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1.
磁质子反冲谱仪(MPR)是测量惯性约束聚变(ICF)实验和高功率聚变装置中子能谱的一种新型高性能诊断仪器,磁分析系统是其核心部分。通过2维束流输运和3维粒子输运模拟完成了紧凑型MPR谱仪磁分析系统的设计,对系统参数及系统性能进行了分析,分别根据能量分辨力、探测效率和计数率优先原则提出3种系统设计方案。结果表明:磁分析系统在1.5%~3.0%的能量分辨力范围达到10-5~10-4量级的探测效率,结构紧凑,符合MPR谱仪的设计目标。  相似文献   

2.
磁质子反冲谱仪(MPR)是测量惯性约束聚变(ICF)实验和高功率聚变装置中子能谱的一种新型高性能诊断仪器,磁分析系统是其核心部分。通过2维束流输运和3维粒子输运模拟完成了紧凑型MPR谱仪磁分析系统的设计,对系统参数及系统性能进行了分析,分别根据能量分辨力、探测效率和计数率优先原则提出3种系统设计方案。结果表明:磁分析系统在1.5%~3.0%的能量分辨力范围达到10-5~10-4量级的探测效率,结构紧凑,符合MPR谱仪的设计目标。  相似文献   

3.
用于中子能谱测量的反冲质子磁谱仪   总被引:1,自引:0,他引:1       下载免费PDF全文
根据神光-Ⅲ原型内爆实验条件下初级中子能谱诊断的要求,提出了反冲质子磁谱仪原型的设计方案,并通过蒙特卡罗程序Geant4对设计方案进行了仿真模拟。该质谱仪的测量能区在6~30 MeV,测量产额范围大于1012,能够测量内爆实验的全中子能谱。模拟结果表明:设计的谱仪对于14 MeV的中子探测效率大于10-11,能量分辨达到1%,信噪比大于10,满足神光-Ⅲ原型装置内爆实验离子温度诊断的要求。  相似文献   

4.
祁建敏  周林  蒋世伦  张建华 《物理学报》2013,62(24):245203-245203
为多种复杂环境下的稳态和脉冲DT聚变中子能谱测量建立了一种灵敏度优化反冲质子磁谱仪. 使用成像板和同位素α源测量了谱仪的反冲质子能量-位置投影关系. 利用稳态加速器中子源平台、通过单粒子计数方法结合三维带电粒子输运程序模拟,研究了谱仪脉冲中子灵敏度能量响应. 通过高探测效率参数设置使谱仪对DT中子的探测效率达到2×10-5 cm2水平,从而在较弱中子源上获得了较高统计精度实验数据. 程序模拟结果与谱仪α粒子刻度和DT中子标定实验结果取得了良好的一致性,可由此发展精细解谱技术,以提高脉冲中子能谱测量的灵敏度和能量分辨. 关键词: 聚变中子能谱 磁反冲质子 脉冲中子灵敏度 粒子输运  相似文献   

5.
6.
氘氚聚变中子发生器旋转氚靶传热特性研究   总被引:1,自引:0,他引:1       下载免费PDF全文
王刚  于前锋  王文  宋钢  吴宜灿 《物理学报》2015,64(10):102901-102901
强流氘氚中子发生器可用于模拟聚变堆中子环境, 对于开展聚变堆包层材料相关实验研究具有重要意义. 本文提出了一种用于1012-1量级氘氚中子发生器HINEG (high intensity neutron generator)的旋转氚靶系统设计方案, 并对其技术难点和强化传热方法进行了介绍. 为考查该氚靶系统的传热特性, 利用Computational Fluid Dynamics方法对冷却水层厚度、冷却水流速和氚靶系统旋转速度对靶面冷却的影响进行了分析, 并对不同热功率密度下靶面的传热过程进行了研究. 结果显示, 大的水层厚度、大的冷却水流速和高的靶系统旋转速度有利于靶面的冷却, 但水层厚度和水流速的变化对靶面传热影响较小. 一定条件下靶面所承受的热功率密度不能超过某个限值.  相似文献   

