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Development of a high power neutron producing lithium target for Boron Neutron Capture Therapy

机译:生产硼中子捕获疗法高功率中子锂靶的发展

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A neutron producing lithium target for a novel, accelerator based cancer treatment requires the removal of up to 6kW of heat produced by 1-2mA beam of 2.3 - 3.0MeV protons. This paper presents the results from computer simulations which show that, using submerged jet cooling, a solid lithium target can be maintained up to 1.6mA, and a liquid target up to 2.6mA, assuming a 3.0MeV proton beam. The predictions from the simulations are verified through the use of an experimental heat transfer test-rig and the results from a number of metallurgical studies made to select a compatible substrate material for the lithium are reported.
机译:产生新型的促进剂的癌症治疗中的中子锂靶,需要除去高达6kW的热量,由1-2MA梁为2.3 - 3.0mev质子。本文介绍了计算机模拟的结果,表明,使用浸没式喷射冷却,固体锂靶可以保持高达1.6mA,液体目标高达2.6mA,假设3.0mev质子梁。通过使用实验传热试验台来验证模拟的预测,并报道了许多冶金研究的结果,以选择用于选择用于锂的相容的基底材料。

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