The Meaning of Unity in Energy Conversion Systems

The Meaning of Unity in Energy Conversion Systems

Author: James F Murray III

Publisher:

Published: 2020-01-13

Total Pages: 136

ISBN-13: 9781650183657

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Initially, it had been assumed that a simple ratio computed by dividing the output power by the input power would provide a reliable yardstick for motor power efficiency. The basic idea was sound, for the closer the quotient came to unity, the nearer the motor efficiency would be to 100%. Hence began the so-called "Quest for Unity." However, early "electric engines" were very inefficient, probably delivering no more than 30% of the electrical input power to the output shaft. Therefore, it quickly became evident that not all the applied power was being converted to a mechanical output. Clearly, inefficiencies were involved, and they would have to be accounted for. Until this was complete, the simplified approach to establishing a Factor of Unity could not be realized. What is remarkable, in the history of motor development, is the curious degree of synergy that seems to have accompanied these early pioneering efforts. Between 1839 and 1850 the British Brew Master James Joule conducted an elegant series of experiments, in which he sought to unify electrical, chemical and thermal phenomena by demonstrating their inter-convertibility and their quantitative equivalence. The results of Joule's work were published in the Philosophical Transactions of the Royal Society, with a very impressive title: "On the Mechanical Equivalence of Heat." The contributions of Lord Kelvin must be considered next. His paper, "The Dynamical Equivalent of Heat," published in 1851, contended that energy could be "lost to man irrecoverably; but not lost to the material world". Thomson was thus the first person to understand that all energy changes involve energy dissipation, and losses. During the second half of the nineteenth century Kelvin and other scientists, including Clausius, Rankine, Maxwell and, Boltzmann, continued to develop these ideas. Their combined efforts resulted in the establishment of the Science of Thermodynamics; with Conservation of Energy as its First Law and the Dissipation of Energy as its Second Law. Accordingly, motor researchers were thus made aware of the extreme importance of classifying all known motor losses, and accounting for them with the same degree of accuracy as would be exhibited in the well-established science of corporate book-keeping. Ultimately, such practices would lead to the development of two principle kinds of Efficiency Measurements, both very valuable in all research pertaining to rotating components, but, particularly valuable for developing an understanding of over-unity as a scientific fact. Both efficiency concepts shall be fully explained in this presentation. Simply, this book serves as a definitive guide for those who wish to properly validate their input vs output claims.INCLUDES copies of one of the most significant and important patents in history and a related patent on Jim Murray's Dynaflux Alternator for convenience as it is used as an example in the calculations.


Energy Conversion Systems

Energy Conversion Systems

Author: Rakosh Das Begamudre

Publisher: New Age International

Published: 2007

Total Pages: 452

ISBN-13: 9788122412666

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Highlighting The Physics And Engineering Aspects Of Energy Conversion Systems, This Book Presents An Exhaustive Exposition Of Both Conventional And Non-Conventional Conversion Systems. * Presents A Detailed Description Of Nuclear And Photovoltaic Power. * Discusses Magneto Hydrodynamics, Wind And Ocean Energy, Fossil Fuel And Hydroectric Power. * Explains Coal Gasification, Biomass And Geothermal Energy, Thermo-Electric Converters And Fuel Cells. * Also Explains Problems Of Cogeneration And Energy Storage. * Highlights The Global Energy Scenario And The Environmental Effects Of Various Energy Conversion Systems. * Illustrative Examples Are Provided Throughout The Book. Review And Multiple Choice Questions And Practice Problems Are Provided At The End Each Chapter.With Its Comprehensive Coverage And Systematic Presentation, This Is An Essential Text For Electrical Engineering Students. Practising Engineers Would Also Find This Book Extremely Useful As A Reference Source.


Energy Conversion Engineering

Energy Conversion Engineering

Author: Ahmed F. Ghoniem

Publisher: Cambridge University Press

Published: 2021-11-11

Total Pages: 842

ISBN-13: 1108803997

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This unique textbook equips students with the theoretical and practical tools needed to model, design, and build efficient and clean low-carbon energy systems. Students are introduced to thermodynamics principles including chemical and electrochemical thermodynamics, moving onto applications in real-world energy systems, demonstrating the connection between fundamental concepts and theoretical analysis, modelling, application, and design. Topics gradually increase in complexity, nurturing student confidence as they build towards the use of advanced concepts and models for low to zero carbon energy conversion systems. The textbook covers conventional and emerging renewable energy conversion systems, including efficient fuel cells, carbon capture cycles, biomass utilisation, geothermal and solar thermal systems, hydrogen and low-carbon fuels. Featuring numerous worked examples, over 100 multi-component homework problems, and online instructor resources including lecture slides, solutions, and sample term projects, this textbook is the perfect teaching resource for an advanced undergraduate and graduate-level course in energy conversion engineering.