7.
塑料闪烁探测器氘氚中子灵敏度标定   总被引:4,自引:3,他引:4  
为了测量LF-12装置激光聚变D-T中子产额,我们通过NS-200加速器和脉冲中子管对实验所用几个塑料闪烁探测器的D-T中子灵敏度进行了标定,给出了各探测器在不同条件下的D-T中子灵敏度值。加速器和脉冲中子管两种方法的测量误差分别为±13%和±50%,两种标定结果在误差范围内是一致的。  相似文献   

8.
介绍了一种基于反冲质子法和磁分析技术的新型DT聚变中子谱仪, 能够以高信噪比对9—17MeV的中子能谱进行精确测量, 适用于稳态及脉冲条件下的等离子体温度(Ti)和燃料面密度(<ρR)的诊断, 对14 MeV的初级DT中子具有约4%的能量分辨率和约10-8的探测效率。谱仪的磁分析系统使用高性能钕铁硼二极永磁铁建造, 焦平面上使用CR-39固体径迹探测器测量反冲质子的位置分布。使用239Pu α源对磁分析系统进行了实验研究,并建立了配套的粒子输运模拟程序。 结合实验和程序模拟结果,使用蒙特卡罗软件模拟分析了谱仪整体性能。 谱仪结构紧凑、性能良好且适用于稳态及脉冲辐射场,可望在未来的聚变研究中得到有效应用。 Design of a novel spectrometer for measurements of neutrons in the energy range 9—17 MeV has been proposed. Based on proton recoil method and magnetic analyzing technigue, the spectrometer can be used to determine DT fuel areal density(<ρR) and ion temperature under steady state and pulsed radiation field. The detection efficiency is about 10-8 for measuring 14 MeV neutrons with an energy resolution of about 4%. A neodymium iron boron permanent dipole was used for the magnetic analyzing system and CR-39 track detectors were used in the focal plane. The system has been tested with 239Pu α suorce and a corresponding particle transport simulation program has been worked out. Performance of the spectrometer was investigated with Monte Carlo simulation, experiment data and the transport simulation. Due to its good performance, compact structure,and availability for both steady state and pulsed radiation field, the spectrometer can be effectively used for fusion research in the future.  相似文献   

9.
本文利用LARED-S程序模拟了等密度和等压力条件下压缩氘氚球的热核反应燃烧过程.对于等密度模型,模拟了两个具体算例,与国外计算结果进行了比较,验证了程序的可靠性.对于等压力模型,利用数值模拟给出了热核反应燃烧与压缩氘氚球初始状态之间的关系曲线,分析发现,氘氚装量、压力和主燃料密度的增加有利于提高热核反应放能和燃耗,中心热斑的温度和面密度分别达到70—80 MK和3—4 kg·m-2时热核反应才有显著的放能,提高主燃料密度,可以适当放宽对中心热斑的点火要求.最后对实际点火靶进行了数值模拟并且与等压力模拟计算结果进行了比较分析.  相似文献   

10.
压缩氘氚球的热核燃烧特性研究   总被引:1,自引:0,他引:1       下载免费PDF全文
吴俊峰  叶文华  张维岩 《物理学报》2010,59(4):2381-2390
本文利用LARED-S程序模拟了等密度和等压力条件下压缩氘氚球的热核反应燃烧过程.对于等密度模型,模拟了两个具体算例,与国外计算结果进行了比较,验证了程序的可靠性.对于等压力模型,利用数值模拟给出了热核反应燃烧与压缩氘氚球初始状态之间的关系曲线,分析发现,氘氚装量、压力和主燃料密度的增加有利于提高热核反应放能和燃耗,中心热斑的温度和面密度分别达到70—80 MK和3—4 kg·m-2时热核反应才有显著的放能,提高主燃料密度,可以适当放宽对中心热斑的点火要求.最后对实际点火靶进行了数值模拟并且与等压力模拟计算结果进行了比较分析. 关键词: 压缩氘氚球 等密度模型 等压力模型 热核反应聚变  相似文献   

