Army Nuclear Power Program
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The Army Nuclear Power Program (ANPP) was a program of the United States Army to develop small pressurized water and
boiling water Boiling is the rapid vaporization of a liquid, which occurs when a liquid is heated to its boiling point, the temperature at which the vapour pressure of the liquid is equal to the pressure exerted on the liquid by the surrounding atmosphere. Ther ...
nuclear power reactors to generate electrical and space-heating energy primarily at remote, relatively inaccessible sites. The ANPP had several accomplishments, but ultimately it was considered to be "a solution in search of a problem." The U.S. Army Engineer Reactors Group managed this program and it was headquartered at
Fort Belvoir Fort Belvoir is a United States Army installation and a census-designated place (CDP) in Fairfax County, Virginia, United States. It was developed on the site of the former Belvoir plantation, seat of the prominent Fairfax family for whom Fai ...
, Virginia. The program began in 1954 and had effectively terminated by about 1977, with the last class of NPP operators graduating in 1977. Work continued for some time thereafter either for decommissioning of the plants or placing them into SAFSTOR (long term storage and monitoring before decommissioning). The current development of small modular reactors has led to a renewed interest in military applications.


Background

There was interest in the possible application of nuclear power to land-based military needs as early as 1952. A memo from the
Secretary of Defense A defence minister or minister of defence is a cabinet official position in charge of a ministry of defense, which regulates the armed forces in sovereign states. The role of a defence minister varies considerably from country to country; in so ...
, dated 10 February 1954, assigned the Army the responsibility for "developing nuclear power plants to supply heat and electricity at remote and relatively inaccessible military installations." The Secretary of the Army established the Army Nuclear Power Program and assigned it to the Corps of Engineers.''Army Nuclear Power Program: Past, Present, Future''. A briefing document prepared and presented to the Ad Hoc Study Group of the Army Scientific Advisory Panel, 10–11 February 1969 The
Atomic Energy Act of 1954 The Atomic Energy Act of 1954, 42 U.S.C. §§ 2011-2021, 2022-2286i, 2296a-2297h-13, is a United States federal law that covers for the development, regulation, and disposal of nuclear materials and facilities in the United States. It was an am ...
made the Atomic Energy Commission (AEC) responsible for R&D in the nuclear field, so that the ANPP then became a joint interagency 'activity' of the Department of the Army (DA) and the AEC. When the Atomic Energy Act was revised in 1954, Paragraph 91b authorized the
Department of Defense Department of Defence or Department of Defense may refer to: Current departments of defence * Department of Defence (Australia) * Department of National Defence (Canada) * Department of Defence (Ireland) * Department of National Defense (Philipp ...
to obtain special nuclear material for use in defense utilization facilities. The focus of the Army Nuclear Power Program was on power production facilities while the Naval Reactors Program concentrated on nuclear propulsion for submarines and ships. On 9 April 1954 the
Chief of Engineers The Chief of Engineers is a principal United States Army staff officer at The Pentagon. The Chief advises the Army on engineering matters, and serves as the Army's topographer and proponent for real estate and other related engineering programs. ...
established the US Army Engineer Reactors Group to perform the missions assigned by DA. Essentially, these missions were to: * conduct R&D, with the AEC, on nuclear power plant development; * operate the Corps of Engineers nuclear power plants; * carry out training in support of the plants; * provide technical support to other agencies as required; * develop programs for application of nuclear reactors to military needs. In a Department of the Army Approved Qualitative Materiel Development Objective for Nuclear Power Plants, dated 7 January 1965, these objectives were stated for the program: * Reduction or elimination of dependence on ossilfuel sources. * Reduction or elimination of logistic burden necessary to support conventional power plants. * Reliable operation. * Infrequent refueling and maintenance. * Reduced crew size, with ultimate goal of unattended operation. * Transportability, mobility, and reaction times compatible with the mission or equipment to be supported. * Improved cost-effectiveness. The AEC ultimately concluded that the probability of achieving the objectives of the Army Nuclear Power Program in a timely manner and at a reasonable cost was not high enough to justify continued funding of its portion of projects to develop small, stationary, and mobile reactors. Cutbacks in military funding for long-range research and development because of the Vietnam War led the AEC to phase out its support of the program in 1966. The costs of developing and producing compact nuclear power plants were so high that they could be justified only if the reactor had a unique capability and filled a clearly defined objective backed by DOD. After that, the Army's participation in nuclear power plant research and development efforts steadily declined and eventually stopped altogether.Pfeffer, Macon, ''Nuclear Power: An Option for the Army's Future'', Army Logistician, PB 700-01-5, Vol 33, Issue 5, Sept/Oct 2001, retrieved fro

