Bettis Atomic Power Laboratory
Bettis Atomic Power Laboratory is a U.S. Government-owned research and development facility in the Pittsburgh suburb of West Mifflin, Pennsylvania, that works exclusively on the design and development of nuclear power for the U.S. Navy. It was one of the leaders in creating the nuclear navy.The laboratory is part of the Naval Nuclear Propulsion Program, a joint U.S Navy-Department of Energy program responsible for the research, design, construction, operation and maintenance of U.S. nuclear-powered warships.
The laboratory was founded in 1949 on the site of the former Bettis Field, named after Cyrus Bettis. It covers approximately . From the Lab's founding until 1998, it was run by Westinghouse Electric Corporation. Bechtel Corporation won the contract to run the laboratory on September 19, 2008 and assumed operation on February 1, 2009, first under its subsidiary Bechtel Bettis, Inc., later under Bechtel Marine Propulsion Corporation. The contract changed hands again when Fluor Corporation, as their subsidiary Fluor Marine Propulsion, LLC won the contract to run the laboratory on July 12, 2018 and assumed operations on October 1, 2018.
The laboratory developed Oak Ridge National Laboratory's original design of the pressurized water reactor (PWR) for operational naval use. It built the nuclear propulsion plants for the first U.S. nuclear submarines and surface ships including , , , and .
Westinghouse's Nuclear Power Division adapted the PWR design for commercial use and built the first commercial nuclear power plant in the United States, the Shippingport Power Plant in the west hills of Pittsburgh.
The laboratory had two supercomputers listed on the 26th TOP500 List (November 2005). Ranked 97 a 1,090 processor Opteron system and ranked 405 a 536 processor Itanium 2 system.
The laboratory is also home to the U.S. Navy's Bettis Reactor Engineering School. The school provides a post-graduate certificate program in nuclear engineering with a focus on nuclear reactor design, construction, and operations. It is open only to naval personnel and Bettis engineers.
The laboratory had been chosen to develop the Project Prometheus nuclear power source for the JIMO (Jupiter Icy Moons Orbiter) project, however, funding for this program was cancelled in the fall of 2005. Provided by Wikipedia
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POST-IRRADIATION EVALUATION OF A PLATE-TYPE UO$sub 2$ FUEL ELEMENT
Published 1963“…Bettis Atomic Power Laboratory…”
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Mercapto-based coupling agent for improved thermophotovoltaic device back surface reflector adhesion and reflectance
Published 2016“…Bettis Atomic Power Laboratory…”
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BETTIS TECHNICAL REVIEW. REACTOR METALLURGY
Published 1959“…Bettis Atomic Power Laboratory…”
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High pressure low temperature hot pressing method for producing a zirconium carbide ceramic
Published 2017“…Bettis Atomic Power Laboratory…”
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Manually operated small envelope scanner system
Published 2017“…Bettis Atomic Power Laboratory…”
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The spectral emittance and stability of coatings and textured surfaces for thermophotovoltaic (TPV) radiator applications
Published 2000“…Bettis Atomic Power Laboratory…”
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A new assessment of RELAP5-3D using a General Electric level swell problem
Published 2000“…Bettis Atomic Power Laboratory…”
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The fracture strength of plate and tubular forms of monolithic silicon carbide (SiC) produced by chemical vapor deposition (CVD)
Published 2000“…Bettis Atomic Power Laboratory…”
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Thickness effects on the plastic collapse of perforated plates with triangular penetration patterns
Published 2000“…Bettis Atomic Power Laboratory…”
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A coupled RELAPS-3D/CFD methodology with a proof-of-principle calculation
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The hardness, adhesion, and wear resistance of coatings developed for cobalt-base alloys
Published 2000“…Bettis Atomic Power Laboratory…”
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12
Dry patch stability of shear driven liquid film
Published 2000“…Bettis Atomic Power Laboratory…”
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13
Naval Reactors Facility environmental monitoring report, calendar year 2000
Published 2001“…Bettis Atomic Power Laboratory…”
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Bettis Atomic Power Laboratory. Bettis-Pittsburgh Site environmental summary report
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15
The Effect of Nodalization on the Accuracy of the Finite Difference Solution of the Transient Conduction Equation.
Published 2000“…Bettis Atomic Power Laboratory…”
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16
Visual Measurements of Droplet Size in Gas Liquid Annular Flow
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17
Qualification of a Method to Calculate the Irrecoverable Pressure Loss in High Reynolds Number Piping Systems
Published 2002“…Bettis Atomic Power Laboratory…”
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18
Diffusion bonding of silicon carbide using iridium and hermetic silicon carbide-iridium bonds
Published 2019“…Bettis Atomic Power Laboratory…”
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Two-Phase Flow Pressure Drop of High Quality Steam
Published 2001“…Bettis Atomic Power Laboratory…”
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The use of active learning strategies in the instruction of Reactor Physics concepts
Published 2000“…Bettis Atomic Power Laboratory…”
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