Rabu, 13 Juni 2012

[Z333.Ebook] Fee Download Energy Systems Engineering: Evaluation and Implementation, Second Edition, by Francis Vanek, Louis Albright, Largus Angenent

Fee Download Energy Systems Engineering: Evaluation and Implementation, Second Edition, by Francis Vanek, Louis Albright, Largus Angenent

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Energy Systems Engineering: Evaluation and Implementation, Second Edition, by Francis Vanek, Louis Albright, Largus Angenent

Energy Systems Engineering: Evaluation and Implementation, Second Edition, by Francis Vanek, Louis Albright, Largus Angenent



Energy Systems Engineering: Evaluation and Implementation, Second Edition, by Francis Vanek, Louis Albright, Largus Angenent

Fee Download Energy Systems Engineering: Evaluation and Implementation, Second Edition, by Francis Vanek, Louis Albright, Largus Angenent

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Energy Systems Engineering: Evaluation and Implementation, Second Edition, by Francis Vanek, Louis Albright, Largus Angenent

The defining guide to energy systems engineering--updated for the latest technologies

"Broad in scope, with focused instructional detail, this text offers a uniquely excellent, student-accessible educational resource for integrating thermodynamic, alternative, and renewable energy conversion processes." -- Professor Randy L. Vander Wal, Department of Materials Science and Engineering, Penn State University

"A carefully written book, providing good breadth as well as depth on major conventional and sustainable energy systems." -- Professor David Dillard, Department of Engineering Science & Mechanics, Virginia Tech

Fully revised throughout, Energy Systems Engineering, Second Edition discusses fossil, nuclear, and renewable energy sources, emphasizing a technology-neutral, portfolio approach to energy systems options. The book covers major energy technologies, describing how they work, how they are quantitatively evaluated, their cost, and their benefit or impact on the natural environment.

Evaluating project scope, cost, energy consumption, and technical efficiency is clearly addressed. Example problems help you to quantify the performance of each technology and better assess its potential. Hundreds of illustrations and end-of-chapter exercises aid in your understanding of the concepts presented in this practical guide.

Coverage includes:

  • Systems and economic tools for energy systems
  • Climate change and climate modeling
  • Fossil fuel resources
  • Stationary combustion systems
  • Carbon sequestration
  • Nuclear energy systems
  • Solar resource evaluation
  • Solar photovoltaic technologies
  • Active and passive solar thermal systems
  • Wind energy systems
  • New chapter on energy from biological sources
  • Transportation energy technologies
  • Systems perspective on transportation engineering

  • Sales Rank: #144859 in Books
  • Brand: Brand: McGraw-Hill
  • Published on: 2012-04-04
  • Original language: English
  • Dimensions: 9.50" h x 1.50" w x 7.50" l, 2.80 pounds
  • Binding: Hardcover
  • 672 pages
Features
  • Used Book in Good Condition

Most helpful customer reviews

8 of 8 people found the following review helpful.
Thorough exploration of current energy technology
By Katie H.
I am a physics instructor. While I have not used this textbook in a class, I have taught an introductory course "Physics of Energy Production" and reviewed this book as part of that project.

Subject matter: This is a textbook for engineering students. It covers energy technology: cost, operation and evaluation. There are 17 chapters, covering all areas of practical energy use, including modern topics such as climate change, solar, wind, geothermal, bioenergy and CO2 emissions.

Level: Though there is some review, this is not an introductory textbook. A background in introductory physics (mechanics and thermodynamics) and other basic science and algebraic math is assumed. However, energy technologies are covered assuming no prior knowledge.

Readability/appearance: The book is easy to follow and provides context. It contains well-labeled simple plots, tables, equations and plenty of numerical examples. It has an attractive colorful cover. All photographs in the text are in black and white.

Homework problems: There is a brief summary at the end of each of the 17 chapters, as well as a list of resources and approximately ten reasonable homework problems. Some exercises encourage students to use the Internet. SI units are used. Online resources and additional problems are available.

Course structure: This textbook is a current and thorough exploration of energy technology. It would be appropriate for upper undergraduate engineering students or engineering professionals wanting to remain current in their field. A one-semester course could probably cover about ten of the seventeen chapters, saving some of the special topics for student research/presentation projects at the end of the course. Be sure to include the last chapter, Chapter 17; it provides closure and an optimistic and strategic look toward the future, an important part of any course for an upcoming engineer.

4 of 4 people found the following review helpful.
Wide-ranging introduction to becoming an energy systems engineer
By S. Reeves
This textbook is aimed squarely at the engineering student or professional engineer.
It reflects the current state of analysis of energy systems; focusing on existing technologies, it is not a preparation for inventors. It could be considered a beginning of a study on macro-scale modeling of a global energy system, and it will prepare professionals to make the best of state-of-the-art technologies.
The contents include diverse topical units that engineers are expected to understand, like economic tools for energy systems, climate science, and calculus of turbine blade design.
Life cycle analysis of various systems is clearly important to the authors. I might say the authors are relatively sanguine about the economic viability of growing technologies; to instructors bent on leaving conclusions to the individual, some sections might seem to some like indoctrination into the collective, current feeling of future-thinking engineers, be they thoroughly grounded in reality.
The writing includes practical wisdom from experience with systems, for example in the discussion on page 341 on solar hot water systems. Experimental examples include not only results but useful notes on methodology.
The language is clear but impersonal; I haven't found any errors in grammar or content. I prefer to teach with more engaging dialog--I would intersperse exercises with the reading to help break the third-person monotony. Like most engineering courses, the book requires facility with multi-variable analysis, multi-step problems, different systems of units, and physical thinking. Many passages and exercises require understandings explained in previous chapters. However, I would consider teaching with some of the global-systems topics after one or two of the technology-specific chapters in the middle of the book. I think it's trite for textbooks to include a tiny section on pre-industrial technology necessarily at the beginning of every book, but at least these authors use the history to point to the incredible amount of energy we've only recently tapped.
I've run a charity for energy educators for eight years, during which I've met thousands of energy instructors, exchanging serious consultation on curriculum with many of them; I can say that this text represents most of the best content.

1 of 1 people found the following review helpful.
Great Book for Introductory Course
By m2u
This is a wonderful book for an introductory energy course for engineering, students, or students with some technical background. I found the breadth of topics to be especially suited for helping students understand the role of energy in our current lives and the potential implications of a future with different types, and amounts, of energy resources available. The book's approach, starting with some background material and "tools" that will enable students to analyze energy systems from a technical perspective (systems analysis; economics) and then covering both stationary and transportation-related energy systems, makes a lot of sense for engineering students from a variety of backgrounds and disciplines. I especially like the chapters on transportation energy technologies, the presentation of the "well to wheel" analysis, and the chapter that applies a systems approach to analyzing transportation energy technologies. Providing students with the tools to analyze choices from a broad, systems perspective will assist them not only in their technical careers but also on a daily basis as they make energy-related choices in their personal lives.

See all 15 customer reviews...

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