首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.3 >EXAMPLE FOR THE STRUCTURAL INTEGRITY EVALUATION OF THERMAL MIXING TEE JUNCTION DESIGNED WITH SLEEVES TO PROTECT THE PRESSURE RETAINING WALL FOR THERMAL STRIPING EFFECTS UP TO 250K
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EXAMPLE FOR THE STRUCTURAL INTEGRITY EVALUATION OF THERMAL MIXING TEE JUNCTION DESIGNED WITH SLEEVES TO PROTECT THE PRESSURE RETAINING WALL FOR THERMAL STRIPING EFFECTS UP TO 250K

机译:设计有套筒以保护承压墙以承受高达250K的热条效应的热混合三通接头的结构完整性评估示例

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The purpose of this paper is to present the structural integrity evaluation on thermal mixing T-junctions designed with thermal sleeves. The specific plant conditions and layout in the LWR piping of the main feed water system, the residual heat removal system and the emergency core cooling system for the BWR OKG2 are characterized by large temperature differences up to 250K and more than 1000 specified cycles within 40 years lifetime. Beside the investigations of low cycle fatigue evaluations are made for the high cyclic thermal fatigue and flow induced vibration. The evaluation method use computational fluid dynamic analysis (CFD) for indicating severe loads for the several plant conditions. Pre-evaluations using the steady Reynolds-Averaged Navier-Stokes model (RANS) are made to indicate the load cases with potential of large temperature fluctuation and their location. Large Eddy Simulations (LES) are prepared at the smaller region of interest for determination of high cyclic thermal loading at the inner surface of the sleeve and the shielding effect for the pressure retaining wall. Results from the CFD analysis are furthermore used for evaluation of the phenomenon of flow induced vibration. The structural and fatigue evaluation based on the design-by-analysis method using finite element models with linear and non linear elastic-plastic material behavior to ascertain the K_e -factor and their local effects on plasticity at cyclic computation.rnDiscussed are the results with respect to the usedrnmethod for the load determination, used boundary condition, simplification and the performed structural evaluation. The results will reflect among others to developed or established guidelines on thermal striping effects.
机译:本文的目的是介绍采用热套管设计的热混合T型结的结构完整性评估。 BWR OKG2的主要给水系统,残留热量去除系统和应急堆芯冷却系统的LWR管道中的特定工厂条件和布置具有40年内高达250K的大温差和1000多个指定循环的特点一生。除了研究低循环疲劳评估外,还对高循环热疲劳和流动引起的振动进行了评估。该评估方法使用计算流体动力学分析(CFD)来指示几种工厂条件下的重负荷。使用稳定的雷诺平均Navier-Stokes模型(RANS)进行了预评估,以指示可能出现较大温度波动的载荷工况及其位置。在较小的目标区域准备了大涡模拟(LES),用于确定套管内表面的高循环热负荷以及保压壁的屏蔽效果。 CFD分析的结果还用于评估流动引起的振动现象。基于分析的设计方法的结构和疲劳评估,使用具有线性和非线性弹塑性材料行为的有限元模型来确定K_e因子及其在循环计算中对塑性的局部影响。用来确定载荷,使用边界条件,简化和进行结构评估的方法。结果将反映出已制定或建立的热剥离效应指导原则。

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