Modeling Power Electronics and Interfacing Energy Conversion Systems

Modeling Power Electronics and Interfacing Energy Conversion Systems

Author: M. Godoy Simoes

Publisher: John Wiley & Sons

Published: 2016-10-24

Total Pages: 341

ISBN-13: 1119058260

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Discusses the application of mathematical and engineering tools for modeling, simulation and control oriented for energy systems, power electronics and renewable energy This book builds on the background knowledge of electrical circuits, control of dc/dc converters and inverters, energy conversion and power electronics. The book shows readers how to apply computational methods for multi-domain simulation of energy systems and power electronics engineering problems. Each chapter has a brief introduction on the theoretical background, a description of the problems to be solved, and objectives to be achieved. Block diagrams, electrical circuits, mathematical analysis or computer code are covered. Each chapter concludes with discussions on what should be learned, suggestions for further studies and even some experimental work. Discusses the mathematical formulation of system equations for energy systems and power electronics aiming state-space and circuit oriented simulations Studies the interactions between MATLAB and Simulink models and functions with real-world implementation using microprocessors and microcontrollers Presents numerical integration techniques, transfer-function modeling, harmonic analysis and power quality performance assessment Examines existing software such as, MATLAB/Simulink, Power Systems Toolbox and PSIM to simulate power electronic circuits including the use of renewable energy sources such as wind and solar sources The simulation files are available for readers who register with the Google Group: power-electronics-interfacing-energy-conversion-systems@googlegroups.com. After your registration you will receive information in how to access the simulation files, the Google Group can also be used to communicate with other registered readers of this book.


Solar Energy Conversion And Photoenergy System - Volume I

Solar Energy Conversion And Photoenergy System - Volume I

Author: Julian Blanco

Publisher: EOLSS Publications

Published: 2009-10-29

Total Pages: 390

ISBN-13: 184826285X

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Solar Energy Conversion and Photoenergy Systems theme in two volumes is a component of Encyclopedia of Energy Sciences, Engineering and Technology Resources in the global Encyclopedia of Life Support Systems (EOLSS), which is an integrated compendium of twenty Encyclopedias. Any human activity needs energy and renewable energies are always present all over the world. Each location has its own specific renewable potential and it is our task to develop the suitable technologies to profit, at local level, this potential to not only produce the needed energy but also create economic activity and wealth. Solar energy, in particular, has the highest potential among all existing renewable energies and, in the context of the energy, water and climate change global problems mankind will face in the coming years, the substantial integration of solar energy technologies into our societies will an absolute needs in the short to medium term. The number of applications of solar energy is simply huge, covering a very wide range of human activities. Some of these applications are already technically and economically viable, being others still at research or demonstration level. In addition, it has been demonstrated the important benefits solar energy can provide to any area with medium-high solar irradiation level: from sustainability to energy independence, as well as economic development and knowledge creation. Due to this, solar energy development, from photovoltaic to solar thermal or power applications, has been very intense during the last years in all the, so called, “Sun Belt”. There is also the general consensus, at many countries, that we should accelerate the current solar energy pathway, increasing the research efforts to make economically feasible the applications that today are only technically feasible. This effort and the status of most of these applications have been discussed along this paper and within the articles of the topic. The Theme on Solar Energy Conversion and Photoenergy Systems with contributions from distinguished experts in the field, discusses solar energy related technologies and applications, some of which are already in commercial and practical applications and others are under research and testing level. The volumes provide an analysis and discussion about the reasons behind the current efforts of our society, considering both developed and developing countries, to accelerate the introduction of the huge solar energy potential into our normal daily lives. The two volumes also provide some basic information about the solar energy potential, history and the amazing trip of a photon from its creation in the Sun until its arrival to the Earth. These two volumes are aimed at the following five major target audiences: University and College Students Educators, Professional Practitioners, Research Personnel and Policy Analysts, Managers, and Decision Makers, NGOs and GOs.


Materials Science for Solar Energy Conversion Systems

Materials Science for Solar Energy Conversion Systems

Author: C.G. Granqvist

Publisher: Elsevier

Published: 2013-10-22

Total Pages: 212

ISBN-13: 1483287572

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Rapid advances in materials technology are creating many novel forms of coatings for energy efficient applications in solar energy. Insulating heat mirrors, selective absorbers, transparent insulation and fluorescent concentrators are already available commercially. Radiative cooling, electrochromic windows and polymeric light pipes hold promise for future development, while chemical and photochemical processes are being considered for energy storage. This book investigates new material advances as well as applications, costs, reliability and industrial production of existing materials. Each contribution represents a landmark in the field of materials science.