Browsing Department of Nuclear Engineering by Title
Now showing items 34-53 of 262
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Boiling heat transfer for high velocity flow of highly subcooled water
([Cambridge, Mass. : Dept. of] Nuclear Engineering, Massachusetts Institute of Technology, [1999], 1999) -
BWR depletion methods using quandry and the response matrix technique of assembly homogenization
([Cambridge, Mass. : Massachusetts Institute of Technology, Dept. of Nuclear Engineering, 1981], 1981) -
CHD : a two-dimensional, multigroup, rectangular geometry, cubic hermite, finite element diffusion code
(Cambridge, Mass. : Dept. of Nuclear Engineering, Massachusetts Institute of Technology, [1975], 1975) -
The Chernobyl accident revisited : source term analysis and reconstruction of events during the active phase
(Cambridge, Mass. : Dept. of Nuclear Engineering, Massachusetts Institute of Technology, 1994, 1994) -
Choice of discount rate for cost levelization
(Cambridge, Mass. : [Dept. of] Nuclear Engineering, Massachusetts Institute of Technology, [1991], 1991) -
A coarse-mesh nodal diffusion method based on response matrix considerations
(Cambridge, Mass. : Dept. of Nuclear Engineering, Massachusetts Institute of Technology, [1977], 1977)The overall objective of this thesis is to develop an economical computational method for multidimensional transient analysis of nuclear power reactors. Specifically, the application of nodal methods based on the multigroup ... -
Comments on the calculation of thermodynamic and transport properties of helium
(Cambridge, [Mass.] : Dept. of Nuclear Engineering, Massachusetts Institute of Technology, 1974, 1974) -
A comparative assessment of the LMFBR and advanced converter fuel cycles with quantification of relative diversion resistance
(Cambridge, Mass. : Massachusetts Institute of Technology [Dept. of Nuclear Engineering], 1979, 1979) -
Computational and visualization techniques for Monte Carlo based SPECT
(Cambridge, Mass. : Massachusetts Institute of Technology, Dept. of Nuclear Engineering, [1993], 1993)Nuclear medicine imaging systems produce clinical images that are inherently noisier and of lower resolution than images from such modalities as MRI or CT. One method for improving our understanding of the factors that ... -
Computer simulation of neutron capture therapy
(Cambridge, Mass. : Massachusetts Institute of Technology, Dept. of Nuclear Engineering, [1967], 1967)Analytical methods are developed to simulate on a large digital computer the production and use of reactor neutron beams f or boron capture therapy of brain tumors. The simulation accounts for radiation dose distributions ... -
Computer techniques for sensor validation during EBR-II natural circulation
([Cambridge, Mass.] : Dept. of Nuclear Engineering, Massachusetts Institute of Technology, [1984], 1984) -
Core design for a small HTGR
(Cambridge, Mass. : Dept. of Nuclear Engineering, Massachusetts Institute of Technology, 1975, 1975) -
A core reload pattern and composition optimization methodology for pressurized water reactors
(Cambridge, Mass. : Dept. of Nuclear Engineering, Massachusetts Institute of Technology, [1985], 1985)The primary objective of this research was the development of a comprehensive, rapid and conceptually simple methodology for PWR core reload pattern and fuel composition optimization, capable of systematic incorporation ... -
Data analysis : operating crew characteristics and interactions during steam generator tube rupture simulation
(Cambridge, MA : Nuclear Engineering Dept., Massachusetts Institute of Technology, 1990, 1990)This report provides an analysis of the data collected during a one-month visit to a 2-unit, non-U.S. PWR. The data consist of results from interviews (largely with plant operators and former shift engineers) and from ... -
The decontamination of radioactive ion exchange resins using neutral salts as elutriants
([Cambridge, Mass.] Massachusetts Institute of Technology, Dept. of Nuclear Engineering, 1971, 1971) -
Delayed neutron assay to test sorbers for uranium-from-seawater applications
(Cambridge, Mass. : Massachusetts Institute of Technology, Energy Laboratory, 1982, 1982) -
Demonstration of methods for analytical measurement of natural circulation flow in EBR-II
([Cambridge, Mass.] : Dept. of Nuclear Engineering, Massachusetts Institute of Technology, 1986, 1986) -
Derivation of the diagonal 0-weighting method
([Cambridge, Mass.] : Nuclear Engineering, Massachusetts Institute of Technology, 1987, 1987) -
Description of the computer code 2DTD
(Cambridge, Mass. : Massachusetts Institute of Technology, Dept. of Nuclear Engineering, [1976], 1976) -
Description of the two-dimensional nodal codes "NRMS," a multigroup static code, and "NRMT," a one- and two-group transient code for solution of the neutron diffusion equation in rectangular geometry
(Cambridge, Mass. : Massachusetts Institute of Technology, Dept. of Nuclear Engineering, [1977], 1977)