Marine Nuclear Power Technology

Marine Nuclear Power Technology
Title Marine Nuclear Power Technology PDF eBook
Author Junchong Yu
Publisher Springer Nature
Pages 479
Release 2020-04-16
Genre Technology & Engineering
ISBN 9811528942

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This book introduces readers to basic approaches in and principles of marine nuclear power design, including overall reactor design, in-core design, coolant systems and devices, I&C system design, safety system design, and dynamic analysis assessment. It comprehensively reviews both the fundamentals of and latest trends in nuclear-powered devices, covering their entire lifespan, from design and testing to operation and decommissioning. Further, it explores in detail various real-world conditions in the marine context – such as insufficient space for equipment deployment and frequently changing operating conditions as well as swinging and tilting. Offering extensive information on the design and operation of marine nuclear power systems, the book is a valuable resource for researchers and professionals in the area of marine science and nuclear engineering, and graduate students intending to embark on a career in the field.

Marine Nuclear Power Technology

Marine Nuclear Power Technology
Title Marine Nuclear Power Technology PDF eBook
Author 于俊崇
Publisher
Pages 0
Release 2020
Genre Marine nuclear reactor plants
ISBN 9787313244536

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Rickover and the Nuclear Navy

Rickover and the Nuclear Navy
Title Rickover and the Nuclear Navy PDF eBook
Author Francis Duncan
Publisher US Naval Institute Press
Pages 432
Release 1990
Genre Biography & Autobiography
ISBN

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An official Atomic Energy Commission historian assigned to Admiral Rickover's office, Duncan draws on files, documents, and interviews to chronicle the introduction of nuclear powered ships into the US Navy. Covers the period from the mid-1950s to the early 1980s. Annotation copyrighted by Book News, Inc., Portland, OR

Technology for the United States Navy and Marine Corps, 2000-2035

Technology for the United States Navy and Marine Corps, 2000-2035
Title Technology for the United States Navy and Marine Corps, 2000-2035 PDF eBook
Author
Publisher National Academies
Pages 356
Release 1997
Genre History
ISBN

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The future national security environment will present the naval forces with operational challenges that can best be met through the development of military capabilities that effectively leverage rapidly advancing technologies in many areas. The panel envisions a world where the naval forces will perform missions in the future similar to those they have historically undertaken. These missions will continue to include sea control, deterrence, power projection, sea lift, and so on. The missions will be accomplished through the use of platforms (ships, submarines, aircraft, and spacecraft), weapons (guns, missiles, bombs, torpedoes, and information), manpower, materiel, tactics, and processes (acquisition, logistics, and so on.). Accordingly, the Panel on Technology attempted to identify those technologies that will be of greatest importance to the future operations of the naval forces and to project trends in their development out to the year 2035. The primary objective of the panel was to determine which are the most critical technologies for the Department of the Navy to pursue to ensure U.S. dominance in future naval operations and to determine the future trends in these technologies and their impact on Navy and Marine Corps superiority. A vision of future naval operations ensued from this effort. These technologies form the base from which products, platforms, weapons, and capabilities are built. By combining multiple technologies with their future attributes, new systems and subsystems can be envisioned. Technology for the United States Navy and Marine Corps, 2000-2035 Becoming a 21st-Century Force: Volume 2: Technology indentifies those technologies that are unique to the naval forces and whose development the Department of the Navy clearly must fund, as well as commercially dominated technologies that the panel believes the Navy and Marine Corps must learn to adapt as quickly as possible to naval applications. Since the development of many of the critical technologies is becoming global in nature, some consideration is given to foreign capabilities and trends as a way to assess potential adversaries' capabilities. Finally, the panel assessed the current state of the science and technology (S&T) establishment and processes within the Department of the Navy and makes recommendations that would improve the efficiency and effectiveness of this vital area. The panel's findings and recommendations are presented in this report.

The United States Naval Nuclear Propulsion Program

The United States Naval Nuclear Propulsion Program
Title The United States Naval Nuclear Propulsion Program PDF eBook
Author Department of the Navy and Department of Energy
Publisher CreateSpace
Pages 84
Release 2014-04-18
Genre History
ISBN 9781499180947

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A strong Navy is crucial to the security of the United States, a nation with worldwide interests which conducts the vast majority of its trade via transoceanic shipment. Navy warships are deployed around the world every hour of every day to provide a credible "forward presence," ready to respond on the scene wherever America's interests are threatened. Nuclear propulsion plays an essential role in this, providing the mobility, flexibility, and endurance that today's smaller Navy requires to meet a growing number of missions. About 45 percent of the Navy's major combatants are nuclear-powered: 11 aircraft carriers, 53 attack submarines, and 18 strategic submarines (the Nation's most survivable deterrent) - 4 of which were removed from strategic service and converted to a covert, high-volume, precision strike platform designated as SSGN. The mission of the Naval Nuclear Propulsion Program, also known as Naval Reactors, is to provide militarily effective nuclear propulsion plants and ensure their safe, reliable, and long-lived operation. This mission requires the combination of fully trained U.S. Navy men and women with ships that excel in endurance, stealth, speed, and independence from logistics supply chains. Presidential Executive Order 12344 and Public Laws 98-525 and 106-65 set forth the total responsibility of Naval Reactors for all aspects of the Navy's nuclear propulsion, including research, design, construction, testing, operation, maintenance, and ultimate disposition of naval nuclear propulsion plants. The Program's responsibility includes all related facilities, radiological controls, environmental safety, and health matters, as well as selection, training, and assignment of personnel. All of this work is accomplished by a lean network of dedicated research laboratories, nuclear-capable shipyards, equipment contractors and suppliers, and training facilities that are centrally controlled by a small headquarters staff. The Director, Naval Reactors, is Admiral Kirkland H. Donald; who also serves as a Deputy Administrator in the National Nuclear Security Administration. Naval Reactors maintains an outstanding record of over 145 million miles safely steamed on nuclear power. The Program currently operates 103 reactors and has accumulated over 6,300 reactor-years of operation. A leader in environmental protection, the Program has published annual environmental reports since the 1960s, showing that the Program has not had an adverse effect on human health or on the quality of the environment. Because of the Program's demonstrated reliability, U.S. nuclear-powered warships are welcomed in more than 150 ports of call in over 50 foreign countries and dependencies. Since USS NAUTILUS (SSN 571) first signaled "UNDERWAY ON NUCLEAR POWER" over 50 years ago in 1955, our nuclear-powered ships have demonstrated their superiority in defending the country-from the Cold War, to today's unconventional threats, to advances that will ensure the dominance of American seapower well into the future.

