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CFD Modelling of the Dry Spent Fuel Storage of a Pressurized Heavy Water Reactor

机译:加压重水反应堆干燃料储存的CFD建模

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Currently, concrete canisters are in use for an interim storage of spent fuels of pressurized heavy water reactors. A major factor in spent fuel dry storage design and key thermal safety issue is the dissipation of the residual heat generated by the spent fuel. Also the spent fuel temperature, in a dry storage canister, must be kept below 160 °C to avoid fuel oxidation. In this research, CFD modeling has been done to evaluate the temperature distribution in radial and vertical directions of the spent fuel cask. The temperature distribution inside the fuel basket is obtained using ANSYS and FLUENT for CFD analysis. The results suggest that when the effects of conduction and convection are combined and the ambient temperature is taken as 40°C then the maximum temperature of the fuel bundle is found out to be153°C which is below the temperature limit of 160°C. Therefore, the proposed indigenous design of the spent fuel storage cask is safe enough to keep the temperatures of the spent fuel well within the limits.
机译:当前,混凝土罐用于临时存储加压重水反应堆的乏燃料。乏燃料干式存储设计和关键的热安全问题的主要因素是由乏燃料产生的剩余热量的消散。另外,干燥存储罐中的乏燃料温度必须保持在160°C以下,以避免燃料氧化。在这项研究中,已经进行了CFD建模以评估乏燃料桶在径向和垂直方向上的温度分布。使用ANSYS和FLUENT进行CFD分析,即可获得燃料篮内部的温度分布。结果表明,当将传导和对流的影响结合在一起并且将环境温度设为40°C时,发现燃料束的最高温度为153°C,低于160°C的温度极限。因此,建议的乏燃料存储桶的本地设计足够安全,可以将乏燃料的温度保持在极限范围内。

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