SlideShare una empresa de Scribd logo
1 de 54
Descargar para leer sin conexión
Nuclear Power Electroceramics Lab. Ok  Yun - Po
WUP 2005 WUP(World Uranium Resources)2005
Fuel Pellet (3.5%) Uranium Fual Pellet A typical pellet of uranium weighs about 7 grams (0.24 ounces). It can generate as much energy as 3.5 barrels of oil, 17,000 cubic feet of natural gas, or 1,780 pounds of coal
Fusion Powers the Sun
Nuclear Fission Nuclear fission is the process of splitting the nucleus of a heavy atom (target nucleus) into two or more lighter atoms (fission products) when the heavy atom absorbs or is bombarded by a neutron. A few radionuclides can also spontaneously fission.
Uranium Atom Fission Process  Nuclear Fission
Nuclear Fuel Cycle
Nuclear Reactor Worldwide
NUCLEAR POWER STATUS WORLDWIDE •  About 440 Reactors Operating  •  Source of 17% of Worldwide Electricity  •  Source of 25% of Electricity in Industrial Countries  •  Source of 20% of United States Electricity (103 Reactors)  •  Effective New Plant Moratoria in Most Industrialized Countries •  Japan, France Ordering a New Plant Every Few Years  •  China, Korea, Taiwan Have Been Ordering Frequently Some annual electricity demand growth rates near 10% until recently  •  Finland Is Ordering a New Plant
SUMMARY OF TYPES OF POWER REACTORS USED WORLDWIDE
Nuclear Electric Generation
US Electricity Fuel Costs (1981-2003)  2003 cents per kilo`watt-hour
Method of Nuclear Power PWR (Pressurized Water Reactor) In the Pressurised Water Reactor the core is surrounded by water and is enclosed in a very thick steel pressure vessel. The water, under high pressure, serves as both coolant and moderator. It is circulated to a heat exchanger(steam generator) where water in a separate circuit is turned into steam.
A Nuclear Reactor Core Method of Nuclear Power
Republic of Korea PWR (Pressurized Water Reactor)
PHWR (Pressurised Heavy Water Reactor) Figure is shows the Canadian-designed and built CANDU reactor. Instead of being in a pressure vessel, the fuel is in a number of pressure tubes within a reactor vessel called a calandria. Pressurised water or heavy water flows through the tubes and conveys the heat to a steam generator. Heavy water under low pressure fills the calandria, surrounding the pressure tubes, and acts as moderator. Method of Nuclear Power
BWR(Boiling Water Reactor) The BWR is characterized by two-phase fluid flow (water and steam) in the upper part of the reactor core. Light water (i.e., common distilled water) is the working fluid used to conduct heat away from the nuclear fuel. The water around the fuel elements also "thermalizes" neutrons, i.e., reduces their kinetic energy, which is necessary to improve the probability of fission of fissile fuel. Fissile fuel material, such as the U-235 and Pu-239 isotopes, have large capture cross sections for thermal neutrons.  Method of Nuclear Power
BWR(Boiling Water Reactor) Method of Nuclear Power
Steam Turbine  Method of Nuclear Power
Boiling Water Reactor Nuclear Power Plant  A reactor behaves in a similar manner. As the reactor water is boiled, its volume increases, and the steam escapes at high speed through the outlet piping. The piping is designed so the steam strikes the cups on the turbine wheel; the wheel spins and its shaft turns the copper coil in the electrical generator.  Method of Nuclear Power
U.S. Style Nuclear Reactor — Defense In Depth
Nuclear power plants commercially operable
Nuclear Reactor Maps: Korea
Status Nuclear  Power Plants of South Korea Station Type Capacity MWe Operator Reactor Supplier Construction Start First Criticality Grid Connection Commercial Operation Shutdown Date KORI-1 PWR 587 KHNP Westinghouse 1971 November 1977 June 1977 June 1978 April     KORI-2 PWR 650 KHNP Westinghouse 1977 March 1983 April 1983 April 1983 July     KORI-3 PWR 950 KHNP Westinghouse 1979 April 1985 January 1985 January 1985 September     KORI-4 PWR 950 KHNP Westinghouse 1979 April 1985 October 1985 December 1986 April     SHIN KORI-1 PWR 1000 KHNP DHIC - - - (2008 September)     SHIN KORI-2 PWR 1000 KHNP DHIC - - - (2009 September)     SHIN KORI-3 PWR 1000 KHNP - - - - (2010 September)     SHIN KORI-4 PWR 1000 KHNP - - - - (2011 September)     YONGGWANG-1 PWR 950 KHNP Westinghouse 1980 December 1986 January 1986 March 1986 August     YONGGWANG-2 PWR 950 KHNP Westinghouse 1980 December 1986 October 1986 November 1987 June     YONGGWANG-3 PWR 1000 KHNP KHI/KAERI 1989 June 1994 October 1994 October 1995 March     YONGGWANG-4 PWR 1000 KHNP KHI/KAERI 1989 June 1995 