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THERMOELECTRICALLY POWERED SENSING FOR SMALL MODULAR REACTORS

机译:小型模块反应器的热电感应

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This project aims to develop thermoelectric generator (TEG)-based devices for sensing during normal and off-normal conditions in Small Modular Reactors (SMRs). TEGs will be placed on key reactor components including pipes, pump housings, heat exchangers and reactor vessels. The heat is conducted by heat pipes to the TEGs and removed by a heat sink in natural convection. The electrical power generated by is then used to drive sensors and wireless communications. The estimated power generated by one TEG is 19 W, and sensors with related circuit only require less than 7 W. Extra power can be stored into batteries and used for actuation and similar high-current, short duration power needs. Initial enclosure designs are also presented to protect the electrical devices from fire, force, water, and radiation. Preliminary experiments have been set up for testing TEGs. An experimental test stand design has been simulated, and is now being built. Radiation dosage at different locations and its effects on electrical devices and TEGs are also investigated. A fin analysis of the cooling side of the TEG is also presented. According to the results, the annular finned-tube with an inner pipe diameter of 58 cm can provide a maximum heat dissipation of 1,700 W.
机译:该项目旨在开发热电发电机(TEG)的装置,用于在小型模块化反应器(SMRS)中的正常和离法条件下进行感测。 TEGS将放在带有管道,泵壳,热交换器和反应堆容器的关键反应器组件上。热量通过热管传导到TEG上并通过自然对流中的散热器去除。然后使用由产生的电力驱动传感器和无线通信。由一个TEG产生的估计功率为19W,具有相关电路的传感器仅需要小于7 W.额外的电源可以存储到电池中并用于致动和类似的高电流,短的持续时间功率需求。还提出了初始外壳设计以保护电气设备免受火力,力,水和辐射。已经建立了初步实验来测试TEGS。已经模拟了实验测试台设计,现在正在构建。还研究了不同地点的辐射剂量及其对电气装置和TEG的影响。还提出了TEG的冷却侧的翅片分析。根据结果​​,内管直径为58厘米的环形翅片管可提供1,700 W的最大散热。

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