11.
A magnetic proton recoil (MPR) spectrometer is a novel instrument with superior performance, including high energy resolution, high count rate and good signal-to-noise ratio (SNR) for measurements of neutron spectra from inertial confinement fusion (ICF) experiments and high power Tokomaks. In this work, the design of a compact MPR spectrometer (cMPR) was evaluated for deuteron-tritium (DT) neutron spectroscopy. The characteristics of the spectrometer were analyzed using 2-D beam transport simulations, 3-D particle transport calculations and Monte-Carlo simulations. Based on the theoretical results, an instrument design that satisfies special experimental requirements is proposed. The energy resolution and efficiency of the spectrometer are also evaluated. The results indicate that the proposed cMPR spectrometer would achieve a detection efficiency and energy resolution of approximately 10<'-8> and 4%, respectively, for DT neutrons.  相似文献   

12.
A reconstruction algorithm for unfolding neutron energy spectra has been developed, based for the first time on the potential reduction interior point algorithm. This algorithm can be easily applied to neutron energy spectrum reconstruction in the recoil proton method. We transform the neutron energy spectrum unfolding problem into a typical nonnegative linear complementarity problem. The recoil proton energy spectrum and response matrix at angles of 0^o and 30^o are generated by the Geant4 simulation toolkit. Several different neutron energy test spectra are also employed. It is found that this unfolding algorithm is stable and provides efficient, accurate results.  相似文献   

13.
The magnetic proton recoil(MPR)spectrometer is a novel diagnostic instrument with high perfor-mance for measurements of neutron spectra in inertial confinement fusion(ICF)experiments and high power fusion devices.A compact MPR-type spectrometer dedicated to the research of pulsed deuterium-tritium(DT)neutron spectroscopy of special experimental conditions is currently under design.Analyses of the main parameters and performance of the magnetic analysis system through 3-D particle transport calculations and MonteCarlo simulations and calibration of the system performance as a test using CR-39 solid track detector and α particle from 239pu and 226Ra radioactive sources are presented in this paper.The results indicate that the magnetic analysis system will achieve a detection efficiency level of 10-5-10-4 at an energy resolution of 1.5%-2.1%,and fulfills the design goals of the spectrometer.  相似文献   

14.
祁建敏  周林  蒋世伦  彭太平 《中国物理 C》2010,34(12):1860-1865
The magnetic proton recoil(MPR)spectrometer is a novel diagnostic instrument with high perfor-mance for measurements of neutron spectra in inertial confinement fusion(ICF)experiments and high power fusion devices.A compact MPR-type spectrometer dedicated to the research of pulsed deuterium-tritium(DT)neutron spectroscopy of special experimental conditions is currently under design.Analyses of the main parameters and performance of the magnetic analysis system through 3-D particle transport calculations and MonteCarlo simulations and calibration of the system performance as a test using CR-39 solid track detector and α particle from 239pu and 226Ra radioactive sources are presented in this paper.The results indicate that the magnetic analysis system will achieve a detection efficiency level of 10-5-10-4 at an energy resolution of 1.5%-2.1%,and fulfills the design goals of the spectrometer.  相似文献   

15.
基于蒙特卡罗软件Geant4,探讨质子与硅的库仑散射和核反应及中子与硅的核反应产生反冲原子沉积非电离能量的过程,建立质子和中子在硅中的非电离能量阻止本领计算方法。在此方法中,描述了原子间库仑散射的物理过程,模拟带电粒子与晶格原子之间的屏蔽库仑散射。计算得到不同能量质子和中子在硅中因库仑散射和核反应产生反冲原子的非电离能量沉积及阻止本领的等效性,计算结果与中子ASTM标准及文献计算得到的质子数据符合很好。  相似文献   

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