July 1995 July 1996 January     YONGGWANG-5 PWR 1000 KHNP DHIC/KOPEC 1996 September 2001 November 2001 December 2002 May     YONGGWANG-6 PWR 1000 KHNP DHIC/KOPEC 1996 September 2002 September 2002 September 2002 December     WOLSONG-1 PHWR 679 KHNP AECL 1977 May 1982 November 1982 December 1983 April     WOLSONG-2 PHWR 700 KHNP AECL/KHI 1991 October 1997 January 1997 April 1997 July     WOLSONG-3 PHWR 700 KHNP KHI/AECL 1993 August 1998 February 1998 March 1998 July     WOLSONG-4 PHWR 700 KHNP KHI/AECL 1993 August 1999 April 1999 May 1999 October     SHIN WOLSONG-1 PHWR 1000 KHNP DHIC - - - (2009 September)     SHIN WOLSONG-2 PHWR 1000 KHNP DHIC - - - (2010 September)     ULCHIN-1 PWR 950 KHNP Framatom 1982 March 1988 February 1988 April 1988 September     ULCHIN-2 PWR 950 KHNP Framatom 1982 March 1989 February 1989 April 1989 September     ULCHIN-3 PWR 1000 KHNP KHI/KAERI 1992 May 1997 December 1998 January 1998 August     ULCHIN-4 PWR 1000 KHNP KHI/KAERI 1992 May 1998 December 1998 December 1999 December     ULCHIN-5 PWR 1000 KHNP DHIC/KOPEC 1999 January 2003 November - (2004 June)     ULCHIN-6 PWR 1000 KHNP DHIC/KOPEC 1999 January - - (2005 June)  
Power reactors operating in South Korea
South Korean reactors under construction or on order
Prospects of Power Source Composition ( Korea ) The share of nuclear power capacity and nuclear power generation will be increased to 34.6% and 46.1%, respectively by 2015 as shown in Figure
Nuclear Power Worldwide
Nuclear Power in Asia, and Involvement with the Nuclear Fuel Cycle  Key: UM Uranium Mining, C Conversion, E Enrichment, FF Fuel Fabrication, R Reprocessing, WM Waste Management facilities for spent fuel away from reactors
NUCLEAR POWER REACTORS IN OPERATION AND UNDER CONSTRUCTION, 31 DEC. 2005 1 TW · h = 0.39 megatonnes of coal equivalent (input) = 0.23 megatonnes of oil equivalent (input)
REACTOR TYPES AND NET ELECTRICAL POWER, REACTORS CONNECTED TO THE GRID, 31 DEC. 2005
REACTOR YEARS EXPERIENCE, UP TO 31 DEC. 2005
REACTOR UNITS AND NET ELECTRICAL POWER, 1970 TO 2006
Comparison with Other Energy Sources  The fuel requirements for nuclear plants are significantly smaller than for plants using other fuels or sources of energy. This is shown in the following table for an example city.
Generation IV Nuclear Technology Nuclear power has developed in stages, or generations. We are currently in the third generation, researching technology for Generation IV.
[object Object],[object Object],[object Object],[object Object],[object Object],Generation IV Nuclear Technology
The figures above show the six technologies selected for further Generation IV nuclear power systems research. Generation IV Nuclear Technology
Generation IV Nuclear Technology
Generation IV Nuclear Technology
The Very-High Temperature Reactor could produce both electricity and heat for hydrogen production. Generation IV Nuclear Technology
Dukovany Power Plant, Czech Republic Nuclear Power Plants
Nuclear Power Plants (Japan)
Nuclear Power Plants (Russia)
Nuclear Power Plants
Nuclear Power Plant (Japan) The Ikata Nuclear Power Plant is located on Shikoku island at Ikata-cho, Ehime, has two Mitisubishi 538 MWe Pressurized Water Reactor units with the 2 Reactor Coolant Loop design (similar to original Westinghouse design as Prairie Island, Kewaunee, and Point Beach plants) and one Mitsubishi Pressurized Water Reactor unit with the 3 Reactor Coolant Loop design (similar to the Westinghouse Surry, North Anna, and Robinson plants). Units 1 and 2 started up in Feb. 1977 and August 1981. Unit 3 is a 3 loop PWR rated at 846 MWe that started up in June 1994.
Nuclear Power Plant (Japan) The Arctic Sunrise in opposition to the Takahama nuclear power plant
Nuclear Power Plant (Japan) Oi Nuclear power plant is seen in this aerial view in Fukui, western Japan
The large Tricastin enrichment plant in France (beyond cooling towers) The four nuclear reactors in the foreground provide over 3000 MWe power for it  Nuclear Power Plant (France)
Nuclear Power Plant (USA) Diablo Canyon nuclear power plant, USA
Calvert Cliffs Nuclear Power Plant  Nuclear Power Plant (USA)
Kori Nuclear Power Plant Nuclear Power Plant (Korea)
Yonggwang nuclear power plant is located in the west coast of southern part of Korea, ~400 km from Seoul as shown in Fig. The power plant has six reactors producing total thermal output of 16.4 GWth, the second largest in the world  Nuclear Power Plant (Korea)
Environmental Benefits ,[object Object],[object Object],[object Object],[object Object]
Thank You !