on January 30, 2009


List of plants

Eight plants were constructed. Due to the requirement for a small physical size, all these reactors other than the MH-1A used highly enriched uranium ( Enriched uranium, HEU). The MH-1A had more space to work with, and more weight-carrying capacity, so this was a low-enrichment reactor; i.e., larger and heavier. The MH-1A was briefly considered for use in Vietnam, but the idea of anything nuclear in Vietnam was quickly rejected by the State Department. The plants are listed in order of their initial criticality. See the
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of photos in the next section. Sources for this data include the only known book on the ANPP, by Suid,Suid, L. H., ''The Army's Nuclear Power Program: The Evolution of a Support Agency'', Greenwood (1990), and a DOE document. * SM-1: 2 MW electric.
Fort Belvoir Fort Belvoir is a United States Army installation and a census-designated place (CDP) in Fairfax County, Virginia, United States. It was developed on the site of the former Belvoir plantation, seat of the prominent Fairfax family for whom Fai ...
, Virginia, Initial criticality April 8, 1957 (several months before the
Shippingport Reactor The Shippingport Atomic Power Station was (according to the US Nuclear Regulatory Commission) the world's first full-scale atomic electric power plant devoted exclusively to peacetime uses.Though Obninsk Nuclear Power Plant was connected to the M ...
) and the first
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nuclear power plant to be
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to an electrical grid. Used primarily for training and testing, rather than power generation for Ft. Belvoir. The plant was designed by the
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(renamed ALCO Products, in 1955), and was the first reactor developed under the Army Nuclear Power Program. See the SM-1 image gallery, below. This plant was a tri-service training facility, with both the US Navy and Air Force sending personnel to be trained on shore-based facilities (the Navy had a different stand-alone program for ship-based nuclear power, which is still in operation). The SM-1 and associated training facilities at Ft. Belvoir were the only training facility for shore-based military power plants. The plant cooled its condensers using the waters of the Potomac River. For about the first 10 years of its operation, the SM-1 unknowingly released tritium into the waters of the Chesapeake Bay, until the development of the Packard Tri-Carb detector, which was the first detector system capable of detecting the low-energy beta decay of tritium. The instrumentation in the SM-1 pre-dated the development of solid-state devices and used vacuum tubes. * SL-1:
Boiling water reactor A boiling water reactor (BWR) is a type of light water nuclear reactor used for the generation of electrical power. It is a design different from a Soviet graphite-moderated RBMK. It is the second most common type of electricity-generating nuc ...
, 200 kW electrical, 400 kW thermal for heating,
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, Idaho. Initial criticality August 11, 1958. The SL-1 was designed by the
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to gain experience in boiling water reactor operations, develop performance characteristics, train military crews, and test components. Combustion Engineering was awarded a contract by the AEC to operate the SL-1 and in turn employed the Army's military operating crew to continue running the plant. This BWR was specifically designed to power
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stations. : On January 3, 1961, the reactor was being prepared for restart after a shutdown of eleven days over the holidays. Maintenance procedures were in progress, which required the main central control rod to be manually withdrawn a few inches to reconnect it to its drive mechanism; at 9:01 p.m. this rod was suddenly withdrawn too far, causing SL-1 to go prompt critical instantly. In four milliseconds, the heat generated by the resulting enormous power surge caused water surrounding the core to begin to explosively vaporize. The water vapor caused a pressure wave to strike the top of the reactor vessel, causing water and steam to spray from the top of the vessel. This extreme form of
water hammer Hydraulic shock (colloquial: water hammer; fluid hammer) is a pressure surge or wave caused when a fluid in motion, usually a liquid but sometimes also a gas is forced to stop or change direction suddenly; a momentum change. This phenomenon com ...
propelled control rods, shield plugs, and the entire reactor vessel upwards. A later investigation concluded that the vessel had jumped and the upper control rod drive mechanisms had struck the ceiling of the reactor building prior to settling back into its original location. The spray of water and steam knocked two operators onto the floor, killing one and severely injuring another. One of the shield plugs on top of the reactor vessel impaled the third man through his groin and exited his shoulder, pinning him to the ceiling. The victims were Army Specialists John A. Byrnes (age 27) and Richard Leroy McKinley (age 22), and Navy
