 56

Book Description


Direct Energy Conversion Technologies

Direct Energy Conversion Technologies PDF Author: R. K. Singal
Publisher: Mercury Learning and Information
ISBN: 168392455X
Category : Business & Economics
Languages : en
Pages : 272

Book Description
This book is designed for students and professionals who specialize in energy technologies and power plant engineering. It covers the mathematics and physics of both current conversion, such as solar cells, fuel cells, MHD, thermoelectric, and thermionic power generation, but also discusses emerging conversion technologies such as solar thermal, nuclear fusion, and hydrogen energy. Features: Covers both current conversion technologies as well as emerging technologies, such as solar thermal, nuclear fusion, and hydrogen energy Written in simple language, illustrated by diagrams, mathematical analysis, and numerical examples