Más contenido relacionado

La actualidad más candente

La actualidad más candente (20)

Nuclear energy powerpoint.
Nuclear energy powerpoint.Nuclear energy powerpoint.
Nuclear energy powerpoint.
 
Introduction to Nuclear Power Generation
Introduction to Nuclear Power GenerationIntroduction to Nuclear Power Generation
Introduction to Nuclear Power Generation
 
Nuclear powerplant
Nuclear powerplantNuclear powerplant
Nuclear powerplant
 
Nuclear energy
Nuclear energyNuclear energy
Nuclear energy
 
Nuclear power
Nuclear powerNuclear power
Nuclear power
 
Nuclear Energy in India
Nuclear Energy in IndiaNuclear Energy in India
Nuclear Energy in India
 
Nuclear power plant
Nuclear power plantNuclear power plant
Nuclear power plant
 
Nuclear power
Nuclear powerNuclear power
Nuclear power
 
Nuclear energy
Nuclear energyNuclear energy
Nuclear energy
 
Nuclear energy ppt
Nuclear energy pptNuclear energy ppt
Nuclear energy ppt
 
Nuclear energy
Nuclear energyNuclear energy
Nuclear energy
 
Nuclear Power Plant
Nuclear Power PlantNuclear Power Plant
Nuclear Power Plant
 
Nuclear energy
Nuclear energyNuclear energy
Nuclear energy
 
Nuclear energy
Nuclear energyNuclear energy
Nuclear energy
 
Nuclear power plant
Nuclear power plantNuclear power plant
Nuclear power plant
 
Nuclear Reactors
Nuclear  ReactorsNuclear  Reactors
Nuclear Reactors
 
Nuclear Energy
Nuclear EnergyNuclear Energy
Nuclear Energy
 
Nuclear power plant
Nuclear power plantNuclear power plant
Nuclear power plant
 
MET 401 Chapter 8 -_nuclear_power_plant
MET 401 Chapter 8 -_nuclear_power_plantMET 401 Chapter 8 -_nuclear_power_plant
MET 401 Chapter 8 -_nuclear_power_plant
 
Nuclear energy
Nuclear energyNuclear energy
Nuclear energy
 

Similar a Nuclear Power

The Fukushima Daiichi Nuclear Plant
The Fukushima Daiichi Nuclear PlantThe Fukushima Daiichi Nuclear Plant
The Fukushima Daiichi Nuclear Plantsirdanielbilbruck
 
Nuclear technologies alan bullick
Nuclear technologies  alan bullickNuclear technologies  alan bullick
Nuclear technologies alan bullickMark McGinley
 
ICS ARCHITECTURE FINAL PROJECT .docx
ICS ARCHITECTURE FINAL PROJECT                                    .docxICS ARCHITECTURE FINAL PROJECT                                    .docx
ICS ARCHITECTURE FINAL PROJECT .docxwilcockiris
 
Nuclear thermal propulsion reactor
Nuclear thermal propulsion reactorNuclear thermal propulsion reactor
Nuclear thermal propulsion reactorJari Abbas
 
The glg slide deck as 1700 edt monday 2 may 2011
The glg slide deck as 1700 edt monday 2 may 2011 The glg slide deck as 1700 edt monday 2 may 2011
The glg slide deck as 1700 edt monday 2 may 2011 tdrolet
 
Nuclear thermal propulsion in space(NTP)
Nuclear thermal propulsion in space(NTP)Nuclear thermal propulsion in space(NTP)
Nuclear thermal propulsion in space(NTP)SANDIP THORAT
 
Nuclear Power Plant | Mechanical Engineering | Power Plant Engineering
Nuclear Power Plant | Mechanical Engineering | Power Plant EngineeringNuclear Power Plant | Mechanical Engineering | Power Plant Engineering
Nuclear Power Plant | Mechanical Engineering | Power Plant EngineeringYash Sawant
 
Nuclear energy
Nuclear energyNuclear energy
Nuclear energyRiya Gupta
 
Nuclear_power_plant.pdf
Nuclear_power_plant.pdfNuclear_power_plant.pdf
Nuclear_power_plant.pdfMemoonaShahid9
 

Similar a Nuclear Power (20)

power1
power1power1
power1
 
Nuclear power plant
Nuclear power plantNuclear power plant
Nuclear power plant
 
The Fukushima Daiichi Nuclear Plant
The Fukushima Daiichi Nuclear PlantThe Fukushima Daiichi Nuclear Plant
The Fukushima Daiichi Nuclear Plant
 
Nuclear technologies alan bullick
Nuclear technologies  alan bullickNuclear technologies  alan bullick
Nuclear technologies alan bullick
 
ICS ARCHITECTURE FINAL PROJECT .docx
ICS ARCHITECTURE FINAL PROJECT                                    .docxICS ARCHITECTURE FINAL PROJECT                                    .docx
ICS ARCHITECTURE FINAL PROJECT .docx
 
Nuclear power plant
Nuclear power plant Nuclear power plant
Nuclear power plant
 
Nuclear thermal propulsion reactor
Nuclear thermal propulsion reactorNuclear thermal propulsion reactor
Nuclear thermal propulsion reactor
 
Essay About Power Plant
Essay About Power PlantEssay About Power Plant
Essay About Power Plant
 
