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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >The optimization on neutronic performance of the granular spallation target by using low-density porous tungsten
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The optimization on neutronic performance of the granular spallation target by using low-density porous tungsten

机译:低密度多孔钨对粒状剥落靶中子性能的优化

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摘要

The concept of gravity-driven Dense Granular Target (DGT) has been proposed and tungsten granule is one of the candidate target materials. With the increase of DGT diameter, the source efficiency is significantly reduced, which is not conducive to the design of high-power. Low density porous tungsten particles are proposed as the target material of DGT instead of the natural tungsten. First, the neutronics of the bare target have been studied with porous tungsten granule density using Monte Carlo code. An ADS model was then set up to evaluate the neutron sources performance caused by density variation of porous tungsten granule. The results show that there is an optimal combination of tungsten granular density and target diameter to make the utmost of leakage neutrons. In the ADS driven by tungsten DGT, an appropriate density porous tungsten as the target material can effectively increase the source efficiency, reduce the beam requirement and the thermal deposition on the target.
机译:已经提出了重力驱动的致密颗粒靶(DGT)的概念,钨颗粒是候选靶材料之一。随着DGT直径的增加,光源效率大大降低,不利于大功率设计。提出使用低密度多孔钨颗粒代替天然钨作为DGT的靶材。首先,使用蒙特卡洛法研究了具有多孔钨颗粒密度的裸靶的中子学。然后建立一个ADS模型,以评估由多孔钨颗粒的密度变化引起的中子源性能。结果表明,存在钨颗粒密度和靶径的最佳组合,以最大限度地利用泄漏中子。在由钨DGT驱动的ADS中,适当密度的多孔钨作为靶材可以有效地提高源效率,减少束流需求以及在靶材上的热沉积。

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