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Technical Paper

Intercomparison of Nonperturbing Techniques for Inferring the Reactivity of Fast Reactors

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Pages 67-74 | Published online: 13 May 2017

References

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  • A. R. BUHL, N. J. ACKERMANN, Jr., and R. C. KRYTER, “An Evaluation of the Asymmetric Source Technique for Determining Subcritical Reactivity in Fast Reactors,” Trans. Am. Nucl. Soc., 14, 43 (1971).
  • R. C. KRYTER, N. J. ACKERMANN, Jr., and A. R. BUHL, “Measurement of Subcriticality in Large Fast Reactors by Combining Noise and Multiplication Techniques,” Trans. Am. Nucl. Soc., 14, 42 (1971).
  • R. C. KRYTER, N. J. ACKERMANN, Jr., and A. R. BUHL, “Subcriticality Measurements in FTR-3: The Homogeneous Mockup of the Fast Test Reactor,” ORNL-TM-3715, Oak Ridge National Laboratory (1972).
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  • D. H. SHAFTMAN, “A Theoretical Formulation of Analysis of Deterministic Errors in Inverse-Kinetics Measurements of Reactivity in Subcritical Systems,” Applied Physics Division Annual Report, July 1, 1970 to June 30, 1971, ANL-7910, Argonne National Laboratory (1971).
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  • MARTIN BECKER and KARL S. QUISENBERRY, “Spatial Dependence of Pulsed Neutron Reactivity Measurements,” Neutron Dynamics and Control, CONF-650413, AEC Symposium Series 7, pp. 245–276 (October 1965).
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  • A. R. BUHL et al., “A User’s Manual for TASK 1: A Generalized One-Dimensional Transport and Diffusion Kinetics Code,” ORNL-TM-3811, Oak Ridge National Laboratory (1972).

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