首页> 外文会议>International conference on nuclear engineering >PRELIMINARY ANALYSIS OF THE POST-DISASSEMBLY EXPANSION PHASE AND STRUCTURAL RESPONSE UNDER UNPROTECTED LOSS OF FLOW ACCIDENT IN PROTOTYPE SODIUM COOLED FAST REACTOR
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PRELIMINARY ANALYSIS OF THE POST-DISASSEMBLY EXPANSION PHASE AND STRUCTURAL RESPONSE UNDER UNPROTECTED LOSS OF FLOW ACCIDENT IN PROTOTYPE SODIUM COOLED FAST REACTOR

机译:在原型钠冷却快速反应器中未受保护的流动事故失卸阶段和结构反应下的拆卸后膨胀阶段和结构反应的初步分析

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For the prototype sodium-cooled fast reactor, MONJU, the mechanical energy and structural response under energetics caused by neutronic power excursion during Unprotected Loss of Flow accident (ULOF) were preliminarily analyzed. The objective of this study is to demonstrate the integrity of the reactor vessel against the mechanical load induced by the energetics. Conservative energy production was assumed in order to confirm the robustness of the safety design of MONJU. Mechanical energy was evaluated with the code in which mechanistic modelling of core expansion was implemented. The mechanical energy, which were obtained by analyzing the expanding behavior of core materials after energetics, were about one order of magnitude below the thermodynamic work potential calculated by assuming isentropic expansion of the fuel vapor to one atmosphere, which was often used as an indicator to express the severity of the energetics. Structural integrity was then evaluated with coupled fluid-structure dynamics code using the obtained mechanical energy. No or very small circumferential residual strain of the reactor vessel was evaluated in most analytical cases, and even in the most conservative energy production case, the residual strain was only 0.008 % so that the integrity of the reactor vessel is maintained. The result obtained in the present study shows that MONJU has enough robustness against the mechanical load under energetics.
机译:对于原型钠冷却的快速反应器,初步分析了在未受保护的流动事故(ULOF)丧失期间由中源动力偏移引起的能量测量的机械能和结构反应。本研究的目的是展示反应器血管对由能量引起的机械负荷的完整性。假设保守能源生产是为了确认Monju安全设计的稳健性。利用核心膨胀机械建模的代码评价机械能。通过分析能量学后核心材料的扩张行为而获得的机械能大约是通过假设燃料蒸汽的等熵膨胀到一种大气来计算的热力学工作电位下的一个级。通常用作指示器表达能量的严重程度。然后使用所获得的机械能评估具有耦合的流体结构动力学码的结构完整性。在大多数分析病例中评估反应器容器的NO或非常小的圆周残余菌株,即使在最保守的能量生产壳体中,残留菌株也仅为0.008%,从而保持反应器容器的完整性。在本研究中获得的结果表明,Monju对能量学的机械负荷有足够的稳健性。

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