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首页> 外文期刊>Pramana >Optimization studies of photo-neutron production in high-Z metallic targets using high energy electron beam for ADS and transmutation
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Optimization studies of photo-neutron production in high-Z metallic targets using high energy electron beam for ADS and transmutation

机译:高能金属束用于ADS和and变的高Z金属靶中光中子产生的优化研究

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Monte Carlo calculations have been performed using MCNP code to study the optimization of photo-neutron yield for different electron beam energies impinging on Pb, W and Ta cylindrical targets of varying thickness. It is noticed that photo-neutron yield can be increased for electron beam energies ≥100 MeV for appropriate thickness of the target. It is also noticed that it can be maximized by further increasing the thickness of the target. Further, at higher electron beam energy heat gradient in the target decreases, which facilitates easier heat removal from the target. This can help in developing a photo-neutron source based on electron LINAC by choosing appropriate electron beam energy and target thickness to optimize the neutron flux for ADS, transmutation studies and as high energy neutron source etc. Photo-neutron yield for different targets, optimum target thickness and photo-neutron energy spectrum and heat deposition by electron beam for different incident energy is presented.
机译:已经使用MCNP代码进行了蒙特卡洛计算,以研究不同电子束能量撞击厚度不同的Pb,W和Ta圆柱靶上的光中子产率的优化。注意,对于适当厚度的靶,对于≥100 MeV的电子束能量,可以提高光中子产率。还应注意,可以通过进一步增加靶材的厚度来使其最大化。此外,在更高的电子束能量下,靶中的热梯度减小,这有利于更容易地从靶中去除热量。通过选择合适的电子束能量和目标厚度来优化ADS 、,变研究以及作为高能中子源等的中子通量,这可以帮助开发基于电子LINAC的光中子源。不同目标的光中子产率,最优给出了目标厚度和光中子能谱以及不同入射能量下电子束的热沉积。

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