The glg slide deck as 1700 edt monday 2 may 2011
The glg slide deck as 1700 edt monday 2 may 2011 The glg slide deck as 1700 edt monday 2 may 2011
The glg slide deck as 1700 edt monday 2 may 2011
 
Nuclear thermal propulsion in space(NTP)
Nuclear thermal propulsion in space(NTP)Nuclear thermal propulsion in space(NTP)
Nuclear thermal propulsion in space(NTP)
 
Nuclear tpp
Nuclear tppNuclear tpp
Nuclear tpp
 
15ee17 (Group)
15ee17 (Group)15ee17 (Group)
15ee17 (Group)
 
nuclear power plant
nuclear power plantnuclear power plant
nuclear power plant
 
Nuclear energy
Nuclear energyNuclear energy
Nuclear energy
 
Nuclear power plant
Nuclear power plantNuclear power plant
Nuclear power plant
 
Nuclear Power Plant | Mechanical Engineering | Power Plant Engineering
Nuclear Power Plant | Mechanical Engineering | Power Plant EngineeringNuclear Power Plant | Mechanical Engineering | Power Plant Engineering
Nuclear Power Plant | Mechanical Engineering | Power Plant Engineering
 
Nuclear fission
Nuclear fissionNuclear fission
Nuclear fission
 
Nuclear energy
Nuclear energyNuclear energy
Nuclear energy
 
Nuclear power plant
Nuclear power plantNuclear power plant
Nuclear power plant
 
Nuclear_power_plant.pdf
Nuclear_power_plant.pdfNuclear_power_plant.pdf
Nuclear_power_plant.pdf
 

Más de Viet NguyenHoang (20)

Thai nguyen 02-midrex
Thai nguyen 02-midrexThai nguyen 02-midrex
Thai nguyen 02-midrex
 
Thai nguyen 04-corex
Thai nguyen 04-corexThai nguyen 04-corex
Thai nguyen 04-corex
 
Thai nguyen 03-1-slrn
Thai nguyen 03-1-slrnThai nguyen 03-1-slrn
Thai nguyen 03-1-slrn
 
Thai nguyen 01-intro-print
Thai nguyen 01-intro-printThai nguyen 01-intro-print
Thai nguyen 01-intro-print
 
Lost foam cast process
Lost foam cast processLost foam cast process
Lost foam cast process
 
Grain size analysis by using ImageJ
Grain size analysis by using ImageJGrain size analysis by using ImageJ
Grain size analysis by using ImageJ
 
Tem Samp1
Tem Samp1Tem Samp1
Tem Samp1
 
Specimenprep
SpecimenprepSpecimenprep
Specimenprep
 
Tem2
Tem2Tem2
Tem2
 
Tem1
Tem1Tem1
Tem1
 
Lập trình C
Lập trình CLập trình C
Lập trình C
 
Lập trình C
Lập trình CLập trình C
Lập trình C
 
Sin2005
Sin2005Sin2005
Sin2005
 
Nano Indentation Lecture1
Nano Indentation Lecture1Nano Indentation Lecture1
Nano Indentation Lecture1
 
Nano Indentation Lecture2
Nano Indentation Lecture2Nano Indentation Lecture2
Nano Indentation Lecture2
 
Thép
ThépThép
Thép
 
Govnet.Ppt
Govnet.PptGovnet.Ppt
Govnet.Ppt
 
Licensing,Ppt
Licensing,PptLicensing,Ppt
Licensing,Ppt
 
Open Source Presentation To Portal Partners2
Open Source Presentation To Portal Partners2Open Source Presentation To Portal Partners2
Open Source Presentation To Portal Partners2
 
Opensource Powerpoint Review.Ppt
Opensource Powerpoint Review.PptOpensource Powerpoint Review.Ppt
Opensource Powerpoint Review.Ppt
 

Último

Why device, WIFI, and ISP insights are crucial to supporting remote Microsoft...
Why device, WIFI, and ISP insights are crucial to supporting remote Microsoft...Why device, WIFI, and ISP insights are crucial to supporting remote Microsoft...
Why device, WIFI, and ISP insights are crucial to supporting remote Microsoft...panagenda
 
Infrared simulation and processing on Nvidia platforms
Infrared simulation and processing on Nvidia platformsInfrared simulation and processing on Nvidia platforms
Infrared simulation and processing on Nvidia platformsYoss Cohen
 
Connecting the Dots for Information Discovery.pdf
Connecting the Dots for Information Discovery.pdfConnecting the Dots for Information Discovery.pdf
Connecting the Dots for Information Discovery.pdfNeo4j
 
The Future Roadmap for the Composable Data Stack - Wes McKinney - Data Counci...
The Future Roadmap for the Composable Data Stack - Wes McKinney - Data Counci...The Future Roadmap for the Composable Data Stack - Wes McKinney - Data Counci...
The Future Roadmap for the Composable Data Stack - Wes McKinney - Data Counci...Wes McKinney
 
2024 April Patch Tuesday
2024 April Patch Tuesday2024 April Patch Tuesday
2024 April Patch TuesdayIvanti
 
Assure Ecommerce and Retail Operations Uptime with ThousandEyes
Assure Ecommerce and Retail Operations Uptime with ThousandEyesAssure Ecommerce and Retail Operations Uptime with ThousandEyes
Assure Ecommerce and Retail Operations Uptime with ThousandEyesThousandEyes
 
