Monday, April 23, 2012

Nuclear Energy in the 21st Century

Editor / Author : Ian Hore-Lacy
 
Publisher :
Academic Press; 1 edition (September 22, 2006)

ISBN :
978-0123736222

Number of Pages :  167
 
File Type : PDF




The onset of the 21st century has coincided with mounting scientific evidence of the severe environmental impact of global energy consumption. In response, governments and environmentalists on every continent have begun to re-evaluate the benefits of nuclear power as a clean, non-emitting energy resource. Today nuclear power plants operate in some 30 countries, and nuclear energy has become a safe and reliable source of one-sixth of the world's electricity. This base has the potential to be expanded widely as part of a worldwide clean-energy revolution. 

Nuclear Energy in the 21st Century is an authoritative resource for educators, students, policy-makers and interested lay-people. This balanced and accessible text provides:

* An inroad into nuclear science for the non-specialist
* A valuable account of many aspects of nuclear technology, including industry applications
* Answers to public concerns about safety, proliferation, and waste management
* Up-to-date data and references 

This edition comes with a Foreword by Dr. Patrick Moore, co-founder of Greenpeace, which attests to today's worldwide re-evaluation of nuclear power.

The World Nuclear University (WNU) is a global partnership of industry, inter-governmental, and academic institutions committed to enhancing education in nuclear science and technology. WNU partners include the International Atomic Energy Agency (IAEA), the World Association of Nuclear Operators (WANO), the Nuclear Energy Agency (NEA) of the OECD, and the World Nuclear Association (WNA). With a secretariat staffed by government-sponsored secondees, the London-based WNU Coordinating Centre fosters a diversity of collaborative projects to strengthen nuclear education and rebuild future leadership in nuclear science and technology.

· Global in perspective and rich in data
· Draws on the intellectual resources of the World Nuclear Association
· Includes Physics of uranium; uranium enrichment; waste management
· Provides technical perspective with an understanding of environmental issues



Nuclear Systems II - Elements of Thermal Hydraulic Design

Editor / Author : Neil E. Todreas and Mujid S. Kazimi
 
Publisher :
Taylor & Francis (September 1990)

ISBN :
978-1560320791

Number of Pages :  505
 
File Type : PDF





This book can serve as a textbook for two to three courses at the advanced undergraduate and the graduate student level. It is also suitable as a basis for continuing education of engineers in the nuclear power industry, who wish to expand their knowledge of the principles of thermal analysis of nuclear systems. The book, in fact, was an outgrowth of the course notes used for teaching several classes at MIT over a period of nearly 15 years.
 
The book is meant to cover more than thermal hydraulic design and analysis of the core of a nuclear reactor. Thus, in several parts and examples, other components of the nuclear power plant such as the pressurizer, the containment and the entire primary coolant system are addressed. In this respect the book reflects the importance of such considerations in thermal engineering of a modern nuclear power plant. The traditional concentration on the fuel elementdesign in earlier textbooks was appropriate when the fuel performance had a higher share of the cost of electricity than in modern plants. The cost of the nuclear electricity proved to be more influenced by the steam supply system and the containment building than previously anticipated.



Nuclear Systems I - Thermal Hydraulic Fundamentals

Editor / Author : Neil E. Todreas and Mujid S. Kazimi
 
Publisher :
Taylor & Francis; 2 edition (Dec 1 1989)

ISBN :
978-1560320517

Number of Pages :  720
 
File Type : PDF




Much material in this book originated from lectures developed at MIT by Professor Manson Benedict with Professor Thomas Pigford for a subject in Nuclear Reactor Engineering and by Professors Warren Rohsenow and Peter Griffith for a subject in Boiling Heat Transfer and Two-Phase Flow . We have had many years of pleasant association with these men as their students and colleagues and owe a great deal of gratitude to them for introducing us to the subject material . The development of the book has benefited from the discussion and comments provided by many of our colleagues and students . In particular Professor George Yadigaroglu participated in th; early stage of this work in defining the scope and depth of topics to be covered.

Most of the figures in this book were prepared by a number of students using a microcomputer under the able direction of Alex Sich . Many others have participated in the typing of the manuscript. We offer our warmest thanks to Gail Jacobson , Paula Cornelio and Elizabeth Parmelee for overseeing preparation of major portions of the finaL text.



Enhanced Oil Recovery

Editor / Author : F. John Fayers
 
Publisher : Elsevier Science (September , 1981)


ISBN : 0-444-42033-9

Number of Pages :  596
 
File Type : PDF



This residential symposium is the third in the series of symposia which have been held on the subject of enhanced oil recovery ir, the United Kingdom; the other two being held a t Britannic House of BP in London in May 1977, and at Heriot-Watt University i n Edinburgh in July 1978.

Since 1977, when the first symposium was held i n London, the annual production and the number of fields in operation in the UK sector of the North Sea has roughly doubled and it is perhaps righttore - it erate the remarks of the Chairman of the organising committee of the first meeting. He said that , "There i s an urgent need to decide which enhanced oil recovery techniques are suitable for use in the North Sea. Once this decision is made, the select ed R&D goals should be vigorously pursued, leading, hopefully, to the development of specific tailor-made techniques effective in the individual fields in the North Sea area".

Although these remarks are still valid today, in the inter - vening period throughout Europe significant progress has been made. W e have seen an increase in the number of pilot f ield experiments undertaken by the oil industry, an increase i n the research work carriedout at universities , research institutes and oil company laboratories. A number of Government programmes have been initiated or expanded. Against th s background of an increased R&D activity , some significant , albeittentative , steps in the application of enhanced o i l recovery offshore have been taken.



Fundamentals of Fractured Reservoir Engineering

Editor / Author : T.D.Van Golf-Racht
 
Publisher :
Elsevier Science Ltd (April 1982)

ISBN :
978-0444420466

Number of Pages :  728
 

File Type : PDF




The history of fractured reservoirs is probably as long as the history of petroleum itself. During the Los Angeles Panel Discussion on Fractured Reservoirs (March 1952) Levorsen mentioned that the notion “fractured porosity” was introduced only two years after Drake’s discovery in 186 l by the geologist E.B. Andrews who wrote that if fractures are numerous along the anticline axis it represents the primary cause of an accumulation, and also that a law of proportionality was observed between the oil produced and the amount of fissures. But it was only in the early nineteen fifties, with the important discoveries in the Spraberry trend of West Texas and giant fields in the Middle East that an increasing interest for this type of fields started. In continuation in the late fifties, but especially in the last two decades, various concepts have been developed in various areas such as geology, reservoir description, flow toward the well, reservoir mechanisms, etc. But the studies and papers published in the literature presented single problems in a limited area and unrelated to a global concept of fractured reservoirs. Therefore, in order to integrate the existent published material and my personal views on natural fractured reservoirs, I have tried to write a self-contained book where the reader can find the necessary tools for the evaluation of fractures by processing the observed data, examining the flow behaviour towards a well and analysing reservoir behaviour during a field’s entire history, through its specific production mechanisms.