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Confirmation of Nuclear Heating Rate for Installation of Cold Neutron Source at HANARO

机译:在Hanaro安装核加热速率的确认

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In order to determine the capacity of the cold neutron source refrigerator of HANARO, the nuclear heating rate at CN vertical hole is measured by using the heat-flow calorimetric method and confirmed by the calculation. The heating rate measurement device of HANARO was composed of a calorimeter sensor, an air containing aluminum sleeve for fitting the sensor to the CN hole, aluminum weight and a lead wire assembly. The calorimeter sensor consists of a cylindrical Al sample and container, two thermocouples and the electric heater for the calibration of the calorimeter. The sample is separated by an air gap from the Al container surrounded by an air containing Al sleeve. After installation of the calorimeter at a measurement position of HANARO, the heat transfer inside the calorimeter was simulated by the electric heating for the sample. The nuclear heating rates at the CN hole were determined at three reactor powers of 1, 4 and 8 MW by using the calibration curve and the temperature measurements at each reactor power. The measured nuclear heating rate per unit mass of Al sample at 8 MW reactor power is 0.143 W/g and it is equivalent to the 0.494 W/g at 30 MW. The nuclear heating rate was calculated by using the MCNP code. The calculation model for the whole facility including the reactor core and the reflector tank were established. In the calculation procedure, the heat generations by various radiations were evaluated with considering the prompt, delayed and activation effects. The measured heating rate was reasonably well supported by the calculation using the cold neutron facility design code. It will be very useful for the moderator cell of cold neutron source of HANARO.
机译:为了确定Hanaro的冷中子源冰箱的容量,通过使用热流量热法测量CN垂直孔的核加热速率,并通过计算证实。 Hanaro的加热速率测量装置由热量计传感器,含有铝套筒的空气,用于将传感器配合到CN孔,铝重量和引线组件。热量计传感器由圆柱形Al样品和容器组成,两个热电偶和电加热器,用于校准量热计。样品通过由含有Al套筒的空气包围的Al容器分离。在Hanaro的测量位置安装量热计后,通过用于样品的电加热模拟量热计内的热传递。通过使用校准曲线和每个反应器功率的温度测量,在1,4和8 MW的三个反应器功率下测定CN孔处的核加热速率。每个单位质量的Al样品在8MW反应器功率下测量的核加热速率为0.143W / g,并且在30mW下相当于0.494W / g。通过使用MCNP代码计算核加热速率。建立了包括反应器芯和反射罐的整个设施的计算模型。在计算过程中,考虑到提示,延迟和激活效果,评估各种辐射的热代。通过使用冷中子设施设计代码的计算,测量的加热速率合理地支持。对于Hanaro的冷中子源的主持人单元非常有用。

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