Glenn Lazarus- Why Your Observability Strategy Needs Security Observability
Glenn Lazarus- Why Your Observability Strategy Needs Security ObservabilityGlenn Lazarus- Why Your Observability Strategy Needs Security Observability
Glenn Lazarus- Why Your Observability Strategy Needs Security Observabilityitnewsafrica
 
Modern Roaming for Notes and Nomad – Cheaper Faster Better Stronger
Modern Roaming for Notes and Nomad – Cheaper Faster Better StrongerModern Roaming for Notes and Nomad – Cheaper Faster Better Stronger
Modern Roaming for Notes and Nomad – Cheaper Faster Better Strongerpanagenda
 
Generative Artificial Intelligence: How generative AI works.pdf
Generative Artificial Intelligence: How generative AI works.pdfGenerative Artificial Intelligence: How generative AI works.pdf
Generative Artificial Intelligence: How generative AI works.pdfIngrid Airi González
 
Irene Moetsana-Moeng: Stakeholders in Cybersecurity: Collaborative Defence fo...
Irene Moetsana-Moeng: Stakeholders in Cybersecurity: Collaborative Defence fo...Irene Moetsana-Moeng: Stakeholders in Cybersecurity: Collaborative Defence fo...
Irene Moetsana-Moeng: Stakeholders in Cybersecurity: Collaborative Defence fo...itnewsafrica
 
Transcript: New from BookNet Canada for 2024: BNC SalesData and LibraryData -...
Transcript: New from BookNet Canada for 2024: BNC SalesData and LibraryData -...Transcript: New from BookNet Canada for 2024: BNC SalesData and LibraryData -...
Transcript: New from BookNet Canada for 2024: BNC SalesData and LibraryData -...BookNet Canada
 
Abdul Kader Baba- Managing Cybersecurity Risks and Compliance Requirements i...
Abdul Kader Baba- Managing Cybersecurity Risks  and Compliance Requirements i...Abdul Kader Baba- Managing Cybersecurity Risks  and Compliance Requirements i...
Abdul Kader Baba- Managing Cybersecurity Risks and Compliance Requirements i...itnewsafrica
 
Zeshan Sattar- Assessing the skill requirements and industry expectations for...
Zeshan Sattar- Assessing the skill requirements and industry expectations for...Zeshan Sattar- Assessing the skill requirements and industry expectations for...
Zeshan Sattar- Assessing the skill requirements and industry expectations for...itnewsafrica
 
Testing tools and AI - ideas what to try with some tool examples
Testing tools and AI - ideas what to try with some tool examplesTesting tools and AI - ideas what to try with some tool examples
Testing tools and AI - ideas what to try with some tool examplesKari Kakkonen
 
[Webinar] SpiraTest - Setting New Standards in Quality Assurance
[Webinar] SpiraTest - Setting New Standards in Quality Assurance[Webinar] SpiraTest - Setting New Standards in Quality Assurance
[Webinar] SpiraTest - Setting New Standards in Quality AssuranceInflectra
 
Accelerating Enterprise Software Engineering with Platformless
Accelerating Enterprise Software Engineering with PlatformlessAccelerating Enterprise Software Engineering with Platformless
Accelerating Enterprise Software Engineering with PlatformlessWSO2
 
MuleSoft Online Meetup Group - B2B Crash Course: Release SparkNotes
MuleSoft Online Meetup Group - B2B Crash Course: Release SparkNotesMuleSoft Online Meetup Group - B2B Crash Course: Release SparkNotes
MuleSoft Online Meetup Group - B2B Crash Course: Release SparkNotesManik S Magar
 
How to Effectively Monitor SD-WAN and SASE Environments with ThousandEyes
How to Effectively Monitor SD-WAN and SASE Environments with ThousandEyesHow to Effectively Monitor SD-WAN and SASE Environments with ThousandEyes
How to Effectively Monitor SD-WAN and SASE Environments with ThousandEyesThousandEyes
 
Microsoft 365 Copilot: How to boost your productivity with AI – Part two: Dat...
Microsoft 365 Copilot: How to boost your productivity with AI – Part two: Dat...Microsoft 365 Copilot: How to boost your productivity with AI – Part two: Dat...
Microsoft 365 Copilot: How to boost your productivity with AI – Part two: Dat...Nikki Chapple
 
Long journey of Ruby standard library at RubyConf AU 2024
Long journey of Ruby standard library at RubyConf AU 2024Long journey of Ruby standard library at RubyConf AU 2024
Long journey of Ruby standard library at RubyConf AU 2024Hiroshi SHIBATA
 

Último (20)

Why device, WIFI, and ISP insights are crucial to supporting remote Microsoft...
Why device, WIFI, and ISP insights are crucial to supporting remote Microsoft...Why device, WIFI, and ISP insights are crucial to supporting remote Microsoft...
Why device, WIFI, and ISP insights are crucial to supporting remote Microsoft...
 