Desalination in Nuclear Power Plants

Desalination in Nuclear Power Plants
Title Desalination in Nuclear Power Plants PDF eBook
Author Gustavo Alonso
Publisher Woodhead Publishing
Pages 258
Release 2020-04-21
Genre Technology & Engineering
ISBN 0128200219

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Desalination in Nuclear Power Plants presents the latest research on a variety of nuclear desalination techniques for different nuclear reactor systems; it includes also several aspects regarding competitiveness, sustainability, safety, and licensing process. Authors Alonso, del Valle, and Ramirez explore the possibilities of the cogeneration of water and electricity using a nuclear reactor. This book consolidates the latest research to provide readers with a clear understanding of the advantages and disadvantages of the thermal, membrane, and hybrid desalination processes, along with a comprehensive methodology to guide the reader on how to perform levelized cost analyses for water and electricity. The conditions for the coupling of nuclear reactors and desalination plants are presented, and techniques to maximize water and energy production and to reduce their corresponding costs are provided. Mathematical modeling techniques for different components of the power plant are also included based on mass and energy state equations, as well as different steam currents alternatives for coupling along with a proposed method for their evaluation. Explains nuclear cogeneration in the context of multiobjective optimized methods and their application in the design of a cogeneration system of water and electricity Explores principles to optimize the cogeneration process from an economic and thermal perspective (exergoeconomic analysis) Includes competitiveness, sustainability, safety, and licensing of the nuclear desalination system

The United States Naval Nuclear Propulsion Program

The United States Naval Nuclear Propulsion Program
Title The United States Naval Nuclear Propulsion Program PDF eBook
Author Department of Department of the Navy
Publisher CreateSpace
Pages 86
Release 2014-12-08
Genre
ISBN 9781505420968

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A strong Navy is crucial to the security of the United States, a nation with worldwide interests which conducts the vast majority of its trade via transoceanic shipment. Navy warships are deployed around the world every hour of every day to provide a credible "forward presence," ready to respond on the scene wherever America's interests are threatened. Nuclear propulsion plays an essential role in this, providing the mobility, flexibility, and endurance that today's smaller Navy requires to meet a growing number of missions. About 45 percent of the Navy's major combatants are nuclear-powered: 11 aircraft carriers, 53 attack submarines, and 18 strategic submarines (the Nation's most survivable deterrent) - 4 of which were removed from strategic service and converted to a covert, high-volume, precision strike platform designated as SSGN. The mission of the Naval Nuclear Propulsion Program, also known as Naval Reactors, is to provide militarily effective nuclear propulsion plants and ensure their safe, reliable, and long-lived operation. This mission requires the combination of fully trained U.S. Navy men and women with ships that excel in endurance, stealth, speed, and independence from logistics supply chains. Presidential Executive Order 12344 and Public Laws 98-525 and 106-65 set forth the total responsibility of Naval Reactors for all aspects of the Navy's nuclear propulsion, including research, design, construction, testing, operation, maintenance, and ultimate disposition of naval nuclear propulsion plants. The Program's responsibility includes all related facilities, radiological controls, environmental safety, and health matters, as well as selection, training, and assignment of personnel. All of this work is accomplished by a lean network of dedicated research laboratories, nuclear-capable shipyards, equipment contractors and suppliers, and training facilities that are centrally controlled by a small headquarters staff. The Director, Naval Reactors, is Admiral Kirkland H. Donald; who also serves as a Deputy Administrator in the National Nuclear Security Administration. Naval Reactors maintains an outstanding record of over 145 million miles safely steamed on nuclear power. The Program currently operates 103 reactors and has accumulated over 6,300 reactor-years of operation. A leader in environmental protection, the Program has published annual environmental reports since the 1960s, showing that the Program has not had an adverse effect on human health or on the quality of the environment. Because of the Program's demonstrated reliability, U.S. nuclear-powered warships are welcomed in more than 150 ports of call in over 50 foreign countries and dependencies. Since USS NAUTILUS (SSN 571) first signaled "UNDERWAY ON NUCLEAR POWER" over 50 years ago in 1955, our nuclear-powered ships have demonstrated their superiority in defending the country-from the Cold War, to today's unconventional threats, to advances that will ensure the dominance of American seapower well into the future.