Advanced Light Water Reactor Plants System 80 Plus Design Certification Program

Advanced Light Water Reactor Plants System 80 Plus Design Certification Program PDF Author: United States. Office of the Assistant Secretary for Nuclear Energy
Publisher:
ISBN:
Category : Light water reactors
Languages : en
Pages : 23

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Advanced Light Water Reactor Plants System 80 Plus Design Certification Program

Advanced Light Water Reactor Plants System 80 Plus Design Certification Program PDF Author: United States. Office of the Assistant Secretary for Nuclear Energy
Publisher:
ISBN:
Category : Light water reactors
Languages : en
Pages : 23

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Advanced Light Water Reactor Plants System 80+{trademark} Design Certification Program. Annual Progress Report, October 1, 1995--September 30, 1996

Advanced Light Water Reactor Plants System 80+{trademark} Design Certification Program. Annual Progress Report, October 1, 1995--September 30, 1996 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 23

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The purpose of this report is to provide a status of the progress that was made towards Design Certification of System 80+{trademark} during the US government's 1996 fiscal year. The System 80+ Advanced Light Water Reactor (ALWR) is a 3931 MW (1350 MWe) Pressurized Water Reactor (PWR). The design covers an essentially complete plant. It is based on EPRI ALWR Utility Requirements Document (URD) improvements to the Standardized System 80 Nuclear Steam Supply System (NSSS) in operation at Palo Verde Units 1, 2 and 3. The NSSS is a traditional two-loop arrangement with two steam generators, two hot legs and four cold legs, each with a reactor coolant pump. The System 80+ standard design houses the NSSS in a spherical steel containment vessel which is enclosed in a concrete shield building, thus providing the safety advantages of a dual barrier to radioactivity release. Other major features include an all-digital, human-factors-engineered control room, an alternate electrical AC power source, an In-Containment Refueling Water Storage Tank (IRWST), and plant arrangements providing complete separation of redundant trains in safety systems.

Advanced Light Water Reactor Plants System 80+{trademark} Design Certification Program. Annual Progress Report, October 1, 1993--September 30, 1994

Advanced Light Water Reactor Plants System 80+{trademark} Design Certification Program. Annual Progress Report, October 1, 1993--September 30, 1994 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 66

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The purpose of this report is to provide a status of the progress that was made towards Design Certification of System 80{trademark} during the U.S. government's 1994 fiscal year. The System 80+ Advanced Light Water Reactor (ALWR) is a 3931 MW (1350 MWe) Pressurized Water Reactor (PWR). The design covers an essentially complete plant. It is based on EPRI ALWR Utility Requirements Document (URD) improvements to the Standardized System 80 Nuclear Steam Supply System (NSSS) in operation at Palo Verde Units 1, 2 and 3. The NSSS is a traditional two-loop arrangement with two steam generators, two hot legs and four cold legs, each with a reactor coolant pump. The System 80+ standard design houses the NSSS in a spherical steel containment vessel which is enclosed in a concrete shield building, thus providing the safety advantages of a dual barrier to radioactivity release. Other major features include an all-digital, human-factors-engineered control room, an alternate electrical AC power source, an In-Containment Refueling Water Storage Tank (IRWST), and plant arrangements providing complete separation of redundant trains in safety systems. Some design enhancements incorporated in the System 80+ design are included in the four units currently under construction in the Republic of Korea. These units and the System 80+ design form the basis of the Korean standardization program. The Nuclear Island portion of the System 80+ standard design has also been offered to the Republic of China, in response to their bid specification for an ALWR. The ABB-CE Standard Safety Analysis Report (CESSAR-DC) was docketed by the Nuclear Regulatory Commission (NRC) in May 1991 and a Draft Safety Evaluation Report (DSER) was issued in October 1992.

