共查询到18条相似文献,搜索用时 78 毫秒
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为了研究强流脉冲束流在静电加速管中的传输, 采用矩阵法分析了非强流脉冲束流与强流脉冲束流在静电加速管中的传输矩阵, 编写了束流在静电加速管等元件中传输的计算程序ACCT。 用优化方法实现给定的光学条件, 用迭代方法计算强流脉冲束流的空间电荷效应对束流传输的影响以获得自洽解。 在不同束流流强条件下, 利用ACCT、TRACE-3D和TRANSPORT等程序进行了模拟计算, 并对模拟结果进行了比较分析。 模拟结果表明, 提高加速电压比, 可以增强静电加速管的聚焦能力、 减少束流损失和提高传输效率。To study intense pulsed beam transfer in electrostatic accelerate tube, the matrix method was applied to analyze the transport matrixes in electrostatic accelerate tube of non-intense pulsed beam and intense pulsed beam, and a computer code was written for the intense pulsed beam transporting in electrostatic accelerate tube. Optimization techniques were used to attain the given optical conditions and iteration procedures were adopted to compute intense pulsed beam for obtaining self-consistent solutions in this computer code. The calculations were carried out by using ACCT, TRACE-3D and TRANSPORT for different beam currents, respectively. The simulation results show that improvement of the accelerating voltage ratio can enhance focusing power of electrostatic accelerate tube, reduce beam loss and increase the transferring efficiency. 相似文献
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为计算强流脉冲束在螺旋管透镜6维相空间中的非线性传输,用Visual Fortran 6.5语言设计了一个计算程序,计算由漂浮空间、螺旋管透镜等元件组成的束流光学系统。程序在计算非强流脉冲束流的线性传输时,粒子的轨迹通过矩阵的直接相乘计算得出;程序在计算强流脉冲束流的非线性传输时,需要考虑束流中的空间电荷效应对束流传输的影响,在束流运动过程中,空间电荷场也在不断地变化,而且粒子运动的轨迹与空间电荷势又是相互依赖的,因此需要求得一个自洽的解,先把元件分成若干均等的区间,把电流分成若干等份,后采用束流电流迭代与元件区间迭代的计算方法。程序运行结束时,横向和纵向相图以及束流光学系统的束流包络线可以在微机屏幕上直观地显示出来。 相似文献
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用Lie代数方法分析了强流直流柬在螺线管透镜中的传输,考虑了两种情况:一种情况是外磁场力大于空间电荷力,另一种情况是外磁场力小于空间电荷力.得到两种情况下的传输矩阵.分析结果编制成了程序,并计算了ECR离子源之后的束流传输系统. 相似文献
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兰州大学设计研发的ZF-400强流中子发生器设计D-T中子产额6×1012 n/s,主要由ECR离子源、低能束流传输线(LEBT)、加速管、旋转靶等部分组成。LEBT负责将从离子源引出的束流进行分析聚焦并注入到加速管中。LEBT对束流的聚焦及分析的好坏程度决定了加速管中束流的损失程度、中子的产额以及靶的寿命。本工作就该强流中子发生器所需的低能传输线进行了设计。使用螺线管、分析磁铁和四极透镜组合的方案。利用TRACK软件对此方案进行模拟,得到符合要求的束流线及元件的参数。用TraceWin进行了验证模拟,验证结果符合要求。另外,通过软件模拟确定了杂质离子损失的位置,据此设计了束流管道冷却方案。通过模拟发现,这种透镜的组合方式可以让整个LEBT以较低的功率获得低损失、高纯度的打靶束流。The ZF-400 Intense Neutron Generator, which is designed by Lanzhou University with an expected neutron yield of 6×1012 n/s, is consist of ECR ion source, low energy beam transport (LEBT) line, accelerating tube and rotating target. The beam extracted from ECR source is analyzed and focused through LEBT, then, the beam is introduced into the accelerating tube. The focus and analysis ability of LEBT is very important for the beam loss, neutron yield and target's life. A LEBT line for intense neutron generator is designed in this paper, the project consisted of a solenoid, a bend magnet and three quadrupole lens. The qualified LEBT and its parameters have been got through the simulation with TRACK code. Then TraceWin program was employed to check this simulation and the result satisfied our requirement. Besides, the loss position of impurity ions was known through the simulation, and a project of beam line's cooling system was designed according to this result. Through the simulation, we find the optimal lens combination plan which can obtain lower beam loss and higher beam purity at low running power of LEBT. 相似文献
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I. D. Rubtsova L. V. Vladimirova N. S. Edamenko A. B. Goncharova 《Physics of Atomic Nuclei》2019,82(11):1527-1531
Longitudinal beam dynamics is investigated in a traveling-wave field with variable synchronous phase assumed to be a control function. The dynamic controlled process is considered to be a complex of synchronous particle motion and the motions of particles of a beam. In generalization, the model is represented by a system of integro-differential equations. The problem of joint optimization of program motion and the ensemble of perturbed motions is formulated. Numerical simulation of beam dynamics is performed; the example of optimization is considered. 相似文献
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Wang Z. Gong Y. Wei Y. Duan Z. Gong H. Lu Z. Yue L. Yin H. Xu J. Li Y. Liu P. Park G.-S. 《IEEE transactions on plasma science. IEEE Nuclear and Plasma Sciences Society》2010,38(1):32-38
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30MeV医用回旋加速器束流输运线上旋转扫描磁铁的研制 总被引:1,自引:0,他引:1
加速器引出束流分布一般都是高斯分布, 而在束流应用中需要更多的是均匀分布的束流. 目前国内研究已经实现了束流的均匀分布, 但事实上这些束流的均匀度不够理想. 因此, 重点介绍了能够使束流实现高均匀分布的旋转扫描磁铁的研制过程, 在理论推敲和实践检测的基础上充分证实: 通过旋转扫描磁铁的作用, 束流可以在目标靶上完全实现高均匀分布. 这项技术在国内实属首创, 其性能已经达到国际同类磁铁的先进水平. 相似文献
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针对基于北京正负电子对撞机的慢正电子强束流系统对输运磁场的设计要求,本文对不同规格的磁场输运线圈模型、长螺线管端口处磁场的补偿以及地磁场和弯管道对正电子束流的影响等进行了计算,提出适用于本系统传输慢正电子束流的输运磁场分布、补偿线圈、调整线圈的加工参数,计算表明,系统的总体磁场不均匀度小于10髎.实际运行束流测试表明,所设计的磁场系统能够很好的将慢正电子束流输运到约16m远的样品测量室,慢正电子束斑尺寸基本没有变化,满足慢正电子束流系统的设计要求. 相似文献