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Saturday, August 8, 2020 | History

3 edition of Advanced reactor technologies found in the catalog.

Advanced reactor technologies

United States. Congress. House. Committee on Energy and Commerce. Subcommittee on Energy and Power.

Advanced reactor technologies

hearing before the Subcommittee on Energy and Power of the Committee on Energy and Commerce, House of Representatives, One Hundred First Congress, first session, March 15, 1989.

by United States. Congress. House. Committee on Energy and Commerce. Subcommittee on Energy and Power.

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  • 35 Currently reading

Published by U.S. G.P.O., For sale by the Supt. of Docs., Congressional Sales Office, U.S. G.P.O. in Washington .
Written in English

    Places:
  • United States
    • Subjects:
    • Nuclear reactors -- United States -- Technological innovations,
    • Nuclear reactors -- United States -- Design and construction,
    • Nuclear reactors -- United States -- Safety measures

    • Classifications
      LC ClassificationsKF27 .E5524 1989c
      The Physical Object
      Paginationiii, 138 p. ;
      Number of Pages138
      ID Numbers
      Open LibraryOL1812766M
      LC Control Number89602356

      he Advanced Reactor Concepts (ARC) program, an expanded version of the Generation IV research, development and demonstration (RD&D) program, sponsors research, development and deployment activities leading to further safety, technical, economical, and environmental advancements of innovative nuclear energy technologies. The ARIS database includes technical information about Advanced Reactor Designs that is provided by the responsible design organizations and/or reactor plant vendors. According to the definitions established by the IAEA, an advanced reactor design consists of .

      A nuclear reactor, formerly known as an atomic pile, is a device used to initiate and control a self-sustained nuclear chain r reactors are used at nuclear power plants for electricity generation and in nuclear marine from nuclear fission is passed to a working fluid (water or gas), which in turn runs through steam turbines. The IAEA's Advanced Reactors Information System (ARIS) is a web-accessible database that provides Members States with balanced, comprehensive and up-to-date information about advanced nuclear plant designs and concepts. Member States, both those considering their first nuclear power plant and those with an existing nuclear power programme, are.

      The advanced heavy-water reactor (AHWR) is the latest Indian design for a next-generation nuclear reactor that burns thorium in its fuel core. It is slated to form the third stage in India's three-stage fuel-cycle plan. This phase of the fuel cycle plan is supposed to be built starting with a MWe prototype in As of construction has not started and a firm date has not be set. This book presents a comprehensive review of studies in nuclear reactors technology from authors across the globe. Topics discussed in this compilation include: thermal hydraulic investigation of TRIGA type research reactor, materials testing reactor and high temperature gas-cooled reactor; the use of radiogenic lead recovered from ores as a coolant for fast reactors; decay heat in reactors.


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Advanced reactor technologies by United States. Congress. House. Committee on Energy and Commerce. Subcommittee on Energy and Power. Download PDF EPUB FB2

The Advanced Reactor Technologies (ART) Program was formed in fiscal year as a consolidation of three former Department of Energy - Nuclear Energy (DOE-NE) programs: Next Generation Nuclear Plant, Small Modular Reactors, and Advanced Reactor Concepts.

The ART Program aims to develop new advanced reactor designs and technology to advance. The Office of Advanced Reactor Technologies (ART) sponsors research, development and deployment (RD&D) activities through its Next Generation Nuclear Plant (NGNP), Advanced Reactor Concepts (ARC), and Advanced Small Modular Reactor (aSMR) programs to promote safety, technical, economical, and environmental advancements of innovative Generation IV nuclear energy technologies.

technologies in the development of advanced reactor lines and addressing their key challenges in near term deployment. By establishing international networks and ensuring coordination of Member State experts, publications on international recommendations and guidance focusing on specific needs of newcomer countries are issued.

The narratives describing the various technologies are based upon the oral and written record submitted to the Committee. These summaries represent a conscientious effort to accurately depict the nature, attributes, and distinguishing features of each technology.

The Committee does not represent this Chapter as a comprehensive treatment of each advanced nuclear reactor technology or as an. Advances in Light Water Reactor Technologies - Kindle edition by Saito, Takehiko, Yamashita, Junichi, Ishiwatari, Yuki, Oka, Yoshiaki. Download it once and read it on your Kindle device, PC, phones or tablets.

Use features like bookmarks, note taking and highlighting while reading Advances in Light Water Reactor cturer: Springer. Advances of Computational Fluid Dynamics in Nuclear Reactor Design and Safety Assessment presents the latest computational fluid dynamic technologies.