Advanced Light Water Reactor Plants System 80+{trademark} Design Certification Program. Annual Progress Report, October 1, 1992--September 30, 1993

Advanced Light Water Reactor Plants System 80+{trademark} Design Certification Program. Annual Progress Report, October 1, 1992--September 30, 1993 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 34

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Book Description
The purpose of this report is to provide a status of the progress that was made towards Design Certification of System 80+{trademark} during the US government's 1993 fiscal year. The System 80+ Advanced Light Water Reactor (ALWR) is a 3931 MW{sub t} (1350 MWe) Pressurized Water Reactor (PWR). The design consists of an essentially complete plant. It is based on evolutionary improvements to the Standardized System 80 nuclear steam supply system in operation at Palo Verde Units 1, 2, and 3, and the Duke Power Company P-81 balance-of-plant (BOP) that was designed and partially constructed at the Cherokee plant site. The System 80/P-81 original design has been substantially enhanced to increase conformance with the EPRI ALWR Utility Requirements Document (URD). Some design enhancements incorporated in the System 80+ design are included in the four units currently under construction in the Republic of Korea. These units form the basis of the Korean standardization program. The full System 80+ standard design has been offered to the Republic of China, in response to their recent bid specification. The ABB-CE Standard Safety Analysis Report (CESSAR-DC) was submitted to the NRC and a Draft Safety Evaluation Report was issued by the NRC in October 1992. CESSAR-DC contains the technical basis for compliance with the EPRI URD for simplified emergency planning. The Nuclear Steam Supply System (NSSS) is the standard ABB-Combustion Engineering two-loop arrangement with two steam generators, two hot legs and four cold legs each with a reactor coolant pump. The System 80+ standard plant includes a sperical steel containment vessel which is enclosed in a concrete shield building, thus providing the safety advantages of a dual containment.

Advanced Light Water Reactor Plants System 80+{trademark} Design Certification Program. Annual Progress Report, October 1, 1994--September 30, 1995

Advanced Light Water Reactor Plants System 80+{trademark} Design Certification Program. Annual Progress Report, October 1, 1994--September 30, 1995 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 29

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Book Description
The purpose of this report is to provide the status of the progress that was made towards Design Certification of System 80+{trademark} during the US government's 1995 fiscal year. The System 80+ Advanced Light Water Reactor (ALWR) is a 3931 MW (1350 MWe) Pressurized Water Reactor (PWR). The design covers an essentially complete plant. It is based on EPRI ALWR Utility Requirements Document (URD) improvements to the Standardized System 80 Nuclear Steam Supply System (NSSS) in operation at Palo Verde Units 1, 2, and 3. The NSSS is a traditional two-loop arrangement with two steam generators, two hot legs and four cold legs, each with a reactor coolant pump. The System 80+ standard design houses the NSSS in a spherical steel containment vessel which is enclosed in a concrete shield building, thus providing the safety advantages of a dual barrier to radioactivity release. Other major features include an all-digital, human-factors-engineered control room, an alternate electrical AC power source, an In-Containment Refueling Water Storage Tank (IRWST), and plant arrangements providing complete separation of redundant trains in safety systems.

Energy and Water Development Appropriations for 1998

Energy and Water Development Appropriations for 1998 PDF Author: United States. Congress. House. Committee on Appropriations. Subcommittee on Energy and Water Development
Publisher:
ISBN:
Category : Energy development
Languages : en
Pages : 2702

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Fiscal Year 1993 Department of Energy Authorization

Fiscal Year 1993 Department of Energy Authorization PDF Author: United States. Congress. House. Committee on Science, Space, and Technology. Subcommittee on Energy
Publisher:
ISBN:
Category : Energy development
Languages : en
Pages : 48

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Energy and Water Development Appropriations for Fiscal Year 1993

Energy and Water Development Appropriations for Fiscal Year 1993 PDF Author: United States. Congress. Senate. Committee on Appropriations. Subcommittee on Energy and Water Development
Publisher:
ISBN:
Category : Energy development
Languages : en
Pages : 826

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Resource Program

Resource Program PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 400

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Energy Research Abstracts

Energy Research Abstracts PDF Author:
Publisher:
ISBN:
Category : Power resources
Languages : en
Pages : 782

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