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Guidelines for the Performance-Based Seismic Design of Seismic Category 1 Concrete Structures in Nuclear Power Plants

机译:基于核电站地震类别1混凝土结构的基于绩效的地震设计指南

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The U.S. Nuclear Regulatory Commission (NRC) defines seismic Category 1 structures as the structures (buildings) that should be designed and built to withstand the maximum potential earthquake stresses for the particular region where a nuclear plant is sited. Seismic Category 1 structures have been designed for ground-shaking intensity associated with a safe-shutdown earthquake (SSE) -the intensity of the ground motion that will trigger the process of automatic shutdown of the reactor in operation. The SSE generates floor response spectra at different floor elevations in a building, and these spectra and their associated forces are used for the design of piping and piping anchors and equipment and equipment anchors at their floor locations. The NRC policy requires that the seismic Category 1 structures whose collapse could cause early or/and large release of radioactive materials into the atmosphere to be analyzed/designed for "no collapse" during the ground-shaking intensity of a review-level earthquake (RLE), which is 1.67 times that of an SSE. Most seismic Category 1 concrete structures, such as containment and shield buildings (curved cylindrical wall; see Figs. 1 and 2 in the next section) and containment internal structures (straight wall; see Fig. 1), use walls to resist earthquakes.This paper presents guidelines for the performance-based seismic design for these wall-type structures that could meet the NRC policy. The method consists of (1) proportioning wall thickness based on shear stress of 6(f_c)~(1/2) (0.5(f_c)~(1/2) megapascals (MPa)) generated by SSE ground motions, (2) limiting vertical compressive stress in walls to less than 0.35 fc', (3) providing minimum percentage of reinforcement of 1.0 percent to prevent steel reinforcing bar fracture, (4) subjecting the building design to nonlinear dynamic response analyses under RLE ground motions, (5) identifying any members and their connections in the building that have failed or collapsed during the RLE ground motions, (6) increasing reinforcement or wall thickness, or both, to provide additional strength or/and ductility for the failed or collapsed members and their connections, and (7) resubjecting the revised building design to the nonlinear dynamic response analyses as stated in step (4) until there is no collapse of the building and its members and their connections. This performance-based seismic design method is a direct, transparent, and scientific answer to whether these important seismic Category 1 structures meet the NRC's policy that they will not collapse during the RLE ground motions. Examples of using the nonlinear dynamic response analyses are cited and described. Guidelines for the performance-based seismic design of seismic Category 1 concrete structures are listed at the end of this paper.
机译:美国核监管委员会(NRC)将地震类别1结构定义为应设计和构建的结构(建筑物),以承受核电站所列特定区域的最大潜在地震应力。地震类别1结构设计用于与安全关闭地震(SSE)相关的地面振荡强度 - 接地运动的强度,其将触发在操作中自动关机的过程。 SSE在建筑物的不同底层高度产生地板响应光谱,并且这些光谱及其相关的力用于在其地板位置设计管道和管道锚和设备和设备锚固件。 NRC政策要求抗震类别1结构,其崩塌可能导致放射性物质的早期或/和大释放到审查级地震的地面摇动强度(RLE)的地面摇动强度期间分析/设计。 ),这是SSE的1.67倍。大多数地震类别1混凝土结构,如遏制和屏蔽建筑物(弯曲圆柱形墙;见图1和2中的图2)和容纳内部结构(直壁;参见图1),使用墙壁来抵抗地震。这纸张提供了可满足NRC政策的这些墙面结构的基于性能的地震设计指导。该方法包括(1)配比壁基于剪切应力的6(F_C)〜(1/2)(0.5(F_C)〜(1/2)兆帕(MPa))的SSE地面运动产生的,(2)厚度的将墙壁的垂直压缩应力限制在小于0.35 Fc',(3)提供1.0%的最小百分比1.5%,以防止钢筋骨折,(4)在RLE地面运动下进行非线性动态响应分析,(5 )识别在RLE接地运动期间失败或折叠的建筑物中的任何成员及其连接,(6)增加增强或壁厚或两者,为失败或倒塌的成员提供额外的强度或/和延展性(7)将修订的建筑设计重新提交给非线性动态响应分析,如步骤(4)所述,直到建筑物及其成员及其联系没有崩溃。这种基于性能的地震设计方法是直接,透明,科学的答案,对这些重要地震类别1结构是否符合NRC的政策,即在RLE地面运动期间不会崩溃。使用非线性动态响应分析的示例并描述。本文末尾列出了地震类别1混凝土结构的基于绩效的地震设计指南。

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