It includes an evaluation of safety systems for reactors using CFD and their design, the modeling of Severe Accident Phenomena Using CFD, Model Development for Two-phase Flows, and Applications. Energy: Nuclear: Advanced Reactor Concepts and Fuel Cycle Technologies, Energy Policy ACT (P.L.

), Light Water Reac [Grossenbacher, John, Behrens, Carl E., Thecapitol Net] on *FREE* shipping on qualifying offers. Energy: Nuclear: Advanced Reactor Concepts and Fuel Cycle Technologies, Energy Policy ACT (P.L. )Format: Paperback. Advanced Reactor Content of Application Project. The purpose of the advanced reactor content of application project (ARCAP) is to develop technology-inclusive, risk-informed and performance-based application guidance.

The ARCAP is broader and encompasses the industry-led technology-inclusive content of application project (TI-CAP).

(1) T ECHNICAL EXPERTISE.—Ensuring that the Department has sufficient technical expertise to support the civilian nuclear industry’s timely research, development, demonstration, and commercial application of safe, innovative advanced reactor technology and the NRC has sufficient technical expertise to support the evaluation of applications for licenses, permits, and design.

Advanced Reactor Technologies. As a result of ARC research, nuclear energy will continue to provide clean, affordable, and secure energy while supporting the administration’s greenhouse gas reduction goals by introducing advanced designs into new energy and industrial markets. DOE will pursue RD&D on both advanced thermal and fast neutron.

After the Fukushima accident, China suspended the approval process of nuclear power plants and learned lessons from the accident to develop the more advanced and safer reactor technologies. Three years later, China began to restart nuclear development under the national policy of “steady development with safety” because of the pressures of.

The following information provides a quantitative context to the evolution from the light water reactor to the small modular reactor and advanced reactor.

Please note that most values for the small modular reactors and advanced reactors are estimates. About Third Way. Third Way is a national think tank that champions modern center-left ideas. The Advanced Reactor Concepts program, a subprogram of DOE’s Reactor Concepts program, researches nuclear reactors cooled by salts, liquid metals, or gas.

26 This program has received only $20 to $30 million per year to date. 27 Meanwhile, DOE has already identified priority technologies for R&D, 28 but bringing these technologies to market.

Advanced Nuclear Technologies (otherwise known as small nuclear or small reactor technologies) encompass a wide range of nuclear reactor technologies under development. Status of Advanced Nuclear Reactor Technologies Written Testimony Chairman Murkowski, Ranking Member Cantwell, and distinguished members of this Committee, I want to thank you for holding this hearing and for giving me the opportunity to testify.

I am honored to be here today. I am Jacob DeWitte, co-founder and CEO of Oklo Inc. Overcoming Obstacles to Advanced Reactor Technologies Edward Geist Whither the Nuclear Renaissance. A decade ago, it appeared that the United States might be on the verge of a so-called nuclear renaissance.

Bolstered by high natural gas prices, new standardized reactor designs, a streamlined regu. Advanced Reactor Objectives For all three technology options (LWR, VHTR, SFR), a major emphasis is improved cost of electricity –Reactor capital cost is the dominant cost component for nuclear energy •Reduce the commodity requirements •Reduce the physical footprint –Improve the energy conversion (more MWe per MWt).

Nuclear Power: Technical and Institutional Options for the Future () Chapter: Appendix B Criteria Developed for the Comparative Analysis of Advanced Reactor Technologies.

Advances in Light Water Reactor Technologies focuses on the design and analysis of advanced nuclear power reactors. This volume provides readers with thorough descriptions of the general characteristics of various advanced light water reactors currently being developed : Springer New York.

Advanced Reactor Technologies (ART) is a national program funded by the U.S. Department of Energy (DOE). Here at INL, work is focused specifically on developing a High Temperature Gas-cooled Reactor (HTGR), which will offer enhancements in safety and efficiency.

Get this from a library! Advanced water-cooled reactor technologies: rationale, state of progress, and outlook: report. [OECD Nuclear Energy Agency.; Organisation for Economic Co-operation and Development.;] -- Examines key policy and technical issues which are considered important to the future development and application of advanced water reactor technologies.The USA DOE Advanced Reactor Technologies (ART) graphite R&D program supporting HTR design is one of the longest running nuclear graphite R&D programs.

Significant progress has been made in several areas of research within this extensive program including unirraidated and irradiated testing of nuclear graphite, oxidation results and modeling.The Handbook of Generation-IV Nuclear Reactors does a profound service in framing the technical and technological issues involved in the development of, in many cases, revolution-Author: Jovica Riznic.