首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.3 >PRESSURE AND THERMAL STRESS ANALYSES OF A GENERATION IV REACTOR SYSTEM, MINI-CHANNEL HEAT EXCHANGER
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PRESSURE AND THERMAL STRESS ANALYSES OF A GENERATION IV REACTOR SYSTEM, MINI-CHANNEL HEAT EXCHANGER

机译:微型IV换热器的IV代反应器系统的压力和热应力分析

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An advanced power conversion system incorporating a Supercritical Carbon Dioxide(S-CO_2) Brayton Cycle for Liquid Metal-Cooled Fast Reactors, can provide much improved cycle efficiency relative to a traditional Rankine cycle. Because of this, current plans for Generation IV reactor systems—like the Liquid Metal-Cooled Fast Reactor—include the use of the S-CO_2 Brayton Cycle in the development of a power conversion system. However, a structural issue is raised with the use of a mini-channel heat exchanger because large temperature and pressure differences occur along the passages of the mini-channels during normal and transient operating conditions. The design parameters of the heat exchanger during normal operating conditions (i.e., steady state) are pressures and temperatures at the inlet and outlet of the hot and cold channels, and the average heat transfer coefficients within the mini-channels.rnIn this paper, results are presented from preliminary uncoupled thermal and stress analyses of the heat exchanger based on very simple finite element models and the heat exchanger design parameters. Temperature distributions along the passage ways of the mini-channels are calculated. The stresses resulting from both the pressure load and the thermal load are compared with the ASME Section VIII design requirement. The structural integrity of the simplified heat exchanger model—during normal operating conditions of the S-CO_2 Brayton Cycle-is evaluated.
机译:先进的功率转换系统结合了用于液态金属冷却快堆的超临界二氧化碳(S-CO_2)布雷顿循环,与传统的朗肯循环相比,可以大大提高循环效率。因此,当前的第四代反应堆系统计划(如液态金属冷却快堆)包括在功率转换系统的开发中使用S-CO_2布雷顿循环。但是,由于在正常和瞬态操作条件下沿着微型通道的通道会出现较大的温度和压力差,因此使用微型通道热交换器会引起结构上的问题。在正常运行条件(即稳态)下,热交换器的设计参数是热通道和冷通道的入口和出口的压力和温度,以及微型通道内的平均传热系数。基于非常简单的有限元模型和换热器设计参数,从换热器的初步解耦热力和应力分析中得出了这些参数。计算沿小通道通过的温度分布。将压力负荷和热负荷所产生的应力与ASME第八节的设计要求进行了比较。在S-CO_2布雷顿循环的正常运行条件下,评估了简化热交换器模型的结构完整性。

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