Infrared simulation and processing on Nvidia platforms
Infrared simulation and processing on Nvidia platformsInfrared simulation and processing on Nvidia platforms
Infrared simulation and processing on Nvidia platforms
 
Connecting the Dots for Information Discovery.pdf
Connecting the Dots for Information Discovery.pdfConnecting the Dots for Information Discovery.pdf
Connecting the Dots for Information Discovery.pdf
 
The Future Roadmap for the Composable Data Stack - Wes McKinney - Data Counci...
The Future Roadmap for the Composable Data Stack - Wes McKinney - Data Counci...The Future Roadmap for the Composable Data Stack - Wes McKinney - Data Counci...
The Future Roadmap for the Composable Data Stack - Wes McKinney - Data Counci...
 
2024 April Patch Tuesday
2024 April Patch Tuesday2024 April Patch Tuesday
2024 April Patch Tuesday
 
Assure Ecommerce and Retail Operations Uptime with ThousandEyes
Assure Ecommerce and Retail Operations Uptime with ThousandEyesAssure Ecommerce and Retail Operations Uptime with ThousandEyes
Assure Ecommerce and Retail Operations Uptime with ThousandEyes
 
Glenn Lazarus- Why Your Observability Strategy Needs Security Observability
Glenn Lazarus- Why Your Observability Strategy Needs Security ObservabilityGlenn Lazarus- Why Your Observability Strategy Needs Security Observability
Glenn Lazarus- Why Your Observability Strategy Needs Security Observability
 
Modern Roaming for Notes and Nomad – Cheaper Faster Better Stronger
Modern Roaming for Notes and Nomad – Cheaper Faster Better StrongerModern Roaming for Notes and Nomad – Cheaper Faster Better Stronger
Modern Roaming for Notes and Nomad – Cheaper Faster Better Stronger
 
Generative Artificial Intelligence: How generative AI works.pdf
Generative Artificial Intelligence: How generative AI works.pdfGenerative Artificial Intelligence: How generative AI works.pdf
Generative Artificial Intelligence: How generative AI works.pdf
 
Irene Moetsana-Moeng: Stakeholders in Cybersecurity: Collaborative Defence fo...
Irene Moetsana-Moeng: Stakeholders in Cybersecurity: Collaborative Defence fo...Irene Moetsana-Moeng: Stakeholders in Cybersecurity: Collaborative Defence fo...
Irene Moetsana-Moeng: Stakeholders in Cybersecurity: Collaborative Defence fo...
 
Transcript: New from BookNet Canada for 2024: BNC SalesData and LibraryData -...
Transcript: New from BookNet Canada for 2024: BNC SalesData and LibraryData -...Transcript: New from BookNet Canada for 2024: BNC SalesData and LibraryData -...
Transcript: New from BookNet Canada for 2024: BNC SalesData and LibraryData -...
 
Abdul Kader Baba- Managing Cybersecurity Risks and Compliance Requirements i...
Abdul Kader Baba- Managing Cybersecurity Risks  and Compliance Requirements i...Abdul Kader Baba- Managing Cybersecurity Risks  and Compliance Requirements i...
Abdul Kader Baba- Managing Cybersecurity Risks and Compliance Requirements i...
 
Zeshan Sattar- Assessing the skill requirements and industry expectations for...
Zeshan Sattar- Assessing the skill requirements and industry expectations for...Zeshan Sattar- Assessing the skill requirements and industry expectations for...
Zeshan Sattar- Assessing the skill requirements and industry expectations for...
 
Testing tools and AI - ideas what to try with some tool examples
Testing tools and AI - ideas what to try with some tool examplesTesting tools and AI - ideas what to try with some tool examples
Testing tools and AI - ideas what to try with some tool examples
 
[Webinar] SpiraTest - Setting New Standards in Quality Assurance
[Webinar] SpiraTest - Setting New Standards in Quality Assurance[Webinar] SpiraTest - Setting New Standards in Quality Assurance
[Webinar] SpiraTest - Setting New Standards in Quality Assurance
 
Accelerating Enterprise Software Engineering with Platformless
Accelerating Enterprise Software Engineering with PlatformlessAccelerating Enterprise Software Engineering with Platformless
Accelerating Enterprise Software Engineering with Platformless
 
MuleSoft Online Meetup Group - B2B Crash Course: Release SparkNotes
MuleSoft Online Meetup Group - B2B Crash Course: Release SparkNotesMuleSoft Online Meetup Group - B2B Crash Course: Release SparkNotes
MuleSoft Online Meetup Group - B2B Crash Course: Release SparkNotes
 
How to Effectively Monitor SD-WAN and SASE Environments with ThousandEyes
How to Effectively Monitor SD-WAN and SASE Environments with ThousandEyesHow to Effectively Monitor SD-WAN and SASE Environments with ThousandEyes
How to Effectively Monitor SD-WAN and SASE Environments with ThousandEyes
 
Microsoft 365 Copilot: How to boost your productivity with AI – Part two: Dat...
Microsoft 365 Copilot: How to boost your productivity with AI – Part two: Dat...Microsoft 365 Copilot: How to boost your productivity with AI – Part two: Dat...
Microsoft 365 Copilot: How to boost your productivity with AI – Part two: Dat...
 
