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Thermal-Hydraulic Design of Cross-Flow Type mercury Target for JAERI/KEK Joint Project

机译:JAERI / KEK联合项目的横流式汞靶的热液压设计

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The Japan Atomic Energy Research Institutue (JAERI) and the High Energy Accelerator Research Organization (KEK) are promoting a plan to construct a neutron scattering facility. In the facility, 1 MW pulsed proton beam from a high-intensity porton accelerator will be injected into a mercury taget in order to produce high-intensity neutrons for use in the fields of life and material sciences. In the spallation mercury target system design, an integrated structure of target vessel with a safety hull was proposed to ensure the safety and to collect mercury in case of mercury leakage caused by the target beam window failure. The inner structure arrangement of the mercury target vessel was determined based on the thermal hydraulic analytical results of 3GeV, 1MW proton beam injection. The safety hull consists of vessels for helium and heavy water. The vessels for mercury target, helium and heavy water will be connected each other by reinforcement ribs mounted on the surface of each vessel. From the structural analyses, the structural integrity of the safety hull would be maintained under the static pressure of 0.5MPa.
机译:日本原子能研究机构(JAERI)和高能量加速器研究组织(KEK)正在推广建造中子散射设施的计划。在该设施中,来自高强度波动件加速器的1兆瓦脉冲质子梁将被注入汞磁盘中,以产生高强度中子以用于生命和材料科学领域。在介质汞目标系统设计中,提出了一种具有安全壳的目标容器的集成结构,以确保安全性并在目标梁窗口故障引起的汞泄漏时收集汞。基于3GeV,1MW质子束注射的热液压分析结果确定汞靶血管的内部结构布置。安全船体由氦和重水的血管组成。用于汞靶,氦气和重水的血管将通过安装在每个容器的表面上的加强肋彼此连接。从结构分析中,安全船体的结构完整性将保持在0.5MPa的静压下。

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