首页> 外文会议>Small modular reactors symposium 2014 >SMALL MODULAR REACTOR THERMAL PERFORMANCE IMPROVEMENT WITH ADDITION OF A HIGH TEMPERATURE GAS REACTOR SUPERHEATER
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SMALL MODULAR REACTOR THERMAL PERFORMANCE IMPROVEMENT WITH ADDITION OF A HIGH TEMPERATURE GAS REACTOR SUPERHEATER

机译:除高温气体反应器过热器外,还提高了小模块反应器的热性能

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Reheating steam from a Small Modular Reactor (SMR) is explored in order to increase efficiency and power output. A thermal source in the form of a High Temperature Gas Reactor (HTGR) is considered. Engineering challenges include proof-of-principle, reactor sizing, evaluation, and feasibility. The proposed thermodynamic process modifications have been evaluated for a range of inlet steam quality conditions. The evaluation of the steam tube dimensions and number of optimal tubes have been calculated utilizing the so-called Log Mean Temperature Difference method. Subsequently, the performance of the steam tubes was further analyzed within a RELAP5 model to investigate two phase boiling flow thermal phenomena. Detailed calculations include a non-uniform axial heat flux distribution based on published results for the tri-structural isotropic fuel system (TRISO). Non-uniform axial heat flux served as the non-uniform heat source boundary condition in the computer model for the High Temperature Gas Reactor. The work shows that the proposed modifications are not only feasible but also show significant improvement for power output in the amount of over 50%, and increase of the power cycle efficiency of over 14%.
机译:为了提高效率和功率输出,对小型模块化反应堆(SMR)的蒸汽进行了重新加热。考虑了高温气体反应器(HTGR)形式的热源。工程上的挑战包括原理证明,反应堆尺寸,评估和可行性。对于一系列进口蒸汽质量条件,已经对提议的热力学过程修改进行了评估。蒸汽管尺寸和最佳管数的评估已使用所谓的对数平均温差法进行了计算。随后,在RELAP5模型中进一步分析了蒸汽管的性能,以研究两相沸腾流的热现象。详细的计算包括基于三结构各向同性燃料系统(TRISO)公布的结果的轴向热通量分布不均匀。在高温燃气反应器的计算机模型中,轴向热通量的不均匀是热源边界条件的不均匀。工作表明,所提出的修改不仅可行,而且在功率输出方面显示出显着改善,超过50%,功率循环效率提高了14%以上。

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