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Optimization of the self-sufficient thorium fuel cycle for CANDU power reactors

机译:优化CANDU动力堆的th燃料循环

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The results of optimization calculations for CANDU reactors operating in the thorium cycle are presented in this paper. Calculations were performed to validate the feasibility of operating a heavy-water thermal neutron power reactor in a self-sufficient thorium cycle. Two modes of operation were considered in the paper: the mode of preliminary accumulation of 233U in the reactor itself and the mode of operation in a self-sufficient cycle. For the mode of accumulation of 233U, it was assumed that enriched uranium or plutonium was used as additional fissile material to provide neutrons for 233U production. In the self-sufficient mode of operation, the mass and isotopic composition of heavy nuclei unloaded from the reactor should provide (after the removal of fission products) the value of the multiplication factor of the cell in the following cycle K>1. Additionally, the task was to determine the geometry and composition of the cell for an acceptable burn up of 233U. The results obtained demonstrate that the realization of a self-sufficient thorium mode for a CANDU reactor is possible without using new technologies. The main features of the reactor ensuring a self-sufficient mode of operation are a good neutron balance and moving of fuel through the active core.
机译:本文介绍了in循环中运行的CANDU反应堆的优化计算结果。进行了计算以验证在自足的th循环中运行重水热中子动力反应堆的可行性。本文考虑了两种运行模式:反应堆本身中233U的初步积累模式和自足循环中的运行模式。对于233U的积累方式,假定浓缩铀或p被用作额外的易裂变材料,以提供233U生产的中子。在自给自足的操作模式下,从反应堆中卸下的重核的质量和同位素组成应(在除去裂变产物之后)提供下一个循环K> 1中细胞的倍增因子值。此外,任务是确定电池的几何形状和组成,使233U燃尽。获得的结果表明,无需使用新技术就可以实现CANDU反应器的自足th模式。确保反应堆自给自足的反应堆的主要特征是良好的中子平衡和燃料通过有源堆芯的移动。

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