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An Advanced Cold Moderator Using Solid Methane Pellets

机译:使用固体甲烷颗粒的晚期冷调节剂

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This paper reports developments of the pellet formation and transport technologies required for producing a liquid helium or hydrogen cooled methane pellet moderator. The Phase I USDOE SBIR project, already completed, demonstrated the production of 3mm transparent pellets of frozen methane and ammonia and transport of the pellets into a 40cc observation cell cooled with liquid helium. The methane pellets, formed at 72K, stuck together during the loading of the cell. Ammonia pellets did not stick and fell readily under vibration into a packed bed with a 60 percent fill fraction. A 60 percent fill fraction should produce a very significant increase in long-wavelength neutron production and advantages in shorter pulse widths as compared to a liquid hydrogen moderator.
机译:本文报告了生产液氦或氢气冷却甲烷颗粒调节剂所需的颗粒形成和运输技术的开发。我已完成的I阶段SBIR项目证明了3mm透明的冷冻甲烷和氨的透明颗粒,并将颗粒输送到用液氦冷却的40cc观察细胞中。在72k处形成的甲烷粒料,在电池的负载期间粘在一起。氨颗粒没有粘在振动中易于粘在填充床上,填充部分填充部分60%。与液体氢气调节剂相比,60%的填充部分应产生长波长中子生产和优于较短的脉冲宽度的显着增加。

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