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Construction Electrician First Class (CE1) Richard C. Legg (age 26). : It was later established that Byrnes (the reactor operator) had lifted the rod and caused the excursion, Legg (the shift supervisor) was standing on top of the reactor vessel and was impaled and pinned to the ceiling, and McKinley, the trainee who stood nearby, was later found alive by rescuers. All three men succumbed to injuries from physical trauma; the radiation from the nuclear excursion would have given the men no chance of survival. : This was the only fatal incident at a US nuclear power reactor, which destroyed the reactor. This incident was important in the development of commercial power because future designs prevented the core from going critical with the removal of a single rod. * PM-2A: 2 MW electric, plus heating. Camp Century, Greenland. Initial criticality October 3, 1960. The first "portable" nuclear power reactor. Brought to Greenland in parts, assembled, operated, disassembled, shipped back to United States. The PM-2A in Camp Century was designed by the American Locomotive Company to demonstrate the ability to assemble a nuclear power plant from prefabricated components in a remote, arctic location. PM-2A operated at a
uranium-235 Uranium-235 (235U or U-235) is an isotope of uranium making up about 0.72% of natural uranium. Unlike the predominant isotope uranium-238, it is fissile, i.e., it can sustain a nuclear chain reaction. It is the only fissile isotope that exi ...
enrichment of 93 percent. It successfully powered Camp Century for three years. The pressure vessel was also used to investigate neutron embrittlement in carbon steel. This plant was shut down 1963–1964. However despite the reactor's successes, Project Iceworm was never fielded and Camp Century was later abandoned. *
ML-1 ML-1 was an experimental nuclear reactor built as part of the US Army Nuclear Power Program between 1961 and 1965. It was intended to provide truck-mounted nuclear power that could accompany troops from place to place and provide power to comma ...
: first closed cycle gas turbine. Initial criticality was on March 30, 1961. Designed for 300 kW, but only achieved 140 kW. Operated for only a few hundred hours of testing. The ML-1 was designed by Aerojet General Corporation to test an integrated reactor package that was transportable by military semi-trailers, railroad flatcars, and barges. This reactor was shut down in 1965. * PM-1: 1.25 MW electric, plus heating. Sundance Air Force Station, Wyoming. Owned by the Air Force, this pressurized water reactor was used to power a radar station. Initial criticality was on February 25, 1962. The PM-1 was designed by the Martin Company and provided electric power to the 731st Radar Squadron of the North American Air Defense Command (NORAD). This plant was shut down in 1968. PM-1 operated at a uranium-235 enrichment of 93 percent. * PM-3A: 1.75 MW electric, plus heating and desalinization.
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, Antarctica. Owned by the Navy. Initial criticality March 3, 1962, decommissioned 1972. The PM-3A, located at McMurdo Sound, Antarctica, was designed by the Martin Company to provide electric power and steam heating to the Naval Air Facility at McMurdo Sound. PM-3A operated at a uranium-235 enrichment of 93 percent. : The PM-3A (Portable, Medium-power, 3rd generation) was a plant installed to provide power for the McMurdo Base in Antarctica. During 1970–1971, it achieved a world-record power run. It was one of the first shore-based power plants to use solid-state equipment. The PM-3A was not operated by the Army, but was under the NAVFAC (Naval Facilities Engineering Command), the shore-based power division of the US Navy. Although the majority of the personnel were Navy, the PM-3A was a tri-service stationing. For 1970-1971, there was an Army sergeant and an Air Force sergeant stationed with the crew. The plant was air-cooled with the condensers and fan units running glycol.
Waste heat Waste heat is heat that is produced by a machine, or other process that uses energy, as a byproduct of doing work. All such processes give off some waste heat as a fundamental result of the laws of thermodynamics. Waste heat has lower utilit ...
was also used for desalination using vacuum flash distillation. The reactor was located in buried tanks in the ground. : The plant suffered from a multitude of problems, including a fire and coolant leakage. It was shut down in September 1972. After decommissioning, the plant was cut into pieces and transported to the US for burial. The soil surrounding the tanks had become radioactive, so it was also removed and transported to Port Hueneme Naval Base, California, where it was incorporated into asphalt pavement. * SM-1A: 2 MW electric, plus heating.
Fort Greely, Alaska Fort Greely is a census-designated place (CDP) in Southeast Fairbanks Census Area, Alaska, United States. It is home to the Fort Greely military installation. At the 2010 census the population was 539, up from 461 in 2000. Geography Fort Greely ...
