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利用布鲁克海文医学研究反应堆中的235U裂变板设计高通量超热中子束。

Design of a high-flux epithermal neutron beam using 235U fission plates at the Brookhaven Medical Research Reactor.

作者信息

Liu H B, Brugger R M, Rorer D C, Tichler P R, Hu J P

机构信息

Medical Department, Brookhaven National Laboratory, Upton, New York 11973.

出版信息

Med Phys. 1994 Oct;21(10):1627-31. doi: 10.1118/1.597268.

Abstract

Beams of epithermal neutrons are being used in the development of boron neutron capture therapy for cancer. This report describes a design study in which 235U fission plates and moderators are used to produce an epithermal neutron beam with higher intensity and better quality than the beam currently in use at the Brookhaven Medical Research Reactor (BMRR). Monte Carlo calculations are used to predict the neutron and gamma fluxes and absorbed doses produced by the proposed design. Neutron flux measurements at the present epithermal treatment facility (ETF) were made to verify and compare with the computed results where feasible. The calculations indicate that an epithermal neutron beam produced by a fission-plate converter could have an epithermal neutron intensity of 1.2 x 10(10) n/cm2.s and a fast neutron dose per epithermal neutron of 2.8 x 10(-11) cGy.cm2/nepi plus being forward directed. This beam would be built into the beam shutter of the ETF at the BMRR. The feasibility of remodeling the facility is discussed.

摘要

超热中子束正被用于癌症硼中子俘获疗法的研发。本报告描述了一项设计研究,其中使用235U裂变板和慢化剂来产生一束超热中子束,其强度高于且质量优于布鲁克海文医学研究反应堆(BMRR)目前使用的束流。蒙特卡罗计算用于预测所提议设计产生的中子和伽马通量以及吸收剂量。在当前的超热治疗设施(ETF)进行了中子通量测量,以便在可行的情况下与计算结果进行验证和比较。计算表明,由裂变板转换器产生的超热中子束可能具有1.2×10(10) n/cm2.s的超热中子强度,每超热中子的快中子剂量为2.8×10(-11) cGy.cm2/nepi,并且是向前定向的。该束流将被建造在BMRR的ETF束流快门内。还讨论了改造该设施的可行性。

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