Long journey of Ruby standard library at RubyConf AU 2024
Long journey of Ruby standard library at RubyConf AU 2024Long journey of Ruby standard library at RubyConf AU 2024
Long journey of Ruby standard library at RubyConf AU 2024
 

Nuclear Power

  • 1. Nuclear Power Electroceramics Lab. Ok Yun - Po
  • 2. WUP 2005 WUP(World Uranium Resources)2005
  • 3. Fuel Pellet (3.5%) Uranium Fual Pellet A typical pellet of uranium weighs about 7 grams (0.24 ounces). It can generate as much energy as 3.5 barrels of oil, 17,000 cubic feet of natural gas, or 1,780 pounds of coal
  • 5. Nuclear Fission Nuclear fission is the process of splitting the nucleus of a heavy atom (target nucleus) into two or more lighter atoms (fission products) when the heavy atom absorbs or is bombarded by a neutron. A few radionuclides can also spontaneously fission.
  • 6. Uranium Atom Fission Process Nuclear Fission
  • 9. NUCLEAR POWER STATUS WORLDWIDE • About 440 Reactors Operating • Source of 17% of Worldwide Electricity • Source of 25% of Electricity in Industrial Countries • Source of 20% of United States Electricity (103 Reactors) • Effective New Plant Moratoria in Most Industrialized Countries • Japan, France Ordering a New Plant Every Few Years • China, Korea, Taiwan Have Been Ordering Frequently Some annual electricity demand growth rates near 10% until recently • Finland Is Ordering a New Plant
  • 10. SUMMARY OF TYPES OF POWER REACTORS USED WORLDWIDE
  • 12. US Electricity Fuel Costs (1981-2003) 2003 cents per kilo`watt-hour
  • 13. Method of Nuclear Power PWR (Pressurized Water Reactor) In the Pressurised Water Reactor the core is surrounded by water and is enclosed in a very thick steel pressure vessel. The water, under high pressure, serves as both coolant and moderator. It is circulated to a heat exchanger(steam generator) where water in a separate circuit is turned into steam.
  • 14. A Nuclear Reactor Core Method of Nuclear Power
  • 15. Republic of Korea PWR (Pressurized Water Reactor)
  • 16. PHWR (Pressurised Heavy Water Reactor) Figure is shows the Canadian-designed and built CANDU reactor. Instead of being in a pressure vessel, the fuel is in a number of pressure tubes within a reactor vessel called a calandria. Pressurised water or heavy water flows through the tubes and conveys the heat to a steam generator. Heavy water under low pressure fills the calandria, surrounding the pressure tubes, and acts as moderator. Method of Nuclear Power
  • 17. BWR(Boiling Water Reactor) The BWR is characterized by two-phase fluid flow (water and steam) in the upper part of the reactor core. Light water (i.e., common distilled water) is the working fluid used to conduct heat away from the nuclear fuel. The water around the fuel elements also "thermalizes" neutrons, i.e., reduces their kinetic energy, which is necessary to improve the probability of fission of fissile fuel. Fissile fuel material, such as the U-235 and Pu-239 isotopes, have large capture cross sections for thermal neutrons. Method of Nuclear Power
  • 18. BWR(Boiling Water Reactor) Method of Nuclear Power
  • 19. Steam Turbine Method of Nuclear Power
  • 20. Boiling Water Reactor Nuclear Power Plant A reactor behaves in a similar manner. As the reactor water is boiled, its volume increases, and the steam escapes at high speed through the outlet piping. The piping is designed so the steam strikes the cups on the turbine wheel; the wheel spins and its shaft turns the copper coil in the electrical generator. Method of Nuclear Power
  • 21. U.S. Style Nuclear Reactor — Defense In Depth
  • 22. Nuclear power plants commercially operable
  • 24. Status Nuclear Power Plants of South Korea Station Type Capacity MWe Operator Reactor Supplier Construction Start First Criticality Grid Connection Commercial Operation Shutdown Date KORI-1 PWR 587 KHNP Westinghouse 1971 November 1977 June 1977 June 1978 April   KORI-2 PWR 650 KHNP Westinghouse 1977 March 1983 April 1983 April 1983 July   KORI-3 PWR 950 KHNP Westinghouse 1979 April 1985 January 1985 January 1985 September   KORI-4 PWR 950 KHNP Westinghouse 1979 April 1985 October 1985 December 1986 April   SHIN KORI-1 PWR 1000 KHNP DHIC - - - (2008 September)   SHIN KORI-2 PWR 1000 KHNP DHIC - - - (2009 September)   SHIN KORI-3 PWR 1000 KHNP - - - - (2010 September)   SHIN KORI-4 PWR 1000 KHNP - - - - (2011 September)   YONGGWANG-1 PWR 950 KHNP Westinghouse 1980 December 1986 January 1986 March 1986 August   YONGGWANG-2 PWR 950 KHNP Westinghouse 1980 December 1986 October 1986 November 