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  2. Light-water reactor - Wikipedia

    en.wikipedia.org/wiki/Light-water_reactor

    The light-water reactor (LWR) is a type of thermal-neutron reactor that uses normal water, as opposed to heavy water, as both its coolant and neutron moderator; furthermore a solid form of fissile elements is used as fuel. Thermal-neutron reactors are the most common type of nuclear reactor, and light-water reactors are the most common type of ...

  3. APR-1400 - Wikipedia

    en.wikipedia.org/wiki/APR-1400

    The APR-1400 is an evolutionary Advanced Light Water Reactor which is based on the previous OPR-1000 design. Under Korean conditions, the reactor produced 1455 MW gross electrical power with a thermal power capacity of 3983 MW (4000 MW nominal). [61]

  4. Pressurized water reactor - Wikipedia

    en.wikipedia.org/wiki/Pressurized_water_reactor

    A pressurized water reactor (PWR) is a type of light-water nuclear reactor. PWRs constitute the large majority of the world's nuclear power plants (with notable exceptions being the UK, Japan, India and Canada). In a PWR, water is used both as a neutron moderator and as coolant fluid for the reactor core.

  5. First-of-a-kind nuclear project is terminated in a blow to ...

    www.aol.com/news/first-kind-nuclear-project...

    The design that was certified by federal regulators is for a 50-megawatt, advanced light-water small modular nuclear reactor. The company is currently seeking certification for an upgraded 77 ...

  6. Generation III reactor - Wikipedia

    en.wikipedia.org/wiki/Generation_III_reactor

    The Advanced CANDU Reactor is a hybrid CANDU design that retains the heavy water moderator but replaces the heavy water coolant with conventional light water coolant, significantly reducing heavy water costs compared to traditional CANDU designs but losing the characteristic CANDU capability of using unenriched natural uranium as fuel. BARC ...

  7. Consortium for the Advanced Simulation of Light Water Reactors

    en.wikipedia.org/wiki/Consortium_for_the...

    The goal of CASL is to develop advanced computational models of light water reactors (LWRs) that can be used by utilities, fuel vendors, universities, and national laboratories to help improve the performance of existing and future nuclear reactors. [2] CASL was created in May 2010, and was the first energy innovation hub to be awarded. [3] [4]

  8. Advanced Test Reactor - Wikipedia

    en.wikipedia.org/wiki/Advanced_Test_Reactor

    The ATR is a pressurized light water reactor (LWR), using water as both coolant and moderator. The core is surrounded by a beryllium neutron reflector to concentrate neutrons on experiments, and houses multiple experiment positions as well. It operates at low temperature and pressure 71 °C (160 °F) and up to 2.69 MPa water pressure.

  9. Light Water Reactor Sustainability Program - Wikipedia

    en.wikipedia.org/wiki/Light_Water_Reactor...

    The Light Water Reactor Sustainability Program is a U.S. government research and development program. It is directed by the United States Department of Energy and is aimed at performing research and compiling data necessary to qualify for licenses to extend the life of America's current 104 electricity generating nuclear power plants beyond 60 years of life.