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首页> 外文期刊>Progress in Nuclear Energy >DESIGN OF PARTICLE BED REACTORS FOR THE SPACE NUCLEAR THERMAL PROPULSION PROGRAM
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DESIGN OF PARTICLE BED REACTORS FOR THE SPACE NUCLEAR THERMAL PROPULSION PROGRAM

机译:空间核热推进程序颗粒床反应器的设计

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This paper describes the design for the Particle Bed Reactor (PBR) that we considered for the Space Nuclear Thermal Propulsion (SNTP) Program. The methods of analysis and their validation are outlined first. Monte Carlo methods were used for the physics analysis, several new algorithms were developed for the fluid dynamics, heat transfer and transient analysis; and commercial codes were used for the stress analysis. We carried out a critical experiment, prototypic of the PBR to validate the reactor physics; blowdown experiments with beds of prototypic dimensions were undertaken to validate the power-extraction capabilities from particle beds. In addition, materials and mechanical design concepts for the fuel elements were experimentally validated. Four PBR rocket reactor designs were investigated parametrically. They varied in power from 400 MW to 2000 MW, depending on the mission's goals. These designs all were characterized by a negative prompt coefficient, due to Doppler feedback, and a moderator feedback coefficient which varied from slightly positive to slightly negative. In all practical designs, we found that the coolant worth was positive, and the thrust/weight ratio was greater than 20.
机译:本文介绍了我们为太空核热推进(SNTP)计划考虑的粒子床反应堆(PBR)的设计。首先概述了分析方法及其验证。蒙特卡罗方法用于物理分析,为流体动力学,传热和瞬态分析开发了几种新算法;和商业代码用于应力分析。我们进行了一项关键的实验,即PBR的原型,以验证反应堆的物理特性。进行了具有原型尺寸床的排污实验,以验证颗粒床的功率提取能力。此外,燃料元件的材料和机械设计概念已通过实验验证。对四种PBR火箭反应堆设计进行了参数研究。它们的功率从400兆瓦到2000兆瓦不等,具体取决于任务的目标。由于多普勒反馈,这些设计都具有负的瞬态系数和缓和的反馈系数,其系数从略为正变为略为负。在所有实际设计中,我们发现冷却液价值为正,推力/重量比大于20。

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