1987 June   YONGGWANG-3 PWR 1000 KHNP KHI/KAERI 1989 June 1994 October 1994 October 1995 March   YONGGWANG-4 PWR 1000 KHNP KHI/KAERI 1989 June 1995 July 1995 July 1996 January   YONGGWANG-5 PWR 1000 KHNP DHIC/KOPEC 1996 September 2001 November 2001 December 2002 May   YONGGWANG-6 PWR 1000 KHNP DHIC/KOPEC 1996 September 2002 September 2002 September 2002 December   WOLSONG-1 PHWR 679 KHNP AECL 1977 May 1982 November 1982 December 1983 April   WOLSONG-2 PHWR 700 KHNP AECL/KHI 1991 October 1997 January 1997 April 1997 July   WOLSONG-3 PHWR 700 KHNP KHI/AECL 1993 August 1998 February 1998 March 1998 July   WOLSONG-4 PHWR 700 KHNP KHI/AECL 1993 August 1999 April 1999 May 1999 October   SHIN WOLSONG-1 PHWR 1000 KHNP DHIC - - - (2009 September)   SHIN WOLSONG-2 PHWR 1000 KHNP DHIC - - - (2010 September)   ULCHIN-1 PWR 950 KHNP Framatom 1982 March 1988 February 1988 April 1988 September   ULCHIN-2 PWR 950 KHNP Framatom 1982 March 1989 February 1989 April 1989 September   ULCHIN-3 PWR 1000 KHNP KHI/KAERI 1992 May 1997 December 1998 January 1998 August   ULCHIN-4 PWR 1000 KHNP KHI/KAERI 1992 May 1998 December 1998 December 1999 December   ULCHIN-5 PWR 1000 KHNP DHIC/KOPEC 1999 January 2003 November - (2004 June)   ULCHIN-6 PWR 1000 KHNP DHIC/KOPEC 1999 January - - (2005 June)  
  • 25. Power reactors operating in South Korea
  • 26. South Korean reactors under construction or on order
  • 27. Prospects of Power Source Composition ( Korea ) The share of nuclear power capacity and nuclear power generation will be increased to 34.6% and 46.1%, respectively by 2015 as shown in Figure
  • 29. Nuclear Power in Asia, and Involvement with the Nuclear Fuel Cycle Key: UM Uranium Mining, C Conversion, E Enrichment, FF Fuel Fabrication, R Reprocessing, WM Waste Management facilities for spent fuel away from reactors
  • 30. NUCLEAR POWER REACTORS IN OPERATION AND UNDER CONSTRUCTION, 31 DEC. 2005 1 TW · h = 0.39 megatonnes of coal equivalent (input) = 0.23 megatonnes of oil equivalent (input)
  • 31. REACTOR TYPES AND NET ELECTRICAL POWER, REACTORS CONNECTED TO THE GRID, 31 DEC. 2005
  • 32. REACTOR YEARS EXPERIENCE, UP TO 31 DEC. 2005
  • 33. REACTOR UNITS AND NET ELECTRICAL POWER, 1970 TO 2006
  • 34. Comparison with Other Energy Sources The fuel requirements for nuclear plants are significantly smaller than for plants using other fuels or sources of energy. This is shown in the following table for an example city.
  • 35. Generation IV Nuclear Technology Nuclear power has developed in stages, or generations. We are currently in the third generation, researching technology for Generation IV.
  • 36.
  • 37. The figures above show the six technologies selected for further Generation IV nuclear power systems research. Generation IV Nuclear Technology
  • 38. Generation IV Nuclear Technology
  • 39. Generation IV Nuclear Technology
  • 40. The Very-High Temperature Reactor could produce both electricity and heat for hydrogen production. Generation IV Nuclear Technology
  • 41. Dukovany Power Plant, Czech Republic Nuclear Power Plants
  • 45. Nuclear Power Plant (Japan) The Ikata Nuclear Power Plant is located on Shikoku island at Ikata-cho, Ehime, has two Mitisubishi 538 MWe Pressurized Water Reactor units with the 2 Reactor Coolant Loop design (similar to original Westinghouse design as Prairie Island, Kewaunee, and Point Beach plants) and one Mitsubishi Pressurized Water Reactor unit with the 3 Reactor Coolant Loop design (similar to the Westinghouse Surry, North Anna, and Robinson plants). Units 1 and 2 started up in Feb. 1977 and August 1981. Unit 3 is a 3 loop PWR rated at 846 MWe that started up in June 1994.
  • 46. Nuclear Power Plant (Japan) The Arctic Sunrise in opposition to the Takahama nuclear power plant
  • 47. Nuclear Power Plant (Japan) Oi Nuclear power plant is seen in this aerial view in Fukui, western Japan
  • 48. The large Tricastin enrichment plant in France (beyond cooling towers) The four nuclear reactors in the foreground provide over 3000 MWe power for it Nuclear Power Plant (France)
  • 49. Nuclear Power Plant (USA) Diablo Canyon nuclear power plant, USA
  • 50. Calvert Cliffs Nuclear Power Plant Nuclear Power Plant (USA)
  • 51. Kori Nuclear Power Plant Nuclear Power Plant (Korea)
  • 52. Yonggwang nuclear power plant is located in the west coast of southern part of Korea, ~400 km from Seoul as shown in Fig. The power plant has six reactors producing total thermal output of 16.4 GWth, the second largest in the world Nuclear Power Plant (Korea)
  • 53.