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Application of gamma densitometer for measurement of void fraction in liquid hydrogen moderator of HANARO cold neutron source

机译:伽马密度计在HANARO冷中子源液氢减速器中测量空隙率的应用

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摘要

The void fraction in the liquid hydrogen used for the moderator of the HANARO cold neutron source (CNS) was measured by using a gamma densitometer technique. A mock-up of the HANARO CNS facility with an electric heating system as the heat source instead of radiations was constructed. The photon transmissions through the hydrogen moderator were simulated to search for an optimum experimental condition. From the simulation, it was confirmed that Am-241 was suitable for the measurement of the void fraction in the liquid hydrogen medium. A gamma densitometer using the Am-241 gamma-ray source was designed and installed at the mock-up of the CNS. The attenuation of 59.5 keV gamma-rays from the Am-241 through the hydrogen medium was measured by using an HPGe detector. The void fraction was determined using the amount of the gamma-ray attenuation. The void fractions in the hydrogen moderator were measured for stable thermo-siphon loops with several electric heat loads applied to the moderator cell of the CNS mock-up. The longitudinal distribution of the void fraction inside the moderator cell was also determined. The void fraction measured at a heat load of 720 W had values of 8-41% depending on the height from the bottom of the moderator cell. The overall void fraction was obtained by volume-weighted averaging of its longitudinal distribution. The void fraction at the nuclear heating power expected at the normal operation condition of the HANARO CNS facility was determined to be about 20%. The large uncertainty was expected in the void fraction determination by a gamma densitometer for the liquid hydrogen medium with the void fraction less than 10%. When the void fraction of the liquid hydrogen was near 20%, the uncertainty in the void fraction determination by using a gamma densitometer became relatively small, and it was regarded as an acceptable level. The measurements for the void fraction will be very useful for the design and operation of the HANARO CNS.
机译:使用伽玛密度计技术测量了用于HANARO冷中子源(CNS)减速剂的液态氢中的空隙率。建造了一个HANARO CNS设施的模型,该模型以电加热系统作为热源而不是辐射。模拟通过氢减速器的光子传输以寻找最佳实验条件。通过模拟,可以确认Am-241适合于液态氢介质中的空隙率的测定。设计了使用Am-241伽马射线源的伽马密度计,并将其安装在CNS的模型上。使用HPGe检测器测量了Am-241通过氢介质对59.5 keV伽马射线的衰减。使用伽马射线衰减量确定空隙率。对于稳定的热虹吸回路,测量氢缓和剂中的空隙率,并在中枢神经系统模型的缓和器电池上施加多个电热负荷。还确定了慢化剂室内的空隙率的纵向分布。在720 W的热负荷下测得的空隙率的数值为8-41%,具体取决于距减速器电池底部的高度。总空隙率通过其纵向分布的体积加权平均得到。在HANARO CNS设施的正常运行条件下,预计在核加热功率下的空隙率约为20%。对于由小于10%的空隙率的液态氢介质,通过γ密度计确定空隙率时,预期存在很大的不确定性。当液态氢的空隙率接近20%时,使用伽马密度计测定空隙率的不确定性相对较小,被认为是可以接受的水平。空隙率的测量对于HANARO CNS的设计和操作将非常有用。

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