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Tube and shell side coupled thermal analysis of an HTGR helical tube once through steam generator using porous media method

机译:多孔介质法一次通过蒸汽发生器对HTGR螺旋管进行管壳侧耦合热分析

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摘要

To ensure the safety and efficiency of high temperature gas-cooled reactors, it is critical to understand the temperature non-uniformity of their once through steam generators. Large temperature non-uniformity can cause overheating of the tubes and may require a reduction in output. In order to correctly predict the thermal distribution in the tube bundles of the steam generators, the effect of thermal mixing and coupled heat transfer between the primary and secondary sides should be considered. A two-dimensional computer code based on the porous media method, coupling the tube and shell side of the steam generator was developed. This code was used to predict the thermal performance of the once through steam generator under normal operating conditions. The temperature non-uniformities caused by geometric and thermal-hydraulic deviations were also analyzed. It was found that a 1% change in the flow rate for a given tube line resulted in a temperature variation of 5 ℃ while shifting a tube line by 1 mm caused a temperature variance of 7 ℃. It was also found that a plugged tube caused a large increase in temperature for the remaining tubes in the tube line. Finally, the influence of Peclet number on temperature was analyzed.
机译:为了确保高温气冷反应堆的安全性和效率,了解一次通过蒸汽发生器的温度不均匀性至关重要。较大的温度不均匀会导致管子过热,并可能需要降低输出功率。为了正确预测蒸汽发生器管束中的热分布,应考虑一次侧和二次侧之间的热混合和耦合传热的影响。开发了一种基于多孔介质方法的二维计算机代码,将蒸汽发生器的管壳侧部连接起来。该代码用于预测直流蒸汽发生器在正常运行条件下的热性能。还分析了由几何和热工偏差引起的温度不均匀性。结果发现,给定管路的流量变化1%导致温度变化5℃,而管路偏移1 mm导致温度变化7℃。还发现,堵塞的管道导致管道中其余管道的温度大大升高。最后,分析了Peclet数对温度的影响。

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