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首页> 外文期刊>Annals of nuclear energy >Structural assessment of intermediate printed circuit heat exchanger for sodium-cooled fast reactor with supercritical CO_2 cycle
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Structural assessment of intermediate printed circuit heat exchanger for sodium-cooled fast reactor with supercritical CO_2 cycle

机译:超临界CO_2循环钠冷快堆中间印刷电路换热器的结构评估

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摘要

Structural integrity of intermediate Printed Circuit Heat Exchanger (PCHE) for Sodium-cooled Fast Reactor (SFR) attached to Supercritical CO_2 (S-CO_2) is investigated. ANSYS-Mechanical was used to simulate stress fields of representative PCHE channels, with temperature fields imported from FLUENT simulation. Mechanical stress induced by pressure loading is found to be the primary source of stress. As plasticity sufficiently lowers local stress concentration at PCHE channel tips, PCHE type intermediate heat exchangers made of SS316 are anticipated to reliably assure compliance with design standards prescribed in the ASME standards, thanks to the structure temperature that is below the effective creep inducing point. The actual life time of PCHE for SFR-SCO_2 is likely to be affected by mechanical behavior change of SS316 with reactions with S-CO_2 and fatigue.
机译:研究了与超临界CO_2(S-CO_2)相连的钠冷快堆(SFR)的中间印刷电路换热器(PCHE)的结构完整性。 ANSYS-Mechanical用于模拟代表性PCHE通道的应力场,温度场是从FLUENT仿真导入的。发现压力加载引起的机械应力是应力的主要来源。由于可塑性充分降低了PCHE通道尖端的局部应力集中,由于结构温度低于有效的蠕变诱导点,由SS316制成的PCHE型中间热交换器有望可靠地确保符合ASME标准中规定的设计标准。 SFR-SCO_2的PCHE的实际使用寿命很可能受SS316的机械行为变化以及与S-CO_2的反应和疲劳的影响。

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