. Initial criticality March 13, 1962. The SM-1A at Ft. Greely, Alaska, was designed by ALCO Products and was the first field facility developed under the Army Nuclear Power Program. This site was selected to develop construction methods in a remote, Arctic location, and study its economics compared with
fuel oil Fuel oil is any of various fractions obtained from the distillation of petroleum (crude oil). Such oils include distillates (the lighter fractions) and residues (the heavier fractions). Fuel oils include heavy fuel oil, marine fuel oil (MFO), b ...
systems in a remote area. This plant was shut down in 1972. SM-1A operated at a uranium-235 enrichment of 93 percent. In 2022, the Army Corps of Engineers awarded a $103 million contract to decommission and dismantle SM-1A. * MH-1A: 10 MW electric, plus fresh water supply to the adjacent base. Mounted on the ''Sturgis'', a barge (no propulsion systems) converted from a
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, and moored in the
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. Initial criticality at Ft. Belvoir (in Gunston Cove, off the Potomac River), January 24, 1967. It was the last of the eight plants to permanently cease operation. The MH-1A was designed by Martin Marietta Corporation. It remained moored at Gatun Lake in the Panama Canal from 1968 until 1977, when it was towed back to Ft. Belvoir for decommissioning. This reactor used low-enrichment uranium (LEU) in the range of 4 to 7 percent. It was moved to the
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in 1978 for
SAFSTOR SAFSTOR is a nuclear decommissioning method in which a nuclear power plant or facility governed by the United States Nuclear Regulatory Commission, is ''"placed and maintained in a condition that allows the facility to be safely stored and subsequ ...
. The MH-1A had an elaborate analog-computer-powered simulator installed at the Training Division, USAERG, Ft. Belvoir. The MH-1A simulator was obtained by Memphis State University Center for Nuclear Studies in the early 1980s, but was never restored or returned to operational service. Its dismantling was completed in March 2019. * MM-1: ~2.5 MW electric, Conceptualized but never built. Conceived as the "Military Compact Reactor". A truck mounted liquid metal cooled reactor, with shorter start up and shut down times. Requiring no shielding of Earth or exclusion zones to protect the operators from radiation. With its reactor core containing the energy equivalent of over 8 million pounds of
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. Envisioned to have higher power density; its power output meant for the first time the powerplant would weigh less than a
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generator of comparable output. While initially meant to power bases and field operations, the program was shifted to the Army's "Energy Depot Concept" to investigate the production of synthetic fuels. The reactor and associated trailers would produce liquid fuels for tanks, trucks, armored personnel carriers, and aircraft and drastically reduce the vulnerable petroleum logistical supply chain. The associated trailers would use chemical conversion processes to convert the reactor's waste heat energy into useful fuels using elements universally found in air and water (
hydrogen Hydrogen is the chemical element with the symbol H and atomic number 1. Hydrogen is the lightest element. At standard conditions hydrogen is a gas of diatomic molecules having the formula . It is colorless, odorless, tasteless, non-to ...
,
oxygen Oxygen is the chemical element with the symbol O and atomic number 8. It is a member of the chalcogen group in the periodic table, a highly reactive nonmetal, and an oxidizing agent that readily forms oxides with most elements ...
,
nitrogen Nitrogen is the chemical element with the symbol N and atomic number 7. Nitrogen is a nonmetal and the lightest member of group 15 of the periodic table, often called the pnictogens. It is a common element in the universe, estimated at se ...
and
carbon Carbon () is a chemical element with the symbol C and atomic number 6. It is nonmetallic and tetravalent—its atom making four electrons available to form covalent chemical bonds. It belongs to group 14 of the periodic table. Carbon ma ...
), potentially producing
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,
liquid hydrogen Liquid hydrogen (LH2 or LH2) is the liquid state of the element hydrogen. Hydrogen is found naturally in the molecular H2 form. To exist as a liquid, H2 must be cooled below its critical point of 33  K. However, for it to be in a fully l ...
and/or
ammonia Ammonia is an inorganic compound of nitrogen and hydrogen with the formula . A stable binary hydride, and the simplest pnictogen hydride, ammonia is a colourless gas with a distinct pungent smell. Biologically, it is a common nitrogenous ...
. Key to the codes: * First letter: S – stationary, M – mobile, P – portable. * Second letter: H – high power, M – medium power, L – low power. * Digit: Sequence number. * Third letter: A indicates field installation. Of the eight built, six produced operationally useful power for an extended period. Many of the designs were based on United States Naval reactors, which were proven compact reactor designs.


Timeline


Significant accomplishments

References for this list include the DOE document, the Suid book, and the Briefing Book. * Detailed designs for pressurized and boiling water reactors, as well as gas-cooled and liquid-metal cooled reactors. * First nuclear power plant with a containment structure (SM-1) * First use of stainless steel for fuel element cladding (SM-1) * First nuclear power plant in the US to supply electrical power to a commercial grid (SM-1) * First in-place reactor vessel annealing, using nuclear heat source, in the US (SM-1A) * First steam generator replacement in US (SM-1A) * First pressure-suppression containment (SM-1A) * First operational boiling-water reactor power plant (SL-1) * First portable, pre-packaged, modular nuclear power plant to be installed, operated, and removed (PM-2A) * First use of nuclear power for desalinization (PM-3A) * First land-transportable, mobile nuclear power plant (ML-1) * First nuclear-powered closed-loop (Brayton) gas turbine cycle (ML-1) * First floating (barge-mounted) nuclear power plant (MH-1A)


Nuclear power plant operator training

The Nuclear Power Plant Operator Course (NPPOC) was conducted at Ft. Belvoir. Applicants for the program were enlisted men who had to commit to serving a minimum of two years after completion of training. The requirements for admission to the NPPOC included aptitude test scores at least as stringent as those required for admission to Officer Candidate School. Over 1,000 Nuclear Power Plant operators were licensed between the years 1958 through 1977. The NPPOC was an intense and academically challenging year-long course.


See also

* Nuclear Reactor Operator Badge *
Nuclear power plant A nuclear power plant (NPP) is a thermal power station in which the heat source is a nuclear reactor. As is typical of thermal power stations, heat is used to generate steam that drives a steam turbine connected to a generator that produces ...
*
List of nuclear reactors A ''list'' is any set of items in a row. List or lists may also refer to: People * List (surname) Organizations * List College, an undergraduate division of the Jewish Theological Seminary of America * SC Germania List, German rugby unio ...
*
Aircraft Nuclear Propulsion The Aircraft Nuclear Propulsion (ANP) program and the preceding Nuclear Energy for the Propulsion of Aircraft (NEPA) project worked to develop a nuclear propulsion system for aircraft. The United States Army Air Forces initiated Project NEPA on ...
* Project Pele, a similar US project in the 2020s


References


External links


PM-3a at McMurdo, Antarctica

Army Nuclear Power Program, 1954–1976 Virtual Exhibit
at the US Army Corps of Engineers




''Energy Depot Concept'' SAE SP-263
Society of Automotive Engineers
U.S. Army documentary film showing the construction of Camp Century (Greenland) and the shipment and construction of PM-2A
posted by DocumentaryTube.net. The arrival occurs at 16:11 in the 27-minute film. {{U.S. Nuclear Plants Defunct nuclear reactors Military nuclear reactors Nuclear technology in